Search results for "Waste"

showing 10 items of 2580 documents

Generation of heat and power from biogas for stationary applications: boilers, gas engines and turbines, combined heat and power (CHP) plants and fue…

2013

Biogas is produced during the anaerobic degradation of organic material. The produced biogas can be used for heat, electricity or cogeneration of heat and electricity in a combined heat and power plant (CHP). This chapter first discusses the key issues related to combustion of biogas/biomethane in different stationary equipments. It then describes the utilisation of biogas for the generation of electric power and heat in different stationary applications such as boilers, gas engines (CHP), micro turbines and fuel cells.

CogenerationEngineeringElectricity generationWaste managementBiogasPower stationbusiness.industryta1172ElectricityElectric powerbusinessCombustionPower (physics)
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Bacteria from acidic to strongly alkaline insect midguts: Potential sources of extreme cellulolytic enzymes

2012

Abstract Bacterial isolates from the European Corn Borer (ECB) Ostrinia nubilalis and the coleopteran Colorado Potato Beetle (CPB) Leptinotarsa decemlineata midguts were identified and characterized. Twenty-four colonies, selected on solid media with cellulose as the sole carbon source and pH values ranging from 5 to 12, were identified through 16S sequencing as members of the genera Acinetobacter , Comamonas , Klebsiella , Microbacterium , Micrococcus and Sphingobacterium . A complete enzymatic characterization revealed widespread – albeit moderate – cellulase properties in all but one isolate and high xylanase activity in the four CPB isolates. Different enzymatic patterns in terms of opt…

ComamonasbiologySphingobacteriumRenewable Energy Sustainability and the EnvironmentColorado potato beetleMicrobacteriumMicrococcusForestryCellulasebiology.organism_classificationOstriniaMicrobiologyXylanasebiology.proteinWaste Management and DisposalAgronomy and Crop ScienceBiomass and Bioenergy
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Polydimethylsiloxane composites containing 1,2-naphtoquinone 4-sulphonate as unique dispositive for estimation of casein in effluents from dairy indu…

2015

A unique dispositive to determine casein which is the most abundant protein in dairy sewages has been proposed. In this sensing technology, the derivatization reagent 1,2-naphtoquininone 4-sulphonate (NQS) is embedded into a polydimethylsiloxane-tetraethylortosilicate-SiO2 nanoparticles composite (PDMS-TEOS-SiO2NPs). When the composite is immersed into the samples, casein is extracted from the solution and derivatized inside the PDMS matrix after 10 min at 100°C. The sensing support changes its color from yellow to orange depending on the casein concentration. Quantitative analysis can be carried out by measuring the absorbance with a reflection probe or by image-processing tool (GIMP). Thi…

Composite numberNQSNanoparticleWastewaterBiochemistryAnalytical ChemistryAbsorbancechemistry.chemical_compoundCaseinEnvironmental ChemistryAnimalsDimethylpolysiloxanesDerivatizationSpectroscopyChromatographyPolydimethylsiloxaneCaseinsSilicon DioxideDairyingchemistryReagentColorimetryIndicators and ReagentsSpectrophotometry UltravioletSulfonic AcidsNaphthoquinonesAnalytica chimica acta
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The Economic Impact of Restricted Water Supply: a Computable General Equilibrium Analysis

2007

Water problems are typically studied at the level of the river catchment. About 70% of all water is used for agriculture, and agricultural products are traded internationally. A full understanding of water use is impossible without understanding the international market for food and related products, such as textiles. The water embedded in commodities is called virtual water. Based on a general equilibrium model, we offer a method for investigating the role of water resources and water scarcity in the context of international trade. We run five alternative scenarios, analyzing the effects of water scarcity due to reduced availability of groundwater. This can be a consequence of physical con…

Computable general equilibriumEnvironmental EngineeringWater scarcityNatural resource economicsWater supplyInternational trade and waterSustainable water supply/dk/atira/pure/sustainabledevelopmentgoals/clean_water_and_sanitationWater scarcityFLOWSWater SupplyIRRIGATIONEconomicsComputer Simulationjel:Q25Waste Management and Disposaljel:Q28Water Science and TechnologyCivil and Structural EngineeringComputable General Equilibrium Sustainable Water Supply Virtual Water Water Scarcitybusiness.industryEcological ModelingVirtual waterEnvironmental engineeringAgricultureComputable general equilibriumPollutionTRADEjel:D58Water resourcesModels EconomicPlus:VIRTUAL WATERVirtual waterDESALINATIONAllocative efficiencybusinessSDG 6 - Clean Water and SanitationWater use
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Methodological considerations for interrupted time series analysis in radiation epidemiology: an overview

2021

Interrupted time series analysis (ITSA) is a method that can be applied to evaluate health outcomes in populations exposed to ionizing radiation following major radiological events. Using aggregated time series data, ITSA evaluates whether the time trend of a health indicator shows a change associated with the radiological event. That is, ITSA checks whether there is a statistically significant discrepancy between the projection of a pre-event trend and the data empirically observed after the event. Conducting ITSA requires one to consider specific methodological issues due to unique threats to internal validity that make ITSA prone to bias. We here discuss the strengths and limitations of …

Computer scienceConfoundingPublic Health Environmental and Occupational HealthInterrupted Time Series AnalysisStatistical modelGeneral MedicineHealth indicatorInterrupted Time Series AnalysisResearch DesignData qualityEconometricsInternal validityTime seriesSpurious relationshipWaste Management and DisposalForecastingJournal of Radiological Protection
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Portability in analytical chemistry: a green and democratic way for sustainability

2019

International audience; Recent advances in portability of analytical equipment have been considered to enlighten the advantages offered by portable instrumentation on greening the analytical methods. Their use drastically reduces sampling, sample stockage, and transport, thus avoiding environmental side effects and risks, also improving decision-making. The fact that portable instrumentation is, in general, less expensive than bench instruments and apparatuses makes also available the analytical tools for extended sectors of the population, thus making accessible the advantages derived from analytical methods. The role of sensor technology and portable miniaturized systems has been consider…

Computer science[SDV]Life Sciences [q-bio]PopulationBio(chemical) sensorsSample (statistics)Miniaturized instrumentsPortable apparatus010501 environmental sciencesManagement Monitoring Policy and Law01 natural sciencesCatalysisSoftware portabilityImage processing[SDV.IDA]Life Sciences [q-bio]/Food engineering[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringInstrumentation (computer programming)educationWaste Management and Disposal0105 earth and related environmental scienceseducation.field_of_studyProcess Chemistry and TechnologyIn-field sampling010406 physical chemistry0104 chemical sciencesChemistry (miscellaneous)SustainabilitySystems engineeringCurrent Opinion in Green and Sustainable Chemistry
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Key EU DEMO plant and building layout criteria

2021

Abstract An early attention to the layout of both plant site and its buildings is essential in a complex plant under preliminary design as DEMO in order to meet the assigned targets, namely i) the licensing requirements ii) a good availability in delivery electricity to the grid. The layout definition has to follow several criteria that become more complex and stringent for nuclear buildings, e.g. functional, maintenance, fire protection, safety, human factors, shielding, and remote handling. The criterion As Low As Reasonable Achievable, with respect to the dose to the staff, has to be applied in design, operation, maintenance and decommissioning phases. The tokamak building, where several…

Computer sciencemedia_common.quotation_subjectLayout criteria01 natural sciencesNuclear decommissioning010305 fluids & plasmasHazardous waste0103 physical sciencesFire protectionGeneral Materials Science010306 general physicsFunction (engineering)DEMOCivil and Structural Engineeringmedia_commonTokamak buildingbusiness.industryMechanical EngineeringReference designDEMO; Layout criteria; Safety; Tokamak buildingGridNuclear Energy and EngineeringKey (cryptography)Systems engineeringElectricitySafetybusinessFusion Engineering and Design
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Recovering coronavirus from large volumes of water

2021

The need for monitoring tools to better control the ongoing coronavirus disease (COVID-19) pandemic is extremely urgent and the contamination of water resources by excreted viral particles poses alarming questions to be answered. As a first step to overcome technical limitations in monitoring SARS-CoV-2 along the water cycle, we assessed the analytical performance of a dead end hollow fiber ultrafiltration coupled to different options for secondary concentrations to concentrate viral particles from large volume of spiked tap water, seawater and surface water together with two quantitative RT-qPCR detection kits. Spiking the porcine epidemic diarrhea virus (PEDV), an enveloped virus surrogat…

ConcentrationEnvironmental Engineering010504 meteorology & atmospheric sciencesSwineUltrafiltration010501 environmental sciencesmedicine.disease_cause01 natural sciencesArticleTap waterAigües residualsMengovirusmedicineAnimalsHumansEnvironmental ChemistryTap waterSeawaterWaste Management and Disposal0105 earth and related environmental sciencesCoronavirusChromatographybiologySewageSARS-CoV-2ChemistryRT-qPCRWaterCOVID-19Surface waterContaminationbiology.organism_classificationPollutionCoronavirusSeawaterCoronavirus InfectionsPorcine epidemic diarrhea virusSurface water
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Sample Preparation to Determine Pharmaceutical and Personal Care Products in an All-Water Matrix: Solid Phase Extraction

2020

© 2020 by the authors.

ConcentrationWater samplesPharmaceuticals and personal care productsPharmaceutical ScienceSewageReviewCosmeticsWastewater010501 environmental sciences01 natural sciencesEnvironmental impact of pharmaceuticals and personal care productsAnalytical ChemistryAigua AnàlisiTandem Mass SpectrometryDrug DiscoverySample preparationOnlineSolid phase extractionProcess engineeringGroundwaterChromatography High Pressure LiquidSewageDispersive liquid-liquid microextractionSolid Phase ExtractionDisksPharmaceutical PreparationsWastewaterChemistry (miscellaneous)Molecular MedicineEnvironmental MonitoringFarmacologiaLiquid Phase MicroextractionCartridgesSensitivity and SpecificityWater PurificationIsolationlcsh:QD241-441lcsh:Organic chemistryPhysical and Theoretical Chemistry0105 earth and related environmental sciencesSolid-phase extractionbusiness.industry010401 analytical chemistryOrganic ChemistryAnalytical techniqueExtraction (chemistry)Water0104 chemical sciencesEnvironmental sciencebusinessSurface waterWater Pollutants Chemical
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Strategies for waste recycling : the mechanical performance of concrete based on limestone and plastic waste

2022

Recycling is among the best management strategies to avoid dispersion of several types of wastes in the environment. Research in recycling strategies is gaining increased importance in view of Circular Economy principles. The exploitation of waste, or byproducts, as alternative aggregate in concrete, results in a reduction in the exploitation of scarce natural resources. On the other hand, a productive use of waste leads to a reduction in the landfilling of waste material through the transformation of waste into a resource. In this frame of reference, the paper discusses how to use concrete as a container of waste focusing on the waste produced in limestone quarries and taking the challenge…

Concrete -- RecyclingEnvironmental effects of industries and plantsConcrete -- AdditivesAggregates (Building materials) -- RecyclingRenewable Energy Sustainability and the EnvironmentGeography Planning and DevelopmentTJ807-830Building and ConstructionManagement Monitoring Policy and Lawconcrete; waste recycling; plastic; limestone; sustainability; mechanical performancesustainabilityTD194-195Construction industry -- Waste disposalConcrete Limestone Mechanical performance Plastic Sustainability Waste recyclingmechanical performanceRenewable energy sourcesEnvironmental sciencesSettore ICAR/09 - Tecnica Delle Costruzioniplasticwaste recyclingconcreteGE1-350Sustainable constructionlimestone
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