Search results for "STAI"

showing 10 items of 5922 documents

The ability of fish ecolabels to promote a change in the sustainability awareness

2021

Abstract Researchers, environmentalists, as well as fisheries and retailers, have been focusing their attention on the design, use and effects that fish ecolabels have on sustainability. The fish processing industry and large retailers have rapidly adopted several market-based standards, with consequences for two major stakeholders: fishermen and consumers. Although the standards have shown rather positive results, from the perspectives of marine biodiversity conservation, the fish industry and trade, it is not clear how they are able to support a change in people’s awareness about sustainability. For this reason, the present work reviews and analyses the literature, produced in the last te…

0106 biological sciencesEconomics and EconometricsECONOMIA APLICADAExploitManagement Monitoring Policy and LawAquatic Science01 natural sciencesSettore AGR/01 - Economia Ed Estimo RuraleMarketingFish processingStock (geology)General Environmental Science010604 marine biology & hydrobiology04 agricultural and veterinary sciencesMarine biodiversityFishSustainability040102 fisheriesSystematic review0401 agriculture forestry and fisheriesMarine stewardship councilFriend of the SeaBusinessEcolabelSustainability awarenessFish Friend of the Sea Marine stewardship council Systematic review Sustainability awarenessLaw
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Impediments to fisheries recovery in Canada: Policy and institutional constraints on developing management practices compliant with the precautionary…

2020

The status of many Canadian fisheries is poor, a consequence of inadequate implementation of sustainable fishery policy within the context of the Precautionary Approach (PA). A key component of implementation lies with the provision of science advice. Scientists are responsible for advising on options likely to meet policy intent and objectives. Here, we examine PA-compliance in the role of science in Canada's fisheries management decision-making. We distinguish science-based from science-determined decisions and processes. Science-based decisions emerge from consultation processes involving stakeholders; science need not always have a clear and accountable role that can be transparently se…

0106 biological sciencesEconomics and EconometricsScience adviceProcess (engineering)Context (language use)Management Monitoring Policy and LawAquatic Science01 natural sciencesEnvironmental Economics and Natural ResourcesFisheries managementCredibilitymedia_common.cataloged_instance14. Life underwaterEuropean unionManagement practicesGeneral Environmental Sciencemedia_common010604 marine biology & hydrobiologyScientific credibilitySustainable fishery04 agricultural and veterinary sciencesSustainable fisheries frameworkFisheryPrecautionary approachAccountability040102 fisheries0401 agriculture forestry and fisheriesBusinessFisheries managementLawCommon fisheries policyMilieueconomie en Natuurlijke HulpbronnenMarine Policy
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Electrotechnologies applied to valorization of by-products from food industry: Main findings, energy and economic cost of their industrialization

2016

Abstract There has been a growing interest to reuse food waste and by-products from different processing steps, not only to ensure the environmental sustainability but also to improve the economic performance of the processes. One way of recovery that has raised more interest is the extraction of valuable compounds, which can be used as ingredients in food and pharmaceutical industries due to their technological function, nutritional properties, or their beneficial effects on human or animal health. In many cases, conventional solvent extraction cannot be economically feasible or involves the use of toxic solvents, hindering their subsequent management, or high temperatures, with consequent…

0106 biological sciencesEngineeringFood industryEmerging technologiesbusiness.industryManagement scienceGeneral Chemical Engineeringmedia_common.quotation_subject04 agricultural and veterinary sciencesReuse040401 food science01 natural sciencesBiochemistryFood waste0404 agricultural biotechnologyIndustrialisation010608 biotechnologyEconomic costSustainabilityBiochemical engineeringFunction (engineering)businessFood ScienceBiotechnologymedia_commonFood and Bioproducts Processing
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Valorisation of Dairy Wastes Through Kefir Grain Production

2019

The main aim of this work was to investigate on kefir grains (KGs) increase using different dairy by-products. To this purpose, whey and deproteinized whey from cow, goat and sheep milk were compared to the pasteurized milk of the corresponding animal species. Each substrate was inoculated with 3% (w/v) of KGs cultivated in ultra-high temperature cow milk and evalu- ated for pH decrease, total titratable acidity increase and development of lactic acid bacteria (LAB) and yeasts released in the matrices after 24 h incubation at three different temperatures (20, 25 and 30 °C). The genotypic characterization of the dominating microbial populations resulted in the identification of two LAB belon…

0106 biological sciencesEnvironmental Engineering020209 energyDairy wastes Kefir grains Lactic acid bacteria Milk Whey YeastsPasteurizationTitratable acid02 engineering and technology01 natural scienceslaw.inventionchemistry.chemical_compoundSettore AGR/17 - Zootecnica Generale E Miglioramento Geneticofluids and secretionsKluyveromyces marxianuslaw010608 biotechnology0202 electrical engineering electronic engineering information engineeringFood scienceSheep milkWaste Management and DisposalbiologyRenewable Energy Sustainability and the EnvironmentLactococcus lactisfood and beveragesbiology.organism_classificationLactic acidchemistryLeuconostoc mesenteroidesFermentationSettore AGR/16 - Microbiologia Agraria
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Aeration control in membrane bioreactor for sustainable environmental footprint

2020

In this study different scenarios were scrutinized to minimize the energy consumption of a membrane bioreactor system for wastewater treatment. Open-loop and closed-loop scenarios were investigated by two-step cascade control strategies based on dissolved oxygen, ammonia and nitrite concentrations. An integrated MBR model which includes also the greenhouse gas formation/emission processes was applied. A substantial energy consumption reduction was obtained for the closed-loop scenarios (32% for Scenario 1 and 82% for Scenario 2). The air flow control based on both ammonia and nitrite concentrations within the aerobic reactor (Scenario 2) provided excellent results in terms of reduction of o…

0106 biological sciencesEnvironmental EngineeringAeration-based control strategyBioengineeringWastewater010501 environmental sciencesMembrane bioreactorWaste Disposal Fluid01 natural sciencesGreenhouse Gaseschemistry.chemical_compoundBioreactorsAmmonia010608 biotechnologyBioreactorWaste WaterNitriteWaste Management and DisposalOperating cost0105 earth and related environmental sciencesProportion-integration controlSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleRenewable Energy Sustainability and the EnvironmentEnvironmental engineeringGeneral MedicineEnergy consumptionOxygenchemistryGreenhouse gasMembrane bioreactorEnvironmental scienceSewage treatmentAerationBioresource Technology
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Anaerobic membrane bioreactor (AnMBR) scale-up from laboratory to pilot-scale for microalgae and primary sludge co-digestion: Biological and filtrati…

2020

This research work proposes the scale-up evaluation in terms of biological and filtration performance from laboratory to pilot-scale of an anaerobic membrane bioreactor (AnMBR) co-digesting raw microalgae and primary sludge. Best operating conditions for this scale-up were energetically and economically assessed based on laboratory results. Economic balance showed 3% higher annual costs when operating a reactor at 100 d solids retention time (SRT) compared to 70 d SRT. Energetic balance showed a 5.5-fold increase in heat demand working at thermophilic temperature comparing to mesophilic. The AnMBR operating conditions were set at 70 d SRT and 35 °C. The pilot-scale and lab-scale co-digester…

0106 biological sciencesEnvironmental EngineeringBioengineering010501 environmental sciences01 natural scienceslaw.inventionBioreactorsBiogaslaw010608 biotechnologyMicroalgaeBioreactorAnaerobiosisWaste Management and DisposalFiltration0105 earth and related environmental sciencesSewageRenewable Energy Sustainability and the EnvironmentChemical oxygen demandGeneral MedicinePulp and paper industryAnaerobic digestionBiofuelSCALE-UPEnvironmental scienceMethaneFiltrationMesophileBioresource Technology
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Enhanced high-quality biomethane production from anaerobic digestion of primary sludge by corn stover biochar

2020

Abstract This study conducted batch and continuous tests to reveal the feasibility of corn stover biochar on improving anaerobic digestion of primary sludge (PS). Dosing biochar (1.82, 2.55 and 3.06 g/g Total Solids (TS)) in digester improved methane content increasing from 67.5% to 81.3–87.3% and enhanced methane production by 8.6–17.8%. Model analysis indicated that biochar accelerated PS hydrolysis and enhanced methane potential of PS. The mechanistic studies showed that biochar enhanced process stability provided by strong buffering capacity and alleviated NH3 inhibition. In continuous test over 116 days, the volatile solids (VS) destruction in the biochar-dosed digester increased by 14…

0106 biological sciencesEnvironmental EngineeringBioengineering010501 environmental sciences7. Clean energy01 natural sciencesMethanechemistry.chemical_compoundHydrolysisPrimary sludgeBiogasVolatile solids destruction010608 biotechnologyAnaerobic digestionBiocharWaste Management and Disposal0105 earth and related environmental sciencesSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleRenewable Energy Sustainability and the EnvironmentChemistryGeneral MedicineTotal dissolved solidsPulp and paper industry6. Clean waterAnaerobic digestionBiocharCorn stover13. Climate actionDigestateMethaneBiotechnology
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Co-digestion of harvested microalgae and primary sludge in a mesophilic anaerobic membrane bioreactor (AnMBR): Methane potential and microbial divers…

2020

Abstract Anaerobic co-digestion of primary sludge and raw microalgae (Scenedesmus and Chlorella) was performed in a lab-scale semi-continuous anaerobic membrane bioreactor to assess the biological performance and identify the microbial community involved in the co-digestion process. The reactor was operated at 35 °C for 440 days, working at a solids retention time of 100 days. The system achieved 73% biodegradability and showed high stability in terms of pH and volatile fatty acids. An enriched microbial community was observed. Of the several phyla, Chloroflexi and Proteobacteria were the most abundant. Cellulose-degraders phyla (Bacteroidetes, Chloroflexi and Thermotogae) were detected. Sy…

0106 biological sciencesEnvironmental EngineeringBioengineeringChlorella010501 environmental sciences01 natural sciencesMethanosaetaBioreactors010608 biotechnologyMicroalgaeAnaerobiosisWaste Management and DisposalEffluent0105 earth and related environmental sciencesSewagebiologyRenewable Energy Sustainability and the EnvironmentChemistryGeneral MedicineBiodegradationbiology.organism_classificationPulp and paper industryChloroflexi (class)Microbial population biologyDigestateProteobacteriaMethaneMesophileBioresource Technology
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Anaerobic membrane bioreactors (AnMBR) treating urban wastewater in mild climates

2020

[EN] Feasibility of an AnMBR demonstration plant treating urban wastewater (UWW) at temperatures around 25-30 degrees C was assessed during a 350-day experimental period. The plant was fed with the effluent from the pretreatment of a full-scale municipal WWTP, characterized by high COD and sulfate concentrations. Biodegradability of the UWW reached values up to 87%, although a portion of the biodegradable COD was consumed by sulfate reducing organisms. Effluent COD remained below effluent discharge limits, achieving COD removals above 90%. System operation resulted in a reduction of sludge production of 36-58% compared to theoretical aerobic sludge productions. The membranes were operated a…

0106 biological sciencesEnvironmental EngineeringBioengineeringMild/warmer climateWastewater010501 environmental sciencesWaste Disposal Fluid01 natural scienceschemistry.chemical_compoundBioreactors010608 biotechnologyBioreactorUrban wastewater (UWW)AnaerobiosisSulfateWaste Management and DisposalEffluentTECNOLOGIA DEL MEDIO AMBIENTE0105 earth and related environmental sciencesRenewable Energy Sustainability and the EnvironmentAnaerobic membrane bioreactor (AnMBR)Membrane foulingMembranes ArtificialGeneral MedicineBiodegradationPulp and paper industryMethane productionIndustrial-scale membraneMembraneWastewaterchemistryEnvironmental scienceMethaneAnaerobic exerciseDemonstration plant
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A plant-wide modelling comparison between membrane bioreactors and conventional activated sludge

2020

Abstract A comprehensive plant-wide mathematical modelling comparison between conventional activated sludge (CAS) and Membrane bioreactor (MBR) systems is presented. The main aim of this study is to highlight the key features of CAS and MBR in order to provide a guide for an effective plant operation. A scenario analysis was performed to investigate the influence on direct and indirect greenhouse gas (GHG) emissions and operating costs of (i) the composition of inflow wastewater (scenario 1), (ii) operating conditions (scenario 2) and (iii) oxygen transfer efficiency (scenario 3). Scenarios show higher indirect GHG emissions for MBR than CAS, which result is related to the higher energy con…

0106 biological sciencesEnvironmental EngineeringBioengineeringWastewater010501 environmental sciencesMembrane bioreactor01 natural sciencesWaste Disposal FluidGreenhouse GasesBioreactors010608 biotechnologyBioreactorWaste WaterScenario analysisWaste Management and Disposal0105 earth and related environmental sciencesWWTPEnergy demandMathematical modellingSewageSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleRenewable Energy Sustainability and the EnvironmentEnvironmental engineeringMembranes ArtificialGeneral MedicineEnergy consumptionActivated sludgeWastewaterPlant-wide modelGreenhouse gasSimple modelEnvironmental scienceWaste disposal
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