Search results for "Wastewater treatment"

showing 10 items of 178 documents

Greenhouse Gas Emissions from Membrane Bioreactors

2017

Nowadays, it is widely accepted that wastewater treatment plants (WWTPs) are significant sources of greenhouse gas (GHG) emission, contributing to the anthropogenic sources. Among the GHG emitted from WWTPs, nitrous oxide (N2O) has been identified of having the major interest/concern, since its high global warming potential (GWP), is 298 times higher than that of CO2 and also to its capability to react with stratospheric ozone causing the layer depletion. Up to now, most of the experimental investigations have been carried out on conventional activated sludge (CAS) processes. The knowledge of N2O emission from advanced technologies such membrane bioreactors (MBRs) is still very limited. The…

Settore ICAR/03 - Ingegneria Sanitaria-AmbientaleFiltration NutrientsGlobal warmingfiltration nutrientsGlobal warmingEnvironmental engineeringWastewater treatmentGlobal warming membrane fltration nitrous oxide wastewater treatmentNitrous oxidechemistry.chemical_compoundActivated sludgePilot plantchemistryWastewaterGreenhouse gasOzone layerEnvironmental scienceWastewater treatment ; Global warming; Filtration NutrientsSewage treatment
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Quantifying sensitivity and uncertainty analysis of a new mathematical model for the evaluation of greenhouse gas emissions from membrane bioreactors

2015

Abstract A new mathematical model able to quantify greenhouse gas (GHG) emissions in terms of carbon dioxide (CO 2 ) and nitrous oxide (N 2 O) for a Membrane Bioreactor (MBR) is presented. The proposed mathematical model is of the Activated Sludge Model (ASM) family and takes into account simultaneously both biological and physical processes (e.g., membrane fouling). An analysis of the key factors and sources of uncertainty influencing GHG emissions is also presented. Specifically, the standardized regression coefficient, the Extended-FAST and a Monte Carlo based method are employed for assessing model factors which influence three performance indicators: effluent quality index, operational…

Settore ICAR/03 - Ingegneria Sanitaria-AmbientaleGlobal warmingMonte Carlo methodMembrane foulingEnvironmental engineeringFiltration and SeparationActivated sludge modelWastewater treatmentMembrane bioreactorBiochemistryMembrane technologyEmissionPilot plantGreenhouse gasEnvironmental scienceGeneral Materials ScienceMaterials Science (all)Emissions; Global warming; Model-based evaluation; Wastewater treatment; Physical and Theoretical Chemistry; Materials Science (all); Biochemistry; Filtration and SeparationModel-based evaluationPhysical and Theoretical ChemistryUncertainty analysis
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Variance-based sensitivity analysis for wastewater treatment plant modelling

2014

Global sensitivity analysis (GSA) is a valuable tool to support the use of mathematical models that characterise technical or natural systems. In the field of wastewater modelling, most of the recent applications of GSA use either regression-based methods, which require close to linear relationships between the model outputs and model factors, or screening methods, which only yield qualitative results. However, due to the characteristics of membrane bioreactors (MBR) (non-linear kinetics, complexity, etc.) there is an interest to adequately quantify the effects of non-linearity and interactions. This can be achieved with variance-based sensitivity analysis methods. In this paper, the Extend…

Settore ICAR/03 - Ingegneria Sanitaria-AmbientaleMBR modellingExtended-FASTWastewater treatmentGlobal sensitivity analysi
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Global sensitivity analysis in ASM applications: comparison of the SRC and Extended-FAST method for a UCT-MBR model

2011

In this study global sensitivity analysis is performed to identify influential as well as non-influential parameters in a model of a University Cape Town Membrane Bioreactor (UCT-MBR). In particular, the Standardised Regression Coefficients (SRC) and Extended-FAST sensitivity analysis methods are applied. The sensitivity of model variables towards parameter variation is analysed for CODTOT, SNH4, SNO3, SPO, and MLSS along five reactor compartments. Both methods indicate that the parameters identified as being influential differ from section to section due to the different processes involved. Moreover, the relevant influence of the membrane filtration parameters is detected in the first plan…

Settore ICAR/03 - Ingegneria Sanitaria-AmbientaleMBR modellingglobal sensitivity analysisWastewater treatment
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Characterization of wastewater and biomass activity in a membrane bioreactor using respirometric techniques

2010

Over the last two decades, Membrane Bioreactors (MBRs) emerged even more for wastewater treatment, ensuring high removal efficiencies as well as very small footprint required. Indeed, in this kind of process, a modification in biomass activity and viability can exist compared to that of a conventional activated sludge (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 sludge retention time (SRT) values. The paper presents some results of respirometri…

Settore ICAR/03 - Ingegneria Sanitaria-AmbientaleRespirometric analysis biokinetic coefficients Membrane Bioreactor (MBR) wastewater treatment Solid Retention Time (SRT) pilot plant experiment
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A mathematical model for a sequential batch membrane bioreactor pilot plant

2016

A mathematical model to quantify the nitrogen removal for a membrane bioreactor (MBR) has been presented in this study. The model has been applied to a pilot plant having a pre-denitrification MBR scheme. The pilot plant was cyclically filled with real saline wastewater according to the fill-draw-batch operation. The model was calibrated by adopting a specific protocol based on extensive field dataset. The Standardized Regression Coefficient (SRC) method was adopted to select the most influential model factors to be calibrated. Results related to the SRC method have shown that model factors of the efficiency of backwashing and the biological factors affecting the soluble microbial products …

Settore ICAR/03 - Ingegneria Sanitaria-AmbientaleWastewater treatment; membrane; calibration; uncertainty analysis; measured data.Wastewater treatmentuncertainty analysimeasured data.calibrationmembrane
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Towards a conceptual mathematical tool linking physical and biological processes for a reduction of ghg emissions from an mb-mbr plant

2016

The current study explores the influence of the air flow rate on greenhouse gas (GHG) emissions (direct and indirect), the operational costs (OCs), the effluent quality index (EQI) and effluent fines (EF). An University Cape Town (UCT) moving bed (MB) membrane bioreactor (MBR) pilot plant has been considered as case study where the influence of the air flow rate on the biological and physical processes has been analyzed. Constitutive relationships between the air flow rate and some performance indicators (i.e., EQI, OCs, direct and indirect GHG emissions) have been identified. Results showed that the EQI increases at low flow rate likely due to the dissolved oxygen (DO) limitation in the bi…

Settore ICAR/03 - Ingegneria Sanitaria-Ambientaleglobal warming potentialWastewater treatmentWastewater treatment; membrane; moving bed biofilm reactors; global warming potentialmembranemoving bed biofilm reactor
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Photocatalytic membrane reactors: configurations, performance and applications in water treatment and chemical production

2013

Abstract: The configurations and performance of photocatalytic membrane reactors (PMRs) assembled with membranes (also photocatalytic type) and/or suspended photocatalyst are described. Examples of the application of PMRs in water/wastewater treatment as well as in photocatalytic synthesis are shown. An outline of the modeling of PMRs is presented with a brief economic analysis; future trends in PMRs are also discussed.

Settore ING-IND/24 - Principi Di Ingegneria ChimicaPhotocatalytic membrane reactors PMR performance water/wastewater treatmentphotocatalytic synthesisMembraneMaterials scienceChemical engineeringMembrane reactorWaste managementPhotocatalysisEconomic analysisWater treatmentSewage treatmentSettore CHIM/07 - Fondamenti Chimici Delle TecnologieChemical production
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Techno-economic analysis of integrated processes for the treatment and valorisation of neutral coal mine effluents

2020

Abstract The disposal of highly-concentrated neutral coal mine effluents into the environment constitutes a severe threat to the natural ecosystem. This work proposes and compares five novel treatment chains to purify the effluent and recover raw materials. The chains present different combinations of pre-treatment and concentration technologies. In all cases, the solution sent to the concentration step is concentrated up to saturation to recover water and sodium chloride. Concerning the technical performances, the treatment chains are compared in terms of total energy demand and salt recovery. Furthermore, the economic feasibility assessment is performed via a novel global parameter, i.e. …

Settore ING-IND/26 - Teoria Dello Sviluppo Dei Processi Chimici020209 energyStrategy and ManagementWastewater treatment02 engineering and technologyRaw material7. Clean energyIndustrial and Manufacturing Engineering12. Responsible consumptionlaw.inventionCoal mine effluentlaw0202 electrical engineering electronic engineering information engineeringCost of electricity by sourceDistillationEffluentTechno-economic analysis0505 lawGeneral Environmental ScienceTechno-economic analysis of integrated processes for the treatment and valorisation of neutral coal mine effluentsEnergy demandRenewable Energy Sustainability and the Environmentbusiness.industry05 social sciencesCoal miningResource recoveryBuilding and ConstructionPulp and paper industryEconomic feasibility6. Clean water13. Climate action050501 criminologyEnvironmental scienceNanofiltrationValorisationbusinessThermal energyJournal of Cleaner Production
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Combined membrane and thermal desalination processes for the treatment of ion exchange resins spent brine

2019

Abstract The disposal of industrial wastewater effluents represents a critical environmental issue. This work focuses on the treatment of the spent brine produced by the regeneration of ion exchange resins employed for water softening. For the first time, a comprehensive techno-economic assessment and an analysis of the energy requirements of the treatment chain are carried out, via the simulation of ad hoc implemented models. The chain is composed of nanofiltration, double-stage crystallization and multi-effect distillation. The valuable product is the brine produced by the multi-effect distillation, which can be re-used for the regeneration. Therefore, the treatment chain’s economic feasi…

Settore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciCircular economy020209 energyLow-temperature thermal desalination02 engineering and technologyWastewater treatmentManagement Monitoring Policy and Law7. Clean energy12. Responsible consumptionWaste heat recovery unitlaw.inventionIndustrial wastewater treatmentIndustrial wastewater020401 chemical engineeringlawWaste heat0202 electrical engineering electronic engineering information engineeringTechno-economic analysi0204 chemical engineeringDistillationWaste heat recoveryTechno-economic analysisWaste managementbusiness.industryMechanical EngineeringBuilding and Construction6. Clean waterNanofiltrationGeneral EnergyBrineEnvironmental scienceNanofiltrationbusinessThermal energy
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