Search results for "Environmental Biotechnology"

showing 10 items of 568 documents

Analysis of pharmaceutical biodegradation of WWTP sludge using composting and identification of certain microorganisms involved in the process.

2018

Pharmaceuticals (PhCs) are organic contaminants that have been detected in wastewater, surface water, and soils throughout the world. The presence of 10 commonly used PhCs in Spain (azithromycin, benzylpenicillin, citalopram, fluconazole, fluoxetine, ibuprofen, irbesartan, olanzapine, telmisartan, and venlafaxine) was analysed at four wastewater treatment plants, and the changes in their concentrations during treatment were assessed. Although certain some PhCs were degraded in the treated water, their presence in sewage sludge increased in all cases. The sewage sludge was composted using rice straw to degrade the PhCs, and the composting efficiency was modified by changes in the relative C/…

Environmental EngineeringMicroorganism0208 environmental biotechnology02 engineering and technology010501 environmental sciences01 natural sciencesBenzylpenicillinWaste Disposal FluidSoilmedicineEnvironmental ChemistryWaste Management and Disposal0105 earth and related environmental sciencesSewageChemistryCompostingBiodegradationContaminationPulp and paper industryPollution020801 environmental engineeringBiodegradation EnvironmentalWastewaterSpainSoil waterSewage treatmentSludgemedicine.drugThe Science of the total environment
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Microalgae-bacteria consortia in high-rate ponds for treating urban wastewater: Elucidating the key state indicators under dynamic conditions

2020

[EN] On-line performance indicators of a microalgae-bacteria consortium were screened out from different variables based on pH and dissolved oxygen on-line measurements via multivariate projection analysis, aiming at finding on-line key state indicators to easily monitor the process. To fulfil this objective, a pilot-scale high-rate pond for urban wastewater treatment was evaluated under highly variable conditions, i.e. during the start-up period. The system was started-up without seed of either bacterial or microalgal biomass. It took around 19 days to fully develop a microalgal community assimilating nutrients significantly. Slight increases in the biomass productivities in days 26-30 sug…

Environmental EngineeringMonitoring0208 environmental biotechnologyBiomass02 engineering and technology010501 environmental sciencesManagement Monitoring Policy and LawWastewater01 natural sciencesWaste Disposal FluidDomestic wastewaterNutrientStatistical analysesMicroalgaeBiomassPondsWaste Management and DisposalTECNOLOGIA DEL MEDIO AMBIENTE0105 earth and related environmental sciencesHigh rateOpen pondsbiologyBacteria[SDE.IE]Environmental Sciences/Environmental EngineeringMinimum timeEnvironmental engineeringGeneral Medicinebiology.organism_classification6. Clean water020801 environmental engineeringSingle-stage treatmentWastewaterEnvironmental scienceSewage treatmentBacteria
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Contamination of a hospital plumbing system by persister cells of a copper-tolerant high-risk clone of Pseudomonas aeruginosa

2019

Abstract Background Pseudomonas aeruginosa (PA) is an important opportunistic pathogen that thrives best in the distal elements of plumbing and waste-water systems. Although nosocomial outbreaks of PA have been associated with water sources, the role of the plumbing system of healthcare premises as a reservoir for this pathogen is still unclear. Materials and methods We collected water samples from 12 technical areas, distant from any medical activity, in a teaching hospital in France once a week for 11 weeks. We used a method that resuscitates persister cells because of the nutrient-poor conditions and the presence of inhibitors (e.g. chlorine and copper ions). Briefly, water was sampled i…

Environmental EngineeringMultidrug tolerance0208 environmental biotechnology02 engineering and technology010501 environmental sciencesmedicine.disease_cause01 natural sciencesMicrobiologyAgar platechemistry.chemical_compoundGenomic islandmedicinePseudomonas syringaeHumansWaste Management and DisposalPathogen0105 earth and related environmental sciencesWater Science and TechnologyCivil and Structural EngineeringOne healthbiologyPersistersPseudomonas aeruginosaEcological Modelingbiology.organism_classificationPollutionPremises plumbingPseudomonas putidaHospitals020801 environmental engineering3. Good healthR2a agar[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologychemistryPseudomonas aeruginosaFranceSanitary EngineeringCopper
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Uncertainty and sensitivity analysis for reducing greenhouse gas emissions from wastewater treatment plants.

2020

Abstract This paper presents the sensitivity and uncertainty analysis of a plant-wide mathematical model for wastewater treatment plants (WWTPs). The mathematical model assesses direct and indirect (due to the energy consumption) greenhouse gases (GHG) emissions from a WWTP employing a whole-plant approach. The model includes: i) the kinetic/mass-balance based model regarding nitrogen; ii) two-step nitrification process; iii) N2O formation both during nitrification and denitrification (as dissolved and off-gas concentration). Important model factors have been selected by using the Extended-Fourier Amplitude Sensitivity Testing (FAST) global sensitivity analysis method. A scenario analysis h…

Environmental EngineeringNitrogen0208 environmental biotechnology02 engineering and technology010501 environmental sciencesWastewater01 natural sciencesWaste Disposal FluidGreenhouse gas emissionModellingGreenhouse GasesWaste WaterScenario analysisEffluentUncertainty analysis0105 earth and related environmental sciencesWater Science and TechnologyBiological Oxygen Demand AnalysisEnergy demandSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleChemical oxygen demandEnvironmental engineeringUncertainty020801 environmental engineeringWastewaterGreenhouse gasEnvironmental scienceNitrificationPlant-wide assessmentWaste disposalWater science and technology : a journal of the International Association on Water Pollution Research
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Greenhouse gases from membrane bioreactors: Mathematical modelling, sensitivity and uncertainty analysis

2017

In this study a new mathematical model to quantify greenhouse gas emissions (namely, carbon dioxide and nitrous oxide) from membrane bioreactors (MBRs) is presented. The model has been adopted to predict the key processes of a pilot plant with pre-denitrification MBR scheme, filled with domestic and saline wastewater. The model was calibrated by adopting an advanced protocol based on an extensive dataset. In terms of nitrous oxide, the results show that an important role is played by the half saturation coefficients related to nitrogen removal processes and the model factors affecting the oxygen transfer rate in the aerobic and MBR tanks. Uncertainty analysis showed that for the gaseous mod…

Environmental EngineeringNitrogen0208 environmental biotechnologyNitrous OxideBioengineering02 engineering and technologyWastewater010501 environmental sciences01 natural sciencesModellingchemistry.chemical_compoundBioreactorsBioreactorGreenhouse gaseWaste Management and DisposalUncertainty analysis0105 earth and related environmental sciencesSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleRenewable Energy Sustainability and the EnvironmentMembraneUncertaintyEnvironmental engineeringGeneral MedicineNitrous oxide020801 environmental engineeringPilot plantWastewaterchemistryGreenhouse gases; Membrane; Modelling; Uncertainty; Wastewater; Bioengineering; Environmental EngineeringGreenhouse gasCarbon dioxideEnvironmental scienceGasesSaturation (chemistry)Bioresource Technology
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The influence of solid retention time on IFAS-MBR systems: Assessment of nitrous oxide emission

2017

The aim of the present study was to investigate the nitrous oxide (N2O) emissions from a moving bed based Integrated Fixed Film Activated Sludge (IFAS) - membrane bioreactor (MBR) pilot plant, designed according to the University of Cape Town (UCT) layout. The experimental campaign had a duration of 110 days and was characterized by three different sludge retention time (SRT) values (∞, 30 d and 15 d). Results highlighted that N2O concentrations decreased when the biofilm concentrations increased within the aerobic reactor. Results have shown an increase of N2O with the decrease of SRT. Specifically, an increase of N2O-N emission factor occurred with the decrease of the SRT (0.13%, 0.21% …

Environmental EngineeringNitrogenIFAS-MBR0208 environmental biotechnologyActivated sludge; Biofilm; Emission factor; IFAS-MBR; Nitrous oxide; UCT; Environmental Engineering; Waste Management and Disposal; Management Monitoring Policy and LawSettore AGR/13 - Chimica AgrariaNitrous Oxidechemistry.chemical_element02 engineering and technology010501 environmental sciencesManagement Monitoring Policy and LawMembrane bioreactorEmission factor01 natural scienceschemistry.chemical_compoundBioreactorsWaste Management and Disposal0105 earth and related environmental sciencesSewageSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleBiofilmEnvironmental engineeringGeneral MedicineNitrous oxidePulp and paper industryNitrogenAnoxic waters020801 environmental engineeringActivated sludgePilot plantWater bodychemistryActivated sludgeBiofilmsUCTRetention time
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Superoxide-driven autocatalytic dark production of hydroxyl radicals in the presence of complexes of natural dissolved organic matter and iron.

2019

Abstract We introduced superoxide as potassium superoxide (KO2) to artificial lake water containing dissolved organic matter (DOM) without or with introduced ferric iron complexes (DOM-Fe(III)), and monitored the production rate of hydroxyl radicals as well as changes in the absorption and fluorescence properties of DOM. The introduction of KO2 decreased the absorption by DOM but increased the spectral slope coefficient of DOM more with complexed ferric Fe than without it. The introduction of KO2 increased the fluorescence of humic-like components in DOM without introduced ferric Fe but resulted in the loss of fluorescence in DOM with introduced ferric Fe. A single introduction of 13 μmol L…

Environmental EngineeringRadicalIron0208 environmental biotechnologyFresh Water02 engineering and technology010501 environmental sciencesPhotochemistry01 natural sciencesAutocatalysischemistry.chemical_compoundSuperoxidesDissolved organic carbonmedicineWaste Management and Disposal0105 earth and related environmental sciencesWater Science and TechnologyCivil and Structural EngineeringChemistrySuperoxideHydroxyl RadicalEcological ModelingPollutionFluorescence020801 environmental engineeringFerricAbsorption (chemistry)medicine.drugPotassium superoxideWater research
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Strawberry fields forever: That is, how many grams of plastics are used to grow a strawberry?

2020

Abstract In important areas of the agricultural sector, plastic is one of the most important tools for improving the managerial and economic performance of companies. Horticultural production under protected cultivation, in particular, makes abundant use of plastic polymers—polymers that mostly turn into waste. This study aims to identify similar organisational models among farmers operating in the strawberry production sector in relation to their intention to recycle plastic material and which factors characterize these models (attitudes, subjective norms, perceived behavioural control, and socio-demographic characteristics) and to quantify the plastic used in relation to the different typ…

Environmental EngineeringRelation (database)Plastic recyclingPolymers0208 environmental biotechnologyControl (management)02 engineering and technology010501 environmental sciencesManagement Monitoring Policy and LawFragaria01 natural sciencesProduction (economics)RecyclingWaste Management and Disposal0105 earth and related environmental sciencesbusiness.industryCircular economyGeneral MedicineEnvironmental economics020801 environmental engineeringItalyOrder (business)AgricultureSustainabilityBusinessPlasticsJournal of Environmental Management
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Groundwater sustainability: Developing a non-cooperative optimal management scenario in shared groundwater resources under water bankruptcy condition…

2021

Abstract Groundwater level drawdown changes the hydrological cycle and poses challenges such as land subsidence and reduction of the groundwater quality. In this study, a new approach using a simulation-optimization framework was developed for shared groundwater management under water bankruptcy conditions (where water demand is greater than the allowable discharge capacity of water resources). The novelty of this study lies in using bankruptcy rules and a game model to manage a bankrupted shared groundwater resource considering aquifer sustainability. Accordingly, groundwater flow in the aquifer was numerically simulated by a finite-differences model (MODFLOW). Then, the repeated performan…

Environmental EngineeringResource (biology)Groundwater flow0208 environmental biotechnologyAquifer02 engineering and technology010501 environmental sciencesManagement Monitoring Policy and LawIran01 natural sciencesWaste Management and DisposalGroundwater0105 earth and related environmental sciencesgeographygeography.geographical_feature_categoryMODFLOWWaterGeneral Medicine020801 environmental engineeringWater resourcesBankruptcyDrawdown (hydrology)Water ResourcesEnvironmental scienceWater resource managementEnvironmental SciencesGroundwaterJournal of environmental management
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Respirometry for the Characterization of Heterotrophic Biomass Activity: Application to a MBR Pilot Plant Operated with Two Different Start-Up Strate…

2016

A membrane bioreactor (MBR) pilot plant was operated in two subsequent experimental periods (namely, Periods I and II) with different start-up and sludge withdrawal strategies to study its peculiar biokinetic behavior by using respirometric techniques. Two extreme operational conditions were chosen to investigate the different biomass activity under dynamic or pseudostationary conditions during and after the start-up phases. Particularly, the MBR pilot plant was operated with the same volumetric loading rate (VLR) and permeate flux but differently managed during the start-up phase. In Period I, the MBR pilot plant was started up without sludge inoculum and operated without sludge withdrawal…

Environmental EngineeringSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleRespirometric technique0208 environmental biotechnologyHeterotrophEnvironmental engineeringBiomass02 engineering and technology010501 environmental sciencesStart upMembrane bioreactor01 natural sciencesBiokinetic parameter020801 environmental engineeringSludge production.RespirometryPilot plantPermeate fluxEnvironmental ChemistryEnvironmental scienceDecay coefficientInoculum0105 earth and related environmental sciencesGeneral Environmental ScienceCivil and Structural Engineering
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