Search results for "membrane fouling"

showing 10 items of 59 documents

Treatment of Oily Wastewater with Membrane Bioreactor Systems

2017

The aim of the present work was to investigate the behavior of a membrane bioreactor (MBR) system for the treatment of oily wastewater. A bench scale MBR was fed with synthetic wastewater containing diesel fuel. Organic carbon, hydrocarbon and ammonium removal, kinetic constants, extracellular polymeric substances production, and membrane fouling rates were monitored. The MBR plant was operated for more than 200 days, and the results highlighted good carbon removal and nitrification, suggesting a sort of biomass adaptation to hydrocarbons. Membrane fouling analysis showed an increase in total resistance, likely due to hydrocarbons, which caused an irreversible fouling (pore blocking) mainly…

Membrane foulinglcsh:Hydraulic engineeringGeography Planning and Development02 engineering and technology010501 environmental sciencesAquatic ScienceMembrane bioreactor01 natural sciencesBiochemistryDiesel fuelchemistry.chemical_compoundlcsh:Water supply for domestic and industrial purposesExtracellular polymeric substancelcsh:TC1-978Total petroleum hydrocarbonOily wastewaterMembrane fouling; Oily wastewater; Total petroleum hydrocarbon; Geography Planning and Development; Biochemistry; Aquatic Science; Water Science and Technology0105 earth and related environmental sciencesWater Science and Technologylcsh:TD201-500Settore ICAR/03 - Ingegneria Sanitaria-AmbientaleWaste managementFoulingMembrane fouling021001 nanoscience & nanotechnologyPulp and paper industryoily wastewater; total petroleum hydrocarbon; membrane foulingWastewaterchemistryNitrificationTotal petroleum hydrocarbon0210 nano-technologyWater; Volume 9; Issue 6; Pages: 412
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The influence of solid retention time on IFAS-MBR systems: analysis of system behavior.

2018

A University of Cape Town Integrated Fixed-Film Activated Sludge Membrane Bioreactor (UCT-IFAS-MBR) pilot plant was operated at different values of the sludge retention time (SRT). Three SRTs were investigated at different durations: indefinitely, 30 and 15 days. The organic carbon, nitrogen and phosphorus removal, kinetic/stoichiometric parameters, membrane fouling tendency and sludge filtration properties were assessed. The findings showed that by decreasing the SRT, the pilot plant could maintain excellent carbon removal efficiencies throughout the experiments. In contrast, the biological carbon removal showed a slight nitrification and was slightly affected by the decrease of the SRT, s…

Nitrogen0208 environmental biotechnologychemistry.chemical_element02 engineering and technology010501 environmental sciencesMembrane bioreactor01 natural sciencesWaste Disposal Fluidbiofilmlaw.inventionnutrients removalBioreactorslawEnvironmental ChemistryWaste Management and DisposalFiltration0105 earth and related environmental sciencesWater Science and TechnologySettore ICAR/03 - Ingegneria Sanitaria-AmbientaleSewagemembrane foulingChemistryPhosphorusMembrane foulingMembranes ArtificialGeneral Medicinesludge retention timePulp and paper industryNitrification020801 environmental engineeringUniversity of Cape Town pilot plantPilot plantActivated sludgeBiofilmsNitrificationhuman activitiesCarbonEnvironmental technology
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Fouling mechanism elucidation in membrane bioreactors by bespoke physical cleaning

2018

Abstract Cake layer deposition on a membrane surface can determine both external and internal membrane fouling through negatively affecting the total filtration resistance while exerting a positive effect as a pre-filter. Membranes are usually subjected to a periodic cake layer removal through routine physical cleaning, specifically permeate backwashing of hollow fiber membranes, or enhanced cleaning through, for example, chemically-enhanced backwashing. Physical cake layer removal is crucial for sustaining permeability, yet the effect of different physical cleaning modes remains poorly evaluated. The present work attempts to analyze physical cake layer removal through the application of sp…

Physical cleaningMaterials scienceFilter cakeResistanceBackwashingFiltration and Separation02 engineering and technology010501 environmental sciences01 natural scienceslaw.inventionAnalytical ChemistrylawDeposition (phase transition)Process engineeringFiltration0105 earth and related environmental sciencesFoulingSettore ICAR/03 - Ingegneria Sanitaria-Ambientalebusiness.industryMembrane foulingFoulingPermeation021001 nanoscience & nanotechnologyMembraneBackwashing0210 nano-technologybusinessLayer (electronics)
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Multistage recovery process of seaweed pigments: Investigation of ultrasound assisted extraction and ultra-filtration performances

2017

International audience; The objectives of this study were first to evaluate the performance of seaweed pigments’ recovery through ultrasound assisted extraction (UAE) and ultra-filtration (UF), and second to investigate the membrane fouling mechanism and evidence the threshold flux during filtration. The pigments’ recovery from the extract was performed using 5 kDa and 10 kDa ultra-filtration membranes. Results showed that increasing the extraction temperature in the range of 40–60 °C was proportional to chlorophyll extraction efficiency, while the maximal carotenoid yield was achieved at 50 °C. Ultrasonic power (from 100 W to 300 W) facilitated the extraction of both chlorophylls and carot…

PigmentsMembrane fouling[SDV.BIO]Life Sciences [q-bio]/BiotechnologyGeneral Chemical Engineering[SDV]Life Sciences [q-bio]Biochemistrylaw.inventionchemistry.chemical_compound0404 agricultural biotechnologylawUltra-filtration[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringCarotenoidFiltrationchemistry.chemical_classificationChromatographyFoulingMembrane foulingExtraction (chemistry)Threshold flux04 agricultural and veterinary sciencesPermeationSeaweed040401 food scienceMembranechemistryChlorophyllUltrasound-assisted extraction[SDV.AEN]Life Sciences [q-bio]/Food and NutritionFood ScienceBiotechnology
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Biological nitrogen and phosphorus removal in membrane bioreactors: model development and parameter estimation

2012

Membrane bioreactors (MBR) are being increasingly used for wastewater treatment. Mathematical modeling of MBR systems plays a key role in order to better explain their characteristics. Several MBR models have been presented in the literature focusing on different aspects: biological models, models which include soluble microbial products (SMP), physical models able to describe the membrane fouling and integrated models which couple the SMP models with the physical models. However, only a few integrated models have been developed which take into account the relationships between membrane fouling and biological processes. With respect to biological phosphorus removal in MBR systems, due to th…

Process (engineering)NitrogenBioengineeringPilot ProjectsBiological Oxygen Demand AnalysisWastewaterModels BiologicalWaste Disposal FluidBioreactorsBiological Oxygen Demand AnalysisPhysical modelSewageSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleChemistryMembrane foulingEnvironmental engineeringMembranes ArtificialPhosphorusGeneral MedicineEnhanced biological phosphorus removalPilot plantWastewaterasm modelling biological processesSewage treatmentBiochemical engineeringBiotechnology
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Long-run operation of a reverse electrodialysis system fed with wastewaters.

2018

The performance of a Reverse ElectroDialysis (RED) system fed by unconventional wastewater solutions for long operational periods is analysed for the first time. The experimental campaign was divided in a series of five independent long-runs which combined real wastewater solutions with artificial solutions for at least 10 days. The time evolution of electrical variables, gross power output and net power output, considering also pumping losses, was monitored: power density values obtained during the long-runs are comparable to those found in literature with artificial feed solutions of similar salinity. The increase in pressure drops and the development of membrane fouling were the main det…

SalinityEnvironmental Engineering02 engineering and technology010501 environmental sciencesManagement Monitoring Policy and LawWastewaterWastewater reuse01 natural sciencesElectricityReversed electrodialysisReverse electrodialysiOsmotic powerPressureSalinity gradient powerWaste Management and DisposalIon exchange membrane0105 earth and related environmental sciencesFoulingMembrane foulingMembranes ArtificialFoulingGeneral MedicineElectrodialysis021001 nanoscience & nanotechnologyPulp and paper industryUnit operation6. Clean waterWastewaterEnvironmental scienceElectric power0210 nano-technologyJournal of environmental management
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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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The fouling phenomenon in membrane bioreactors: model description and strategies for energy saving

2015

Membrane fouling represents one of the major crucial issues for membrane bioreactor (MBR). Membrane fouling and high aeration requirements (for inducing shear stress to limit fouling) make MBR operation economically demanding due to high energy costs. Although several studies on MBR fouling have been performed, a comprehensive knowledge on how to reduce membrane fouling and consequently energy saving is still lacking. Two scenarios are analyzed and compared each implementing different operating conditions. As expected, MBR operation at low air flow rate (qa) leads to a substantial reduction of the operational costs (namely, 20% respect to the suggested manufacturers ones in terms of qa).

Settore ICAR/03 - Ingegneria Sanitaria-AmbientaleASM energy costs integrated MBR model membrane fouling.
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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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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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