0000000000159090

AUTHOR

Gaetano Di Bella

showing 47 related works from this author

Uncertainty assessment of a membrane bioreactor model using the GLUE methodology

2010

A mathematical model for the simulation of physical-biological organic removal by means of a membrane bioreactor (MBR) has been previously developed and tested. This paper presents an analysis of the uncertainty of the MBR model. Particularly, the research explores the applicability of the Generalised Likelihood Uncertainty Estimation (GLUE) methodology that is one of the most widely used methods for investigating the uncertainties in the hydrology and that now on is spreading in other research field. For the application of the GLUE methodology, several Monte Carlo simulations have been run varying the all model influential parameters simultaneously. The model was applied to an MBR pilot pl…

EngineeringEnvironmental EngineeringSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleMathematical modelbusiness.industrySettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaMonte Carlo methodBiomedical EngineeringBackwashingBioengineeringMembrane bioreactorMathematical modelPilot plantRobustness (computer science)Data qualityASMMembrane bioreactorUncertainty assessmentProcess engineeringbusinessGLUEBiotechnologyBiochemical Engineering Journal
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Membrane Fouling Mitigation in MBR via the Feast–Famine Strategy to Enhance PHA Production by Activated Sludge

2022

Fouling is considered one of the main drawbacks of membrane bioreactor (MBR) technology. Among the main fouling agents, extracellular polymeric substances (EPS) are considered one of the most impactful since they cause the decrease of sludge filterability and decline of membrane flux in the long term. The present study investigated a biological strategy to reduce the membrane-fouling tendency in MBR systems. This consisted of seeding the reactor with activated sludge enriched in microorganisms with polyhydroxyalkanoate (PHA) storage ability and by imposing proper operating conditions to drive the carbon toward intracellular (PHA) rather than extracellular (EPS) accumulation. For that purpos…

Settore ICAR/03 - Ingegneria Sanitaria-AmbientaleProcess Chemistry and Technologyextracellular polymeric substances (EPS) cake layer fouling control membrane bioreactor (MBR) polyhydroxyalkanoate (PHA) resistance in series (RIS) model soluble microbial products (SMP)Chemical Engineering (miscellaneous)Filtration and Separationextracellular polymeric substances (EPS); cake layer; fouling control; membrane bioreactor (MBR); polyhydroxyalkanoate (PHA); resistance in series (RIS) model; soluble microbial products (SMP)Membranes
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Assessing Methane Emission and Economic Viability of Energy Exploitation in a Typical Sicilian Municipal Solid Waste Landfill

2018

Sanitary landfills for municipal solid waste (MSW) represent one of the major anthropogenic source of GHGs emissions and are directly responsible of the climate changes we are facing nowadays. Indeed, the biodegradable organic matter of MSW undergoes anaerobic digestion producing the landfill gas (LFG), whose main components are CH4 and CO2. Therefore, biomethane energy exploitation in MSW landfills will reduce GHGs emission positively affecting the global warming. The aim of the present study was to assess the methane production in a Sicilian landfill by comparing the results from field measurements of methane emission and the estimates achieved by applying different mathematical models. A…

0106 biological sciencesMunicipal solid wasteEnvironmental Engineering020209 energy02 engineering and technologyCombustion01 natural sciencesMethanechemistry.chemical_compoundBiogas010608 biotechnologyEnergy exploitation0202 electrical engineering electronic engineering information engineeringEconomic viabilityWaste managementWaste Management and DisposalWaste managementSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleRenewable Energy Sustainability and the EnvironmentGlobal warmingInternal rate of returnAnaerobic digestionLandfill gaschemistryMethane emissionEnvironmental scienceLandfill
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The role of fouling mechanisms in a submerged membrane bioreactor during the start-up

2006

start-upMembrane reactorFoulingSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleChemistryMechanical EngineeringGeneral Chemical EngineeringMembrane foulingGeneral ChemistryFoulingMembrane bioreactorStart upMBRChemical engineeringBioreactorGeneral Materials ScienceWater Science and Technology
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Estimation of methane emission by a municipal landfill: the case of Palermo

2010

CH4 diffuse emissions from municipal solid waste landfills represent one of the most important anthropogenic source of greenhouse-gas. CH4 is produced by anaerobic biodegradation of organic matter in land-filled MSW and it constitutes the major component of landfill gas. Gas recovery is a suitable tool to effectively control CH4 emissions from landfill sites and the quantification of CH4 emissions represents a good tool to evaluate the effectiveness of biogas recovering system in reducing biogas emission. In particular, LFG emissions can be indirectly evaluated from mass balance equations between formation, recovery and oxidation of biogas in the landfill, as well as on a direct approach ba…

Settore ICAR/03 - Ingegneria Sanitaria-AmbientaleMethane emissionAccumulation chamberGreenhouse effect gaMunicipal solid wasteLandfill
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Start-up of a submerged membrane bioreactor with complete sludge retention

2005

MBRComplete Sludge Retention TimeStart -upSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleCOD removal
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New applications in integrated fixed film activated sludge-membrane bioreactor (IFAS-MBR) systems

2020

Abstract This chapter provides an overview on the development and application of integrated fixed film activated sludge-membrane bioreactor (IFAS-MBR) systems. IFAS-MBRs represent a novel configuration for advanced wastewater treatment, and only a few studies are available in literature. With this aim, the results of some studies on IFAS-MBR systems already published are discussed and compared in this chapter. Literature shows that the influent carbon to nitrogen ratio (C/N) strongly affects the biological process in IFAS-MBR. The organic matter removal efficiency (removed biologically) decreases from 60% to 23.5% with the decrease of influent C/N from 10 to 2 mgCOD mgTN− 1. Nitrogen remova…

Settore ICAR/03 - Ingegneria Sanitaria-AmbientaleFoulingCarbon-to-nitrogen ratioChemistryIFAS-MBRMembrane foulingFoulingMembrane bioreactorRemoval efficiencyBiodegradabilityActivated sludgeWastewaterChemical engineeringBioreactorSewage treatmentEPS
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High salinity slops treatment through a biofilm-MBR inoculated with halophilic bacteria

2010

Oily wastewater generated, in amounts of millions of tons per year, by ships mainly in engine-rooms (bilge waters) and by washing oil tanks (slops) create a major disposal problem throughout the world because of the persistence and accumulation of xenobiotic compounds in the environment. The high salinity levels (up to 25.000 p.p.m.) and the pollutants concentration limit the chances of discharge into the sewer systems and address the disposal to the sea. This situation severely lowers the discharge limits for most of the “sensible” parameters, such both COD and hydrocarbons. Slops are usually treated by ASP with pretreatment of oil/water separation. There are limited investigations on the …

MBRxenobiotic compoundsSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleslopMBBRBF-MBR
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comparing two start-up strategies for MBRs: experimental study and mathematical modelling

2012

Abstract The performance of a membrane bioreactor (MBR), and mechanisms of fouling formation, may differ due to the start-up. Therefore, the start-up can constitute an aspect that critically influences MBR performance during its lifespan. Indeed, the start-up can influence the mechanisms of membrane fouling, which is of paramount importance in an MBR. In order to gain insights on the effects of the start-up, both experimental and mathematical modelling studies were carried out on an MBR pilot plant. The MBR pilot plant constituted of a hollow fibre membrane module, in a submerged configuration, was fed by real wastewater. Two experimental periods were carried out, lasting 65 days each, char…

EngineeringEnvironmental EngineeringFoulingSettore ICAR/03 - Ingegneria Sanitaria-Ambientalebusiness.industryMembrane foulingBiomedical EngineeringEnvironmental engineeringBioengineeringExperimental pilot plant ASM1-SMP Calibration protocol Fouling MBR modelling Start-upStart upMembrane bioreactorActivated sludgePilot plantWastewaterUncertainty estimationBiochemical engineeringbusinessBiotechnology
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The role of EPS in fouling and foaming phenomena for a membrane bioreactor

2013

In contraposition to conventional activated sludge processes, the foaming phenomenon in membrane bioreactor (MBR) is still in its infancy. On the other hand, although several studies have been carried out for better understanding the fouling phenomenon in MBR there are still some gaps in the up-to-date knowledge. The extracellular polymeric substances (EPSs) may have a primary role in fouling and foaming phenomena which in turn can be crucial for MBRs. The aim of this study is to detect a possible relationship that EPSs may have with fouling and foaming in an MBR for wastewater treatment. Foaming phenomenon is monitored by performing specific foam-tests: Foam Power, Scum Index, Foam Rating …

Environmental EngineeringSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleWaste managementFoulingPolymersRenewable Energy Sustainability and the EnvironmentChemistryMembrane foulingMembranes ArtificialBioengineeringFoulingGeneral MedicineMembrane bioreactorBioreactorsMBR plantExtracellular polymeric substanceActivated sludgeChemical engineeringNutrient removalSewage treatmentWaste Management and DisposalFoamingBioresource Technology
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Biological Nutrient Removal and Fouling Phenomena in a University of Cape Town Membrane Bioreactor Treating High Nitrogen Loads

2013

The behavior of a University of Cape Town (UCT) membrane bioreactor (MBR) system was investigated for use in biological nutrient removal from real wastewater. The pilot plant was in operation for a period of 165 days, during which an extensive data gathering campaign was conducted. The pilot plant was started up by inoculating it with activated sludge from a nearby wastewater treatment plant, and it was fed by real municipal wastewater characterized by high organic nitrogen concentrations attributable to discharges from industrial wastewater and sporadic landfill leachate. Carbon and biological nutrient removal processes, a sludge production process, and a membrane fouling mechanism were an…

Environmental EngineeringSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleMembrane foulingEnvironmental engineeringMembrane bioreactorIndustrial wastewater treatmentPilot plantActivated sludgeWastewaterEnvironmental ChemistryEnvironmental scienceSewage treatmentLeachateEnvironmental issues Regulations Fouling Nutrient loads Abatement and removal Waste treatmentGeneral Environmental ScienceCivil and Structural EngineeringJournal of Environmental Engineering
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Performance of a MBR pilot plant treating high strength wastewater subject to salinity increase: Analysis of biomass activity and fouling behaviour

2013

Membrane bioreactors produce high quality effluents that could be suitable for reuse. However, when treating high strength wastewater subject to a salinity increase, a modification of biomass characteristics may occur. This circumstance is of importance, since it can have a significant impact in terms of biokinetic as well as fouling behaviour. The aim of the study was to evaluate the performance of a pilot plant MBR, in terms of biomass activity and membrane fouling, fed with high strength synthetic wastewater, when subject to a salinity increase. With normal salinity, the pilot plant showed high removal efficiencies and high biomass respiratory activity. On the other hand, the salinity in…

Membrane foulingSalinityEnvironmental EngineeringFoulingSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleRenewable Energy Sustainability and the EnvironmentMembrane foulingEnvironmental engineeringfood and beveragesBiomassBioengineeringPilot ProjectsGeneral MedicineWastewater treatmentWastewaterSalinityMBRPilot plantWastewaterEnvironmental scienceSewage treatmentBiomassBiomass activityWaste Management and DisposalEffluent
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Aerobic granular sludge treating shipboard slop: Analysis of total petroleum hydrocarbons loading rates on performances and stability

2018

Abstract The work focuses on the feasibility of treating slop with aerobic granular sludge. For this purpose, a 3.5 L granular sequencing batch reactor was activated and it was monitored for 156 days. The experimental campaign was divided into two periods, named Period I (100 days) and Period II (56 days). Total Petroleum Hydrocarbon (TPH) concentration in the slop was, on average, equal to 6.8 ± 1.5 mg L−1 and 13 ± 1.5 mg L−1 in Period I and Period II respectively. The obtained results during the first experimental period indicated that about 80 days were required to reach steady state with mature granules, when TPHs removal efficiency was approximately 90%. The results indicated that both…

ChromatographySettore ICAR/03 - Ingegneria Sanitaria-Ambientale0208 environmental biotechnologyBioengineeringSequencing batch reactor02 engineering and technology010501 environmental sciencesBiodegradationPulp and paper industry01 natural sciencesApplied Microbiology and BiotechnologyBiochemistry020801 environmental engineeringchemistry.chemical_compoundGranulationAdsorptionchemistryPetroleumTotal petroleum hydrocarbonSteady state (chemistry)Effluent0105 earth and related environmental sciencesAerobic granular sludge Salinity SBR Total petroleum hydrocarbons Slop
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A model for wastewater organic removal and fouling development in a SMBR pilot plant

2007

The paper presents the setting up of a mathematical model for membrane bioreactor able to simulate physical-biological wastewater organic removal. The model is basically divided into two sub-models: the first sub-model is basically devoted for the simulation of the biological features and the second one for the physical processes. In particular regarding the biological aspects, the ASM concept has been employed. On the other hand, the physical processes have been modelled considering the deep-bed theory taking into account not only the effect of the physical membrane filtration but also the cake layer effect. This latter operates as a biological membrane leading to a further reduction of th…

transmembrane pressurestart-upSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleMBR modellingASMbiological filter fouling
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Uncontrolled methane emissions from a MSW landfill surface: Influence of landfill features and side slopes

2013

Sanitary landfills for Municipal Solid Waste (MSW) disposal have been identified as one of the most important anthropogenic sources of methane (CH4) emissions; in order to minimize its negative effects on the environment, landfill gas (LFG) recovery is a suitable tool to control CH4 emissions from a landfill site; further, the measurement of CH4 emissions can represent a good way to evaluate the effectiveness of LFG recovering systems. In general, LFG will escape through any faults in the landfill capping or in the LFG collection system. Indeed, some areas of the capping can be more permeable than others (e.g. portions of a side slope), especially when considering a temporarily capped zone …

Methane emissionsEngineeringMunicipal solid wasteLandfill gas monitoringFluxCollection systemMethaneGreenhouse gachemistry.chemical_compoundChamber methodAccumulation chamberWaste Management and DisposalWaste managementSettore ICAR/03 - Ingegneria Sanitaria-Ambientalebusiness.industryEnvironmental engineeringMunicipal solid wasteRefuse DisposalWaste Disposal FacilitiesLandfill gaschemistryItalyMethane emissionGasesLandfillbusinessMethaneEnvironmental MonitoringGeospatial interpolation
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Effect of chemical and biological surfactants on activated sludge of MBR system: Microscopic analysis and foam test

2015

Abstract A bench-scale MBR unit was operated, under stressing condition, with the aim of stimulating the onset of foaming in the activated sludge. Possible synergies between synthetic surfactants in the wastewater and biological surfactants (Extra-Cellular Polymeric Substances, EPSs) were investigated by changing C/N ratio. The growth of filamentous bacteria was also discussed. The MBR unit provided satisfactory overall carbon removal overall efficiencies: in particular, synthetic surfactants were removed with efficiency higher than 90% and 95% for non-ionic and ionic surfactants, respectively. Lab investigation suggested also the importance to reduce synthetic surfactants presence entering…

Environmental EngineeringSegmented filamentous bacteriachemistry.chemical_elementBioengineeringFraction (chemistry)MBRSurface-Active AgentsInk testBiopolymersBioreactorsPulmonary surfactantFoam testSurfactantWaste Management and DisposalBiological Oxygen Demand AnalysisMicroscopyChromatographyBacteriaSewageSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleViscosityRenewable Energy Sustainability and the EnvironmentMembranes ArtificialGeneral MedicineActivated sludgeWastewaterchemistryChemical engineeringCarbonFoamingBioresource Technology
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Sensitivity analysis and uncertainty assessment of a SMBR model

2008

Over the last decade new technologies are emerging even more for wastewater treatment. Among the new technologies, a recent possible solution regards membrane bioreactors (MBRs) that represent a promising alternative to conventional processes. Nowadays, the recurrence to mathematical models as reliable tools in planning as well as management issues is of growing interest in Wastewater Treatment Plants field. Regarding MBR modelling, due to the intrinsic complexity and uncertainty in some processes, basic models that can provide a holistic understanding of the technology at a fundamental level are of great necessity. Many mathematical models have been developed for modelling the MBR which ba…

Mathematical modelSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleMembrane reactorASMUncertainty
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Effect of C/N shock variation on the performances of a moving bed membrane bioreactor.

2015

Abstract The effect of a sharp variation of C/N ratio in a moving bed membrane bioreactor (MB-MBR) pilot plant treating high strength wastewater has been investigated. The experimental campaign was divided into two periods, each characterized by a different C/N ratio (namely, 2.5 and 15, Period 1 and Period 2, respectively). The MB-MBR system was analyzed in terms of organic carbon removal, nitrification efficiency, biokinetic activity and fouling behavior. The results showed that the nitrification process was severely affected by lower C/N value and by high concentration of ammonia. It was noticed an extensive stress effect on the autotrophic bacteria. Furthermore, it was observed an incre…

Moving bed membrane bioreactorEnvironmental EngineeringBiofoulingNitrogenOLRBioengineeringPilot ProjectsC/N ratio; Moving bed membrane bioreactor; Nitrification; OLR; Bioengineering; Environmental Engineering; Waste Management and DisposalMembrane bioreactorWaste Disposal FluidAmmoniachemistry.chemical_compoundExtracellular polymeric substanceBiopolymersBioreactorsAmmoniaBioreactorBiomassWaste Management and DisposalBiological Oxygen Demand AnalysisChromatographyFoulingBacteriaRenewable Energy Sustainability and the EnvironmentChemistryMembranes ArtificialGeneral MedicineC/N ratioNitrificationCarbonMembraneChemical engineeringBiofilmsNitrificationOxidation-ReductionParticle depositionBioresource technology
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An integrated model for physical-biological wastewater organic removal in a submerged membrane bioreactor: Model development and parameter estimation

2008

The paper presents the setting up of a mathematical model for membrane bioreactor able to simulate physical-biological wastewater organic removal. The model is basically divided into two sub-models: the first sub-model is basically devoted for the simulation of the biological features and the second one for the physical processes. In particular regarding the biological aspects, the ASM concept has been employed. On the other hand, the physical processes have been modelled considering the deep-bed theory taking into account not only the effect of the physical membrane filtration but also the cake layer effect. This latter operates as a biological membrane leading to a further reduction of th…

EngineeringSettore ICAR/03 - Ingegneria Sanitaria-Ambientalebusiness.industryEnvironmental engineeringMBR Model SMPFiltration and SeparationMembrane bioreactorBiochemistrylaw.inventionPilot plantMembraneWastewaterlawScientific methodDeposition (phase transition)General Materials SciencePhysical and Theoretical ChemistrybusinessProcess engineeringEffluentFiltration
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Reactivation of aerobic granular sludge for the treatment of industrial shipboard slop wastewater: Effects of long-term storage on granules structure…

2021

Abstract This work reports on reactivation of aerobic granular sludge (AGS) for the treatment of industrial recalcitrant wastewater (slop wastewater) characterized by high salinity and hydrocarbons. AGS were reactivated in two reactors, R1 and R2, to treat industrial slop wastewater after a long-term storage for 12-months at 4 °C. In R1, salt-adapted mature aerobic granules were previously subjected to a step-wise increase of hydrocarbons, whereas in R2 aerobic granules were previously cultivated in presence of salinity and hydrocarbons. After a short-term reactivation period, the slop dosage caused a simultaneous decrease of granules dimensions and proteins/polysaccharides (PN/PS) ratio do…

Aerobic granular sludge reactivationNGS 16S rDNA02 engineering and technology010501 environmental sciences01 natural sciencesIndustrial wastewater treatmentGranulationIndustrial wastewater020401 chemical engineering0204 chemical engineeringSafety Risk Reliability and QualityTPH hydrocarbonWaste Management and Disposal0105 earth and related environmental sciencesbiologyChemistryProcess Chemistry and TechnologyBiofilmBiodegradationPulp and paper industrybiology.organism_classificationSalinityWastewaterMicrobial population biologyEPSBacteriaBiotechnology
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Occurrence of Microplastics in Waste Sludge of Wastewater Treatment Plants: Comparison between Membrane Bioreactor (MBR) and Conventional Activated S…

2022

In this study, the presence of microplastics in the sludge of three wastewater treatment plants (WWTPs) was examined. The investigated WWTPs operated based on a conventional activated sludge (CAS) process, with (W1) or without (W2) primary clarification, and a membrane bioreactor process (MBR) (W3). The microplastics (MPs) concentration in the samples of W3 was approximately 81.1 ± 4.2 × 103 particles/kg dry sludge, whereas MPs concentrations in W1 and W2 were 46.0 ± 14.8 × 103 particles/kg dry sludge and 36.0 ± 5.2 × 103 particles/kg dry sludge, respectively. Moreover, MPs mainly consisted of fragments (66–68%) in the CAS plants, whereas the fra…

membrane bioreactors microplastics waste sludge wastewater treatment plantSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleProcess Chemistry and TechnologySettore ING-IND/34 - Bioingegneria IndustrialeChemical Engineering (miscellaneous)Filtration and Separationmembrane bioreactors; microplastics; waste sludge; wastewater treatment plantMembranes
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Particle size distribution and biomass growth in a submerged membrane bioreactor

2006

Submerged membrane bioreactors (MBR)associate in a single treatment unit a process ofbiological treatment and a phase of solid/liquidseparation by membrane filtration. Due to reduced membrane porosity, suspendedsolids and large amount of bacteria and virusesmay be retained in the reactor; consequently, highbiomass concentration is generally established inthe system. Indeed, this latter circumstance leadsto obtain a system able to operate with a low F/Mand high SRT and hence, as a result, a low sludgeproduction. In technical literature, the definition of fou-lants in MBR systems is a controversial task.More specifically, the influence of TSS onmixed liquor filterability has not been yet full…

FlocculationComplete Sludge Retention TimeMembrane reactorSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleChemistryMechanical EngineeringGeneral Chemical EngineeringEnvironmental engineeringBiomassGeneral ChemistryMembrane bioreactorPulp and paper industrylaw.inventionMBRMembranelawPhase (matter)BioreactorGeneral Materials SciencePSDFiltrationWater Science and Technology
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Analisi di processo e dinamica della comunità batterica nel trattamento di sedimenti marini con reattori bioslurry

2020

Nella nota sono riportati i risultati di una sperimentazione condotta mediante la messa in esercizio di un reattore bioslurry per il trattamento di sedimenti marini contaminati da idrocarburi. Sono state valutate le performance di processo in termini di rimozione di TPH (86% con velocità di rimozione massima di 36 mgTPH kg-1 d-1) congiuntamente ad altre tipologie di indagini volte ad ottenere maggiori informazioni sulla natura dei processi che si sono sviluppati nel reattore. Nello specifico, è stato utilizzato un approccio di tipo microbiologico mediante l’adozione di una tecnica di sequenziamento di nuova generazione (NGS - Next Generation Sequencing). Dall’analisi dei dati biologici è st…

BioslurrySettore ICAR/03 - Ingegneria Sanitaria-AmbientaleHydrocarbonMicrobial communityMarine Sediment
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Foaming in membrane bioreactors: Identification of the causes

2012

Membrane bioreactors (MBRs) represent by now a well established alternative for wastewater treatment. Their increasing development is undoubtedly related to the several advantages that such technology is able to guarantee. Nevertheless, this technology is not exempt from operational problems; among them the foaming still represents an "open challenge" of the MBR field, due to the high complexity of phenomenon. Unfortunately, very little work has been done on the foaming in MBRs and further studies are required. Actually, there is not a distinct difference between conventional activated system and MBR: the main difference is that the MBR plants can retain most Extracellular Polymeric Substan…

Environmental EngineeringBacteriaSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleWaste managementChemistrySegmented filamentous bacteriaGeneral MedicineModels TheoreticalManagement Monitoring Policy and LawPulp and paper industryWaste Disposal FluidBioreactorsEPS Filamentous micro-organisms Foam power Foaming MBR Modified scum indexExtracellular polymeric substanceActivated sludgeMembranePower testHigh complexityData Interpretation StatisticalBioreactorSewage treatmentExtracellular SpaceWaste Management and DisposalJournal of Environmental Management
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The role of extracellular polymeric substances on aerobic granulation with stepwise increase of salinity

2018

Abstract A granular sequencing batch reactor (GSBR) worked for 164 days to study the effect of salinity on aerobic granulation. The feeding had an organic loading rate (OLR) of 1.6 kg COD⋅m −3 ⋅d −1 and a gradual increase of salinity (from 0.30 to 38 g NaCl − ⋅L −1 ) to promote a biological salt-adaptation. First aggregates (average diameter ≈ 0.4 mm) appeared after 14 days. Extracellular polymeric substances (EPSs) analyses revealed that proteins were mainly higher than polysaccharides, and microorganisms metabolized EPSs as additional carbon source, mostly in feast phase, to face the energy demand for salinity adaptation. No significant worsening of organic matter removal was observed. Th…

0208 environmental biotechnologyHydrophobicitySequencing batch reactorFiltration and Separation02 engineering and technology010501 environmental sciences01 natural sciencesAcclimatizationNutrients removalAnalytical ChemistryAerobic granular sludge; EPS; Extracellular polymeric substances; Hydrophobicity; Nutrients removal; Saline wastewater; Analytical Chemistry; Filtration and SeparationExtracellular polymeric substanceExtracellular polymeric substanceOrganic matterFood science0105 earth and related environmental scienceschemistry.chemical_classificationSettore ICAR/03 - Ingegneria Sanitaria-Ambientale020801 environmental engineeringSalinitychemistryAerobic granular sludgeAerobic granulationNitrificationEPSSaline wastewaterAnaerobic exercise
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Preliminary insights about the treatment of contaminated marine sediments by means of bioslurry reactor: Process evaluation and microbiological chara…

2022

Abstract Contaminated marine sediments represent a critical threat towards human health and ecosystems, since they constitute a potential reservoir of toxic compounds release. In the present study, a bioslurry reactor was studied for the treatment of real marine sediments contaminated by petroleum hydrocarbons. The experimental campaign was divided in two periods: in the first period, microcosm trials were carried out to achieve useful indicators for biological hydrocarbon removal from sediments. The microcosm trials highlighted that the inoculum of halotolerant allochthonous bacteria provided the highest performance followed by autochthonous biomass. Based on the achieved results, in the s…

Geologic SedimentsBioaugmentationEnvironmental EngineeringSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleSedimentBiomassContaminationPollutionHydrocarbonschemistry.chemical_compoundBiodegradation EnvironmentalPetroleumBioremediationchemistryMicrobial population biologyEnvironmental chemistryBioaugmentation Bioremediation Contaminated marine sediments Hydrocarbon pollution Microbial communityHumansEnvironmental ChemistryEnvironmental scienceTotal petroleum hydrocarbonMicrocosmWaste Management and DisposalEcosystemScience of The Total Environment
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Comparison between ozonation and the OSA process: analysis of excess sludge reduction and biomass activity in two different pilot plants

2012

The excess biomass produced during biological treatment of municipal wastewater represents a major issue worldwide, as its disposal implies environmental, economic and social impacts. Therefore, there has been a growing interest in developing technologies to reduce sludge production. The main proposed strategies can be categorized according to the place inside the wastewater treatment plant (WWTP) where the reduction takes place. In particular, sludge minimization can be achieved in the wastewater line as well as in the sludge line. This paper presents the results of two pilot scale systems, to evaluate their feasibility for sludge reduction and to understand their effect on biomass activit…

Environmental EngineeringSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleSewageWaste managementbusiness.industryexcess sludge OSA process ozonation respiratory activity sludge minimizationBiomassSewagePilot ProjectsWaste Disposal FluidWater PurificationMixed liquor suspended solidsOzoneActivated sludgePilot plantWastewaterSewage sludge treatmentEnvironmental scienceSewage treatmentAnaerobiosisBiomassbusinessWater Science and TechnologyWater Science and Technology
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High salinity wastewater treatment by membrane bioreactors

2020

Abstract This chapter reviews the state of the art regarding the use of membrane bioreactor (MBR) systems for saline wastewater treatment. In particular, a comprehensive review is presented discussing the most adopted MBR configurations for the treatment of saline wastewater. Further, the chapter discusses the main effects of salinity on the biological performance, kinetic parameters, fouling development, sludge rheological features, and greenhouse gas (GHG) production. Literature results show that there is a significant effect of the salinity (and/or salinity variations) on the biological performance and membrane filtration. Specifically, it was found that a gradual salinity increase, carr…

Saline wastewater treatmentFoulingSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleFoulingMembrane bioreactorPulp and paper industrylaw.inventionSalinityBiological processMembraneWastewaterlawMicrobial communityBioreactorEnvironmental scienceMembrane bioreactorSewage treatmentFiltration
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Modeling of perched leachate zone formation in municipal solid waste landfills.

2010

The paper presents a 1D mathematical model for the simulation of the percolation fluxes throughout a landfill for municipal solid waste (MSW). Specifically, the model was based on mass balance equations, that enable simulation of the formation of perched leachate zones in a landfill for MSW. The model considers the landfill divided in several layers evaluating the inflow to and outflow from each layer as well as the continuous moisture distribution. The infiltration flow was evaluated by means of the Darcy’s law for an unsaturated porous medium, while the moisture distribution evaluation has been carried out on the basis of the theory of the vertically distributed unsaturated flow. The solu…

Municipal solid wasteSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleMoistureMass balanceEnvironmental engineeringInflowModels TheoreticalInfiltration (hydrology)Mathematical modelHydrologic balancesWaste ManagementEnvironmental sciencePerched leachate zoneComputer SimulationLandfillLeachatePorous mediumWaste Management and DisposalWater contentWaste management (New York, N.Y.)
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Evaluation of methane emissions from Palermo municipal landfill: Comparison between field measurements and models

2010

Methane (CH(4)) diffuse emissions from Municipal Solid Waste (MSW) landfills represent one of the most important anthropogenic sources of greenhouse gas. CH(4) is produced by anaerobic biodegradation of organic matter in landfilled MSW and constitutes a major component of landfill gas (LFG). Gas recovery is a suitable method to effectively control CH(4) emissions from landfill sites and the quantification of CH(4) emissions represents a good tool to evaluate the effectiveness of a gas recovery system in reducing LFG emissions. In particular, LFG emissions can indirectly be evaluated from mass balance equations between LFG production, recovery and oxidation in the landfill, as well as by a d…

Methane emissionsMunicipal solid wasteFlux.Methanechemistry.chemical_compoundChamber methodAccumulation chamberCitiesWaste Management and DisposalWaste managementMass balanceEnvironmental engineeringMunicipal solid wasteModels TheoreticalRefuse DisposalLandfill gasItalychemistryGreenhouse gasMethane emissionGreenhouse effect gaEnvironmental scienceEnvironmental PollutantsLandfillMethaneWaste Management
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A Brief Review on the Resistance-in-Series Model in Membrane Bioreactors (MBRs)

2019

The cake layer deposited on the membrane modules of membrane bioreactors (MBRs), especially under a submerged configuration, represents a relevant and fundamental mechanism deeply influencing the development of membrane fouling. It negatively affects the total resistance to filtration, while exerting a positive effect as a “pre-filter„ promoting the “dynamic membrane„ that protects the physical membrane from internal fouling. These two opposite phenomena should be properly managed, where the submerged membranes are usually subjected to a periodical cake layer removal through ordinary (permeate backwashing and air scouring) and/or irregular cleaning actions (manual ph…

Materials scienceBackwashingFiltration and SeparationContext (language use)02 engineering and technologyReview010501 environmental scienceslcsh:Chemical technology01 natural scienceslaw.inventionMBRlawRIS modelBioreactorChemical Engineering (miscellaneous)lcsh:TP1-1185lcsh:Chemical engineeringProcess engineeringFiltration0105 earth and related environmental sciencespore blockingFoulingSettore ICAR/03 - Ingegneria Sanitaria-Ambientalebusiness.industryProcess Chemistry and TechnologyMembrane foulinglcsh:TP155-156021001 nanoscience & nanotechnologyphysical cleaningcake depositionMembranereversible and irreversible foulingLayer removal0210 nano-technologybusinessMembranes
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Simultaneous nitrogen and organic carbon removal in aerobic granular sludge reactors operated with high dissolved oxygen concentration

2013

Simultaneous nitrification and denitrification (SND) together with organic removal in granules is usually carried out without Dissolved Oxygen (DO) concentration control, at ‘‘low DO’’ (with a DO 7–8 mg/L, during feast and famine conditions respectively). In particular, different strategies of cultivation and several organic and nitrogen loading rate have been applied, in order to eval- uate the efficiencies in SND process without dissolved oxygen control. The results show that, even under conditions of high DO concentration, nitrogen and organic matter can be simultaneously removed, with efficiency >90%. Nevertheless, the biological conditions in the inner layer of the granule may change sig- …

Environmental EngineeringNitrogenchemistry.chemical_elementPilot ProjectsBioengineeringSimultaneous nitrification-denitrificationBioreactorsLong periodOrganic matterWaste Management and DisposalTotal organic carbonchemistry.chemical_classificationSewageSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleRenewable Energy Sustainability and the EnvironmentGranule (cell biology)Environmental engineeringGeneral MedicineNitrogenAerobiosisCarbonOxygenSolubilitychemistryAerobic granular sludge Granule size Nutrient removal Feast-famine SND processEnvironmental chemistryLoading rateParticle size
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erformances of a granular sequencing batch reactor (GSBR)

2006

SBARSBBCSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleGranulare sludge
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Influence of the Height of Municipal Solid Waste Landfill on the Formation of Perched Leachate Zones

2015

Waste settlement as well as consolidation phenomena, which occur inside a landfill for municipal solid waste (MSW), can cause a decrease in waste permeability. This can lead to a reduction in conveyance of the leachate drainage system. It is therefore possible that a so-called perched leachate zone will form. Such a zone is constituted by an area in the body of the landfill where the leachate is temporarily trapped and is unable to infiltrate downward. This phenomenon is influenced by many factors, which include rain infiltration rate, waste moisture and composition, landfill height, and so on. The main aim of the paper is to elucidate the role played by landfill height in the formation of …

Environmental EngineeringBioreactor landfillMunicipal solid wasteSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleConsolidation (soil)MoistureEnvironmental engineeringPermeability (earth sciences)Hydraulic conductivityMunicipal solid waste landfillMunicipal wastes Landfill Leachate Mathematical models Settlement Hydraulic conductivityEnvironmental ChemistryEnvironmental scienceLeachateGeneral Environmental ScienceCivil and Structural EngineeringJournal of Environmental Engineering
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Intermittent Aeration in a Hybrid Moving Bed Biofilm Reactor for Carbon and Nutrient Biological Removal

2020

The paper presents an experimental study on a lab scale hybrid moving bed biofilm reactor with intermittent aeration. Specifically, a comparison between two different operating conditions was analyzed: continuous and intermittent aeration. Both continuous and intermittent aeration were monitored and compared in order to get the best operational conditions. The intermittent aeration campaign was sub-divided in three phases with different duration of alternation of aerobic and anoxic times and organic and nitrogen loading rates. The efficiency of N-removal improved by 70% during the intermittent aeration. The best condition was observed with 40 min of aeration and 20 min of no-aeration, an or…

0106 biological scienceskinetic testslcsh:Hydraulic engineeringGeography Planning and DevelopmentLab scalechemistry.chemical_elementadvanced wastewater treatment010501 environmental sciencesAquatic Science01 natural sciencesBiochemistryNutrientlcsh:Water supply for domestic and industrial purposeslcsh:TC1-978010608 biotechnologyEffluent0105 earth and related environmental sciencesWater Science and Technologylcsh:TD201-500Settore ICAR/03 - Ingegneria Sanitaria-AmbientaleMoving bed biofilm reactorsndPulp and paper industryAnoxic watersNitrogenintermittent aerationchemistryEnvironmental scienceAerationCarbonWater
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I reattori aerobici granulari: esperienze con refluo reale e sintetico

2008

La granulazione aerobica può essere ottenuta nei sistemi con alimentazione discontinua in due differenti configurazioni impiantistiche, che permettono di realizzare i necessari sforzi tangenziali per la formazione dei granuli: il Sequencing Batch Bubble Column Reactor (SBBC) e il Sequencing Batch Airlift Reactor (SBAR). Lo scopo di questo studio è stato quello di osservare il fenomeno della granulazione aerobica e valutare il ruolo del tempo di sedimentazione durante la fase di selezione e formazione dei granuli. L’intera sperimentazione è stata suddivisa in due diverse campagne sperimentali in cui è stato utilizzato refluo sintetico, nella prima, e refluo reale, nella seconda. Al fine di e…

SBARSBBCSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleGranulazione aerobicaGSBRStart-upTempo di sedimentazione.
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Cultivation of granular sludge with hypersaline oily wastewater

2015

The time required to stabilise mature aerobic granules is rather variable. In addition, cultivation time and the structural characteristics of granules seem to be related to the nature of wastewater influent. Granular sludge has been used for the treatment of several industrial wastewaters, but nothing has been reported about wastewater characterized by the simultaneous presence of hydrocarbons and high chloride concentration. In this work, the authors analysed the granulation process and performance as well as the physical characteristics of aerobic granules in two Granular Sequencing Batch Airlift Reactors (GSBARs), fed with acetate-based synthetic wastewater in reactor 1 (R1) and with a …

ChromatographySettore ICAR/03 - Ingegneria Sanitaria-AmbientaleChemistryAirliftBiomassPulp and paper industryMicrobiologyChlorideBiomaterialsSalinityGranulationAdsorptionWastewatermedicineNitrificationAerobic granular sludge Hydrocarbons Salinity Granulation Nutrient removal.Waste Management and Disposalmedicine.drug
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Influenza dei polimeri extracellulari sul fouling e sul foaming negli impianti MBR.

2009

L’applicazione sempre più diffusa dei bioreattori a membrana presenta tuttavia ancora alcuni fattori limitanti che ne condizionano l’adozione: infatti sono ancora incerte le previsioni della vita utile e dell’efficienza della barriera filtrante. In particolare, notevole incidenza sul processo ha il fouling, causato principalmente dai fenomeni di sporcamento condizionati prevalentemente dalla composizione della sospensione biologica sottoposta a filtrazione. Nella nota sono riportati i risultati di uno studio sperimentale che ha avuto per oggetto l’analisi dell’influenza di alcuni parametri specifici che, oltre a descrivere la qualità del fango attivo dei sistemi MBR, influenzano il processo…

Settore ICAR/03 - Ingegneria Sanitaria-AmbientaleEPS Fouling MBR
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An integrated model for biological and physical process simulation in membrane bioreactors (MBR).

2011

Abstract Mathematical modelling of membrane bioreactors (MBRs) for wastewater treatment has targeted either the biological processes (treatment quality target) as well as various aspects of system management. However, the high number of interactions among the involved physical–chemical processes, hampers a straightforward mathematical modelling. This circumstance is much more emphasized for submerged MBR systems where the membrane is immersed in an aeration tank. One of the main crucial points that prevents a comprehensive understanding is the interpretation of the fouling phenomenon and its connections with the biological processes. An overall mathematical model for MBR has not been comple…

EngineeringCalibration (statistics)media_common.quotation_subjectMonte Carlo methodResistanceTransmembrane pressureFiltration and Separationcomputer.software_genreBiochemistrySystems managementBioreactorASM1-SMPGeneral Materials SciencePhysical and Theoretical ChemistryProcess simulationFunction (engineering)Protocol (object-oriented programming)media_commonSMBR modellingSettore ICAR/03 - Ingegneria Sanitaria-Ambientalebusiness.industryEnvironmental engineeringFoulingPilot plantBiochemical engineeringbusinesscomputer
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Start-up with or without inoculum? Analysis of an SMBR pilot plant.

2010

This study analysed a submerged membrane bioreactor (SMBR) start-up with the purpose of determining the best conditions to carry it out. In order to do this, a hollow fibre membrane module was installed in a submerged configuration in a pilot aerobic reactor. The experiment was then divided in two phases, lasting 65 days each. During phase 1, the pilot plant was started-up without inoculum of activated sludge and no sludge, withdrawal was performed. Conversely, in phase 2, the MBR pilot plant was started-up with sludge inoculum and the sludge concentration was kept constant. In both phases, the volumetric loading rate applied to the pilot plant was kept constant. The authors analysed the di…

Complete sludge retention Floc size Fouling resistances Inoculum Sludge production Start-upFoulingMembrane reactorSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleChemistryMechanical EngineeringGeneral Chemical EngineeringMembrane foulingEnvironmental engineeringstart-up.fouling resistanceGeneral ChemistryMembrane bioreactorPulp and paper industryfloc sizeActivated sludgePilot plantBioreactorGeneral Materials ScienceWater treatmentsludge productionComplete sludge retentioninoculumWater Science and Technology
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The role of EPS concentration in MBR foaming: analysis of a submerged pilot plant.

2010

Foaming in Membrane BioReactor (MBR) is a frequently discussed topic. Some authors reported that the phenomenon is due to filamentous organisms, like at Conventional Activated Sludge (CAS) plants. However, in recent years, other authors reported that the Extra-cellular Polymer Substances (EPSs) concentration is an important factor for controlling foam as well. Nevertheless, even if a number of MBR plants are affected by foaming, presently there are no suitable methods to evaluate the phenomenon. To facilitate the study of this controversial phenomenon in an MBR system, certain foam tests proposed in the past for CASPs were investigated. The results of the tests were able to adequately measu…

Environmental EngineeringBiofoulingSurface PropertiesBioengineeringPortable water purificationPilot ProjectsMembrane bioreactorWater PurificationMBRBiofoulingBiopolymersBioreactorsFoam testBioreactorcardiovascular diseasesWaste Management and DisposalSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleWaste managementSewageViscosityRenewable Energy Sustainability and the EnvironmentChemistryMembranes ArtificialGeneral MedicinePulp and paper industryPilot plantActivated sludgelipids (amino acids peptides and proteins)EPSExtracellular SpaceProtein concentrationFoamingBioresource technology
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The role of EPS in the foaming and fouling for a MBR operated in intermittent aeration conditions

2016

Abstract This work investigates the causes of foaming and fouling in an Intermittent Aerated – Membrane BioReactor (IA-MBR) used for wastewater treatment. The experiment was divided into three periods with different aerated regimes expressed with different t aeration /t cycle ratio (Period I: 60 min/180 min, Period II: 80 min/180 min, Period III: 30 min/90 min). The advanced foaming tests used allow the study of the role of extracellular polymeric substances (EPSs) on foaming and fouling. In general, in the Periods I and II, good correlations between the EPSs and the Modified Scum Index without purification (MSI 0 ) and the Foam Power were observed. The results shown that the filamentous mi…

Environmental EngineeringSegmented filamentous bacteriaBiomedical EngineeringEPS; Filamentous bacteria; Foaming; Fouling; IA-MBR; Biotechnology; Bioengineering; Environmental Engineering; Biomedical EngineeringBioengineering02 engineering and technology010501 environmental sciencesMembrane bioreactor01 natural scienceslaw.inventionExtracellular polymeric substancelawFiltration0105 earth and related environmental sciencesEPS; Filamentous bacteria; Foaming; Fouling; IA-MBRIA-MBRSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleFoulingChemistryEnvironmental engineeringFouling021001 nanoscience & nanotechnologyPulp and paper industryFilamentous bacteriaMembraneSewage treatmentEPSAerationIA-MBR Filamentous bacteria Foaming Fouling EPS0210 nano-technologyFoamingBiotechnologyBiochemical Engineering Journal
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Formation Of perched leachate zones in MSW landfill

2010

The paper presents a 1D mathematical model for the simulation of the percolation fluxes throughout a landfill for municipal solid waste (MSW). Specifically, the model is based on mass balance equations, that enable one to simulate the formation of perched leachate zones in a landfill for MSW. The model considers the landfill divided in several layers evaluating the in and out flow throughout each layer as well as the continuous moisture distribution. The infiltration flow is evaluated by means of the Darcy’s law for an unsaturated porous medium, while the moisture distribution evaluation has been carried out on the basis of the theory of the vertically distributed unsaturated flow. The solu…

Settore ICAR/03 - Ingegneria Sanitaria-AmbientaleSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaMathematical model perched leachate zone landfill hydrologic balances
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Analisi della fase di start-up di un bioreattore a membrana

2006

L’applicazione dei sistemi MBR, pur garantendo elevati rendimenti di rimozione, è ancora oggi limitata, a causa di alcuni fattori che ne condizionano il funzionamento. Tra questi, uno dei principali è il fouling dovuto ai fenomeni di sporcamento della membrana da parte della sospensione biologica. Nella memoria si riportano i primi risultati di uno studio che ha avuto l’obiettivo di definire l’evoluzione e l’influenza del fouling sul processo di filtrazione durante la fase di avviamento dell’impianto, avvenuto senza inoculo iniziale di fango. La sperimentazione è stata condotta in un impianto pilota costituito da un bioreattore all’interno del quale è stato installato il modulo di membrane …

MBR fouling granulometria dei fiocchi resistenze start-upSettore ICAR/03 - Ingegneria Sanitaria-Ambientale
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Comparison between moving bed-membrane bioreactor (MB-MBR) and membrane bioreactor (MBR) systems: Influence of wastewater salinity variation

2014

Two pilot plant systems were investigated for the treatment of wastewater subject to a gradual increase of salinity. In particular, a membrane bioreactor (MBR) and a moving bed biofilm membrane bioreactor (MB-MBR) were analyzed. Carbon and ammonium removal, kinetic constants and membranes fouling rates have been assessed. Both plants showed very high efficiency in terms of carbon and ammonium removal and the gradual salinity increase led to a good acclimation of the biomass, as confirmed by the respirometric tests. Significant biofilm detachments from carriers were experienced, which contributed to increase the irreversible superficial cake deposition. However, this aspect prevented the por…

SalinityEnvironmental EngineeringBiofoulingPilot ProjectsBioengineeringWastewaterMembrane bioreactorWaste Disposal Fluidchemistry.chemical_compoundBiopolymersBioreactorsAmmonium CompoundsElectric ImpedanceAmmoniumBiomassWaste Management and DisposalBiological Oxygen Demand AnalysisSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleFoulingRenewable Energy Sustainability and the EnvironmentMembrane foulingEnvironmental engineeringMembranes ArtificialGeneral MedicineMembrane fouling Saline wastewater MB-MBR RespirometryPulp and paper industrySalinityKineticsPilot plantMembranechemistryWastewaterBiofilmsExtracellular SpaceFiltrationBioresource Technology
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Performance of membrane bioreactor (MBR) systems for the treatment of shipboard slops: Assessment of hydrocarbon biodegradation and biomass activity …

2015

In order to prevent hydrocarbon discharge at sea from ships, the International Maritime Organization (IMO) enacted the MARPOL 73/78 convention in which any oil and oil residue discharged in wastewater streams must contain less than 5. ppm hydrocarbons. Effective treatment of this petroleum-contaminated water is essential prior to its release into the environment, in order to prevent pollution problem for marine ecosystems as well as for human health. Therefore, two bench scale membrane bioreactors (MBRs) were investigated for hydrocarbon biodegradation. The two plants were initially fed with synthetic wastewater characterised by an increasing salinity, in order to enhance biomass acclimatio…

PollutionSalinityEnvironmental EngineeringHydrocarbonmedia_common.quotation_subjectOceans and SeaHealth Toxicology and MutagenesisOceans and SeasTPHBioreactorPilot ProjectsBiological Oxygen Demand AnalysisMB-MBR; MBR; Salinity; Slops; TPH; Biological Oxygen Demand Analysis; Carbon; Hydrocarbons; Membranes Artificial; Oceans and Seas; Pilot Projects; Plants; Waste Disposal Fluid; Water Pollutants Chemical; Biodegradation Environmental; Biomass; Bioreactors; Salinity; Environmental Engineering; Environmental Chemistry; Waste Management and Disposal; Pollution; Health Toxicology and MutagenesisMembrane bioreactorWaste Disposal FluidMBRBiomaBioreactorsBioreactorEnvironmental ChemistryPilot ProjectMB-MBRSlopBiomassWaste Management and Disposalmedia_commonchemistry.chemical_classificationBiological Oxygen Demand AnalysisSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleEnvironmental engineeringMembranes ArtificialPlantBiodegradationPlantsPollutionCarbonHydrocarbonsSalinityHydrocarbonBiodegradation EnvironmentalchemistryWastewaterEnvironmental scienceBiological Oxygen Demand AnalysiWater Pollutants Chemical
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Evaluation of biomass activity and wastewater characterization in a UCT-MBR pilot plant by means of respirometric techniques

2011

Abstract Over the last two decades, Membrane Bioreactors (MBRs) emerged even more for wastewater treatment, ensuring high removal efficiencies as well as very small footprint requirements. Indeed, in this kind of process, a modification in biomass activity and viability can exist compared to that of a CAS process. In this context, respirometric analysis represents a reliable tool in order to evaluate the actual biomass kinetic parameters, to insert in mathematical models in the design phase, as well as to monitor the biomass viability, especially when these processes are operated with high SRT values. The paper presents some results of respirometric techniques applied for the characterisati…

biologySettore ICAR/03 - Ingegneria Sanitaria-AmbientaleMechanical EngineeringGeneral Chemical EngineeringEnvironmental engineeringBiomassContext (language use)General ChemistryWastewater treatmentbiology.organism_classificationBiokinetic coefficientPilot plantPilot plant experimentWastewaterNitrifying bacteriaBioreactorMembrane Bioreactor (MBR)Environmental scienceGeneral Materials ScienceSewage treatmentNitrificationRespirometric analysiWater Science and Technology
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