Search results for "Greenhouse ga"

showing 10 items of 262 documents

Thermal Engine and Climate Change Challenge

2021

Thermal engines have dominated sectors of economy, and particularly transportation. Their current development and state of the art are the results of XXth century priorities related to economy and environment. In the future, thermal engines will face the challenge of emerging technologies in the frame of sustainable mobility and development. After an analysis of functioning principles and perspectives of development, particularly of combustion engines, thermal engines are compared to other realistic scenarios for transports applications in well-to-wheel and life cycle analysis.

[SPI]Engineering Sciences [physics]life-cycle assessmentwell-to-wheel analysisgreenhouse gas[SPI] Engineering Sciences [physics]sustainable mobilityinternal combustion enginemobilité durablemoteur à combustion internegaz à effet de serrebilan du puits à la roueanalyse du cycle de vie
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Development of an aerobic digestion model for the assessment of greenhouse gases production (AeDMG1): Calibration and validation

2015

The increasing interest in greenhouse gas emissions from WWTPs has been leading to new tools for their designing and managing. The activated sludge models have been modified in order to consider on – site emissions from nitrification and denitrification, in particular. The biological nitrogen removal processes have been mainly assessing due to nitrous oxide (N2O) production as intermediate. The IPCC suggests that N2O contributes to climate change because it has a global warming potential 298-fold stronger than carbon dioxide. Even if the mathematical modelling is wide regarding the activated sludge models for greenhouse gases, a model for aerobic digestion is still not available. In this pa…

activated sludge model aerobic digestion biological nitrogen removal processes greenhouse gasesSettore ICAR/03 - Ingegneria Sanitaria-Ambientale
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UCT-MBR vs IFAS-UCT-MBR for Wastewater Treatment: A Comprehensive Comparison Including N2O Emission

2017

In this study the performance (in terms of carbon and nutrient removal) and N2O emission of two plant configurations adopting innovative technologies were investigated. With this regards, an University Cape Town (UCT) membrane bioreactor (MBR) plant and an Integrated Fixed Film Activated Sludge (IFAS) -UCT-MBR plant were monitored. Both plants treat real wastewater under two different values of the influent carbon nitrogen ratio (C/N = 5 mgCOD/mgN and C/N = 10 mgCOD/mgN). Results have shown the highest carbon and nutrients removal efficiencies for the IFAS-UCT-MBR configuration during both the two investigated C/N values. Furthermore, the lowest N2O emission occurred for the IFAS-UCT-MBR.

biofilm.Settore ICAR/03 - Ingegneria Sanitaria-Ambientalechemistry.chemical_elementgreenhouse gaseMembrane bioreactorPulp and paper industryglobal warmingNutrientActivated sludgeWastewaterCarbon nitrogenchemistryGreenhouse gasEnvironmental scienceSewage treatmentnutrient removalCarbonWWTP Nutrient removal Greenhouse gases Global warming BiofilmWWTP
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A globally relevant stock of soil nitrogen in the Yedoma permafrost domain

2022

AbstractNitrogen regulates multiple aspects of the permafrost climate feedback, including plant growth, organic matter decomposition, and the production of the potent greenhouse gas nitrous oxide. Despite its importance, current estimates of permafrost nitrogen are highly uncertain. Here, we compiled a dataset of >2000 samples to quantify nitrogen stocks in the Yedoma domain, a region with organic-rich permafrost that contains ~25% of all permafrost carbon. We estimate that the Yedoma domain contains 41.2 gigatons of nitrogen down to ~20 metre for the deepest unit, which increases the previous estimate for the entire permafrost zone by ~46%. Approximately 90% of this nitrogen (37 gigaton…

biogeokemiamaaperäarktinen alueMultidisciplinaryNitrogenNitrous OxideGeneral Physics and AstronomyPermafrostikiroutaGeneral ChemistryilmastonmuutoksetGeneral Biochemistry Genetics and Molecular BiologyCarbonGreenhouse GasesSoiltypen kiertoorgaaninen ainesddc:500Dewey Decimal Classification::500 | Naturwissenschaften
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Initial indicator analysis of bioethylen production pathways

2018

Abstract Circular economy and bioeconomy factors has driven the economy sectors towards sustainable choices. Chemical industry, as stated by the Joint Research Centre of the European Commission, has a potential to reduce 36 % of the greenhouse gas (GHG) emissions by 2050 [1] mainly linked with introduction of emerging energy technologies. Ethylene, chlorine, ammonia and hydrogen are important chemicals for such reduction as they are the most worldwide produced chemicals (16 % of the total production in 2050 for ethylene, 11 % for chlorine and 6 % for ammonia). Meanwhile planned GHG reduction potential for these chemicals, through introduction of compression and separation technologies, is e…

biologybusiness.industry020209 energyCircular economychemistry.chemical_element02 engineering and technologyChemical industryRaw materialPulp and paper industrybiology.organism_classificationAmmoniachemistry.chemical_compoundchemistryGreenhouse gas0202 electrical engineering electronic engineering information engineeringChlorineEnvironmental scienceSugar beetbusinessTonneEnergy Procedia
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Distribution of biomass and site location of combustion and gasification power plants in western Sicily

2012

The substitution of conventional fossil fuels with biomass for energy production results both in the reduction of greenhouse gases emissions and in the replacement of non-renewable energy sources. The use of biomass for energy production responds to the growing pressure of government policies towards the achievement of better environmental sustainability of power generation processes. This is particularly true for the agricultural areas of Sicily, where the realization of new economic dynamics can lead to development of a local economic system. However, at present, generating energy from biomass is rather expensive due to both technological limits related to low conversion efficiencies, and…

biomass; site location; combustion and gasification power plantsPower stationbiomassbusiness.industryNatural resource economicsbiomass site location combustion and gasification power plantsFossil fuelEnvironmental engineeringGreenhouseBiomasssite locationElectricity generationGreenhouse gasSustainabilityEnvironmental scienceGeneral Agricultural and Biological SciencesbusinessEnergy sourcecombustion and gasification power plants
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In-situ measurements of hemp-lime insulation materials for energy efficiency improvement

2018

Abstract Reduction of the CO2 emissions in the atmosphere is one of the goals set forth by the European Union, hence various directives have been adopted, such as the European directive 2012/27/EU on energy efficiency, i.e. ensuring from 2019 the construction of the near-zero energy buildings (nZEB). The construction segment plays a very important part in solving the current global problem of the greenhouse gas emissions and related processes of global warming, because in certain countries (i.e. in Latvia) it represents more than a half of the total energy consumption. Hence the necessity to elaborate means on how to boost the energy efficiency of the buildings meanwhile not rising pressure…

business.industry020209 energyGlobal warmingEnvironmental engineeringHumidity02 engineering and technology010501 environmental sciencesRaw material01 natural sciencesHeat fluxThermal insulationGreenhouse gas0202 electrical engineering electronic engineering information engineeringEnvironmental sciencemedia_common.cataloged_instanceEuropean unionbusiness0105 earth and related environmental sciencesEfficient energy usemedia_commonEnergy Procedia
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Integral functions of marine vertebrates in the ocean carbon cycle and climate change mitigation

2021

Summary In the last decade, the ocean has absorbed a quarter of the Earth’s greenhouse gas emissions through the carbon (C) cycle, a naturally occurring process. Aspects of the ocean C cycle are now being incorporated into climate change mitigation and adaptation plans. Currently, too little is known about marine vertebrate C functions for their inclusion in policies. Fortunately, marine vertebrate biology, behavior, and ecology through the lens of C and nutrient cycling and flux is an emerging area of research that is rich in existing data. This review uses literature and trusted data sources to describe marine vertebrate C interactions, provides quantification where possible, and highligh…

business.industryEnvironmental resource managementClimate changeVDP::Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480::Marinbiologi: 497Carbon sequestrationCarbon cycleEcosystem servicesClimate change mitigationGreenhouse gasSustainabilityMarine vertebrateEarth and Planetary Sciences (miscellaneous)businessGeneral Environmental ScienceOne Earth
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Flexibility Services in a Mediterranean Small Island to Minimize Costs and Emissions Related to Electricity Production from Fossil Fuels

2020

In last years, the energy efficiency in non-interconnected islands became an important topic, since the electricity production is often based on diesel generators, thus contributing to the global warming. Italian government recently emitted two decrees to promote the introduction of renewable energy technologies in 21 non-interconnected islands, both for electrical and thermal uses. In this paper, the economic and environmental feasibility of the introduction of renewable energies in the island of Pantelleria was assessed adopting an optimization approach. Furthermore, the flexibility provided from the local desalination plant and the domestic water heaters was evaluated. The final demands …

business.industryNatural resource economics020209 energy020208 electrical & electronic engineeringFossil fuel02 engineering and technologymixed integer linear programmingDesalinationrenewable energyRenewable energyDemand responsedesalinationElectricity generationdemand responseGreenhouse gas0202 electrical engineering electronic engineering information engineeringEnvironmental scienceElectricitybusinessoptimizationEfficient energy use
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The emission reduction potentials of First Generation Electric Aircraft (FGEA) in Finland

2020

Abstract Under the looming climate crisis, aviation needs to find new solutions to cut its greenhouse gas emissions. One pathway towards zero emissions is the use of electric aircraft. While current battery technology will not allow for medium and long-haul flights at full capacity, on short-haul routes First Generation Electric Aircraft (FGEA) could play a significant role in the near future. Current FGEA under development could carry 9–19 passengers on distances of 400–1046 km by 2025. This study focuses on the emissions reduction potentials of FGEA in Finland. It compares the carbon dioxide equivalent (CO2-eq) emissions and real travel times (RTT) from door-to-door of FGEA on 47 routes w…

business.product_categoryAviationbusiness.industryGeography Planning and DevelopmentCarbon dioxide equivalentTransportationAutomotive engineeringRenewable energyGreenhouse gasElectric vehicleEnvironmental scienceTrainElectricitybusinessZero emissionGeneral Environmental ScienceJournal of Transport Geography
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