Search results for "6. Clean water"

showing 10 items of 418 documents

Elevated nutrient concentrations in headwaters affected by drained peatland

2018

Abstract Nutrient export from drained peatland has significant impacts on aquatic environments in Nordic catchments. Spatial information on variations in nutrient concentrations across different landscapes and land uses is needed to design measures for achieving the good ecological status of the EU Water Framework Directive. In this study we determined background concentrations in natural peatland-dominated streams and examined effects of peatland use practices on water quality in headwater catchments. We quantified sources for different elements by joint analysis of water chemistry, isotopes, and hydrology for 62 small catchments in North Ostrobothnia, Finland. Concentrations of nutrients …

Environmental EngineeringPeat010504 meteorology & atmospheric sciencesta1172ta1171Headwaters010501 environmental sciencesPeatlandsravinteet01 natural scienceswater qualityNutrientHydrology (agriculture)IsotopesheadwatersEnvironmental ChemistrysuotOrganic matterWaste Management and Disposalturvemaatpeatlandsisotopes0105 earth and related environmental sciencesHydrologychemistry.chemical_classificationSuspended solidsisotoopitBaseflowsalaojitus15. Life on landvedenlaatuPollution6. Clean waterWater qualitychemistry13. Climate actionDrainageEnvironmental scienceSoil horizonWater qualitydrainageScience of the Total Environment
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Chemical compounds and toxicological assessments of drinking water stored in polyethylene terephthalate (PET) bottles: A source of controversy review…

2012

A declaration of conformity according to European regulation No. 10/2011 is required to ensure the safety of plastic materials in contact with foodstuffs. This regulation established a positive list of substances that are authorized for use in plastic materials. Some compounds are subject to restrictions and/or specifications according to their toxicological data. Despite this, the analysis of PET reveals some non-intentionally added substances (NIAS) produced by authorized initial reactants and additives. Genotoxic and estrogenic activities in PET-bottled water have been reported. Chemical mixtures in bottled water have been suggested as the source of these toxicological effects. Furthermo…

Environmental EngineeringPlastic materials010501 environmental sciencesmedicine.disease_cause01 natural scienceschemistry.chemical_compoundToxicity TestsPolyethylene terephthalatemedicineSample preparationWaste Management and Disposal0105 earth and related environmental sciencesWater Science and TechnologyCivil and Structural EngineeringWaste managementPolyethylene TerephthalatesChemistryDrinking WaterEcological Modeling010401 analytical chemistryExtraction (chemistry)ContaminationBottled waterPollution6. Clean water0104 chemical sciences3. Good health13. Climate actionEnvironmental chemistryGas chromatography–mass spectrometryWater Pollutants ChemicalGenotoxicityWater Research
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Preparation of fouling resistant and highly perm-selective novel PSf/GO-vanillin nanofiltration membrane for efficient water purification

2022

International audience; To meet the rising global demand for water, it is necessary to develop membranes capable of efficiently purifying contaminated water sources. Herein, we report a series of novel polysulfone (PSf)/GO-vanillin nanofiltration membranes highly permeable, selective, and fouling resistant. The membranes are composed of two-dimensional (2D) graphite oxide (GO) layers embedded with vanillin as porogen and PSf as the base polymer. There is a growing interest in addressing the synergistic effect of GO and vanillin on improving the permeability and antifouling characteristics of membranes. Various spectroscopic and microscopic techniques were used to perform detailed physicoche…

Environmental EngineeringPolymersHealth Toxicology and Mutagenesischemistry.chemical_elementPortable water purification02 engineering and technology010402 general chemistry01 natural sciencesWater PurificationBiofoulingchemistry.chemical_compoundEnvironmental Chemistry[CHIM]Chemical SciencesPolysulfoneSulfonesWaste Management and DisposalSalt rejectionFoulingMagnesiumStrategic Defence & Security StudiesFouling resistantVanillinMembranes ArtificialOxidesPSf/GO-vanillin membrane021001 nanoscience & nanotechnologyPollution6. Clean waterNanofiltration0104 chemical sciencesMembranechemistryChemical engineering03 Chemical Sciences 05 Environmental Sciences 09 EngineeringBenzaldehydesMixed matrix membraneGraphiteNanofiltration0210 nano-technology
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Trace metals supplementation in anaerobic membrane bioreactors treating highly saline phenolic wastewater

2017

Biomass requires trace metals (TM) for maintaining its growth and activity. This study aimed to determine the effect of TM supplementation and partitioning on the specific methanogenic activity (SMA), with a focus on cobalt and tungsten, during the start-up of two lab-scale Anaerobic Membrane Bioreactors (AnMBRs) treating saline phenolic wastewater. The TM partitioning revealed a strong accumulation of sodium in the biomass matrix and a wash-out of the majority of TM in the reactors, which led to an SMA decrease and a low COD removal of about 30%. The SMA exhibits a maximum at about 6 g Na+ L−1 and nearly complete inhibition at 34 g Na+ L−1. The dose of 0.5 mg L−1 of tungsten increases the …

Environmental EngineeringSodium0208 environmental biotechnologyBiomasschemistry.chemical_elementBioengineering02 engineering and technologyWastewater010501 environmental sciencesWaste Disposal Fluid01 natural sciencesBacteria AnaerobicBioreactorsBioreactorAnaerobiosisWaste Management and DisposalAnaerobic Membrane Bioreactor0105 earth and related environmental sciencesChromatographyPhenolRenewable Energy Sustainability and the EnvironmentMethanogenic activitySodiumTrace metals partitioningGeneral Medicine6. Clean water020801 environmental engineeringBioavailabilityMembranechemistryWastewaterMetalsMethaneAnaerobic exerciseCobaltNuclear chemistryBioresource Technology
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Iron-based metal-organic framework: Synthesis, structure and current technologies for water reclamation with deep insight into framework integrity.

2021

Water is a supreme requirement for the existence of life, the contamination from the point and non-point sources are creating a great threat to the water ecosystem. Advance tools and techniques are required to restore the water quality and metal-organic framework (MOFs) with a tunable porous structure, striking physical and chemical properties are an excellent candidate for it. Fe-based MOFs, which developed rapidly in recent years, are foreseen as most promising to overcome the disadvantages of traditional water depolluting practices. Fe-MOFs with low toxicity and preferable stability possess excellent performance potential for almost all water remedying techniques in contrast to other MOF…

Environmental EngineeringsynthesisHealth Toxicology and MutagenesisIron0208 environmental biotechnologyGroundwater remediationrauta02 engineering and technology010501 environmental sciencesHeterogeneous catalysis01 natural sciencesCommercializationrakenne (ominaisuudet)Water PurificationEnvironmental Chemistrystructurepolymeeritiron-based metal-organic frameworkEcosystemMetal-Organic Frameworks0105 earth and related environmental sciencesPollutantkemiallinen synteesifenton degradationvedenpuhdistusPublic Health Environmental and Occupational HealthWaterGeneral MedicineGeneral Chemistrywater treatmentkompleksiyhdisteetPollution6. Clean water020801 environmental engineering13. Climate actionadsorptionPhotocatalysisEnvironmental scienceMetal-organic frameworkWater treatmentWater qualityBiochemical engineeringadsorptioChemosphere
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Remediation of Solutions Containing Oxyanions of Selenium by Ultrafiltration: Study of Rejection Performances with and without Chitosan Addition

2017

Among the various technical options for removing ionic contaminants from wastewaters, membrane processes and especially their coupling with polymer addition have been proven to provide worthwhile prospects for the removal of metal cations. Nevertheless, their use for the removal of anionic pollutants such as oxyanions has been little studied in the literature. In the present work, the rejection of oxyanions forms of Se(IV) and Se(VI) by tight ultrafiltration membranes was deeply investigated under various experimental conditions. This paper aims at understanding the mechanisms governing oxyanion rejection and determining the potential ways to improve performances. It is first shown that sel…

Environmental remediationGeneral Chemical EngineeringInorganic chemistryUltrafiltrationIonic bondingchemistry.chemical_elementOxyanion02 engineering and technology010501 environmental sciences01 natural sciences[ CHIM ] Chemical SciencesIndustrial and Manufacturing EngineeringMetalChitosanchemistry.chemical_compoundComputingMilieux_MISCELLANEOUS0105 earth and related environmental sciencesGeneral Chemistry021001 nanoscience & nanotechnology6. Clean water[ CHIM.POLY ] Chemical Sciences/PolymersMembrane[CHIM.POLY]Chemical Sciences/Polymerschemistry13. Climate actionvisual_artvisual_art.visual_art_medium0210 nano-technologySelenium
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Treatment of heavy petroleum hydrocarbons polluted soil leachates by ultrafiltration and oxidation for surfactant recovery

2018

Abstract Surfactant technology can improve the remediation of soils polluted by semivolatile hydrophobic contaminants, like polycyclic aromatic hydrocarbons (PAHs), by enhancing their solubility in water. However, the recovery of surfactant from soil-leachates is critical for the economic feasibility of this treatment technology. To tackle this issue, ultrafiltration (UF) and its combination with permanganate, is reported for the selective recovery of surfactant from wastewater contaminated by a complex mixture of heavy hydrocarbons mainly composed of PAHs. The overall performance of the process including the successive steps of contaminant mobilization in leachates and surfactant recovery …

Environmental remediationUltrafiltration02 engineering and technology010501 environmental sciences01 natural scienceschemistry.chemical_compoundPulmonary surfactantChemical Engineering (miscellaneous)[CHIM]Chemical SciencesSolubilityWaste Management and DisposalComputingMilieux_MISCELLANEOUS0105 earth and related environmental scienceschemistry.chemical_classificationChemistry[SDE.IE]Environmental Sciences/Environmental EngineeringProcess Chemistry and TechnologyPermanganateExtraction (chemistry)021001 nanoscience & nanotechnologyPollution6. Clean waterHydrocarbonWastewater13. Climate actionEnvironmental chemistry0210 nano-technology
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Reverse electrodialysis heat engine with multi-effect distillation: Exergy analysis and perspectives

2019

Abstract The increasing worldwide energy demand is rising the interest on alternative power production technologies based on renewable and emission-free energy sources. In this regard, the closed-loop reverse electrodialysis heat engine is a promising technology with the potential to convert low-grade heat into electric power. The reverse electrodialysis technology has been under investigation in the last years to explore the real potentials for energy generation from natural and artificial solutions, and recent works have been addressing also the potential of its coupling with regeneration strategies, looking at medium and large energy supply purposes. In this work, for the first time, a c…

ExergySettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi Chimici020209 energyEnergy Engineering and Power Technology02 engineering and technology7. Clean energyChemical exergyNaCl020401 chemical engineeringReversed electrodialysisWaste heatSettore ING-IND/10 - Fisica Tecnica Industriale0202 electrical engineering electronic engineering information engineeringSalinity gradient power0204 chemical engineeringProcess engineeringHeat engineRenewable Energy Sustainability and the Environmentbusiness.industryEnergy conversion6. Clean waterFuel TechnologyElectricity generationNuclear Energy and EngineeringMultiple-effect distillationOsmotic powerSGPExergy efficiencyEnvironmental scienceEnergy sourcebusinessEnergy Conversion and Management
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Thermodynamic, Exergy, and Thermoeconomic analysis of Multiple Effect Distillation Processes

2018

Abstract Multiple effect distillation (MED) is nowadays the preferred technology for the construction of new plants based on thermal processes in the growing desalination market. MED technology, in fact, presents a number of advantages with respect to the more traditional multistage flash technology, among all the lower energy consumption achievable in MED plants. However, a large potential for improvement in terms of lowering production costs still exists, which stimulates further efforts on process optimization from companies and researchers involved in the field. Thermodynamic and exergy analysis provides useful insights regarding the identification of main inefficiencies and the margins…

ExergySettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciComputer scienceProcess (engineering)020209 energy02 engineering and technologyMultiple effect distillation7. Clean energyDesalinationChemical exergy020401 chemical engineeringOrder (exchange)0202 electrical engineering electronic engineering information engineeringSettore ING-IND/10 - Fisica Tecnica IndustrialeProduction (economics)Process optimization0204 chemical engineeringActivity-based costingProcess engineeringbusiness.industryExergy analysi6. Clean waterThermal vapor compressionMultiple-effect distillationThermal exergyExergy cost accountingbusinessRenewable Energy Powered Desalination Handbook
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Performance Analysis of a RED-MED Salinity Gradient Heat Engine

2018

A performance analysis of a salinity gradient heat engine (SGP-HE) is presented for the conversion of low temperature heat into power via a closed-loop Reverse Electrodialysis (RED) coupled with Multi-Effect Distillation (MED). Mathematical models for the RED and MED systems have been purposely developed in order to investigate the performance of both processes and have been then coupled to analyze the efficiency of the overall integrated system. The influence of the main operating conditions (i.e., solutions concentration and velocity) has been quantified, looking at the power density and conversion efficiency of the RED unit, MED Specific Thermal Consumption (STC) and at the overall syste…

ExergyThermal efficiencyMaterials scienceControl and Optimization020209 energyThermodynamicsEnergy Engineering and Power Technologysalinity gradient energy; exergy; artificial solutions; modeling; heat engine; RED-HE02 engineering and technology7. Clean energylcsh:TechnologyRED-HEartificial solutionsWaste heatReversed electrodialysis0202 electrical engineering electronic engineering information engineeringExergyElectrical and Electronic EngineeringEngineering (miscellaneous)Heat engineSalinity gradient energylcsh:TRenewable Energy Sustainability and the EnvironmentEnergy conversion efficiencyArtificial solutionModeling6. Clean waterMembraneExergy efficiencyHeat engineEnergy (miscellaneous)Energies; Volume 11; Issue 12; Pages: 3385
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