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dc.contributor.editorTsantopoulos, Georgios
dc.contributor.editorKarasmanaki, Evangelia
dc.date.accessioned2022-02-24T10:33:50Z
dc.date.available2022-02-24T10:33:50Z
dc.date.issued2022
dc.identifierONIX_20220224_9783036527062_9
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/78711
dc.description.abstractThere is a growing concern about the climate; numerous voices stress that, in order to overcome the climate crisis, the transition to a low-carbon society is the most reasonable path to follow. In this type of society, individuals would be characterized by making mindful efforts to drastically decrease carbon and greenhouse gas emissions, and promote benign energy sources. In order to facilitate this transition, a social perspective in addition to technological, political and economic aspects must be integrated into the relevant decision-making processes. This is necessary because the public can strongly affect actions aimed at driving profound changes in traditional energy systems. To contribute to the effort of promoting energy transition, the Editors of this book invited scholars and practitioners conducting research in the areas of climate change and the energy transition to submit their work. This book includes studies that establish a valuable source of information which can be used to enhance decision-making processes which, in turn, can turn the energy transition into reality. Hopefully, efforts such as this collection of knowledge can help economies make a step towards a secure and sustainable energy future in which renewables will have replaced the centuries-long human dependence on fossil fuels.
dc.languageEnglish
dc.subject.classificationthema EDItEUR::G Reference, Information and Interdisciplinary subjects::GP Research and information: generalen_US
dc.subject.classificationthema EDItEUR::K Economics, Finance, Business and Management::KC Economics::KCV Economics of specific sectors::KCVG Environmental economicsen_US
dc.subject.otherICT
dc.subject.otherEU regional policy
dc.subject.othersustainable development
dc.subject.othermulticriteria approach
dc.subject.otherpolicy assessment
dc.subject.otherbioclimatic buildings
dc.subject.othersustainable buildings
dc.subject.otherbioclimatic housing design
dc.subject.otherenergy efficiency
dc.subject.othercitizens’ views
dc.subject.otherraising-awareness
dc.subject.otheradaptation
dc.subject.otherdecision making
dc.subject.otherbibliographical survey
dc.subject.otherclimatic factor
dc.subject.otherenergy industry
dc.subject.otherworld agriculture
dc.subject.othercausal effects
dc.subject.otherjustice
dc.subject.otherfactorial surveys
dc.subject.otherrenewable energy
dc.subject.othervignette study
dc.subject.otherforeign direct investment
dc.subject.otherenvironmental efficiency
dc.subject.othernon-radial metafrontier Malmquist index
dc.subject.otherpartial-factor CO2 emission performance
dc.subject.otherIndia
dc.subject.otherthermal comfort
dc.subject.otheroutdoor environments
dc.subject.otherpedestrians
dc.subject.otherheat mitigation
dc.subject.othermicroclimates
dc.subject.otherwastewater
dc.subject.othersewerage
dc.subject.otherliquid waste tanks (cesspool)
dc.subject.otherpartial correlation
dc.subject.otherorganic and biogenic pollution
dc.subject.otherbusiness communication
dc.subject.otherenergy corporations
dc.subject.othergreening
dc.subject.otherresponsibility
dc.subject.otherstrategic management
dc.subject.otherbuildings
dc.subject.otherenergy efficiency improvement
dc.subject.othermulti-objective optimization
dc.subject.otherpreference disaggregation
dc.subject.otherpreference elicitation
dc.subject.othervalue system
dc.subject.otherutility function
dc.subject.otherPV farms
dc.subject.otherdeep learning
dc.subject.othersatellite imagery
dc.subject.otherCNN
dc.subject.otherautomatic detection
dc.subject.otherclimate transitions
dc.subject.otherclimate justice
dc.subject.otherregional development
dc.subject.otherterritorial plans
dc.subject.otherplace-based policy
dc.subject.othercoal
dc.subject.othernatural gas
dc.subject.otherCO2 emissions
dc.subject.otherpublic acceptance
dc.subject.otherordered probit model
dc.subject.othergas turbine
dc.subject.otherair injection
dc.subject.otherturboexpander
dc.subject.otherperformance enhancement
dc.subject.otheremission reduction
dc.subject.otherlife cycle assessment
dc.subject.otheranalytical hierarchy process
dc.subject.othermulti-perspective criteria
dc.subject.othercarbon capture
dc.subject.otheracceptance
dc.subject.otherpublic perception
dc.subject.otherindustrial applications
dc.subject.otherliterature review
dc.subject.otherknowledge
dc.subject.otherawareness
dc.subject.othercommunication
dc.subject.otherclimate change
dc.subject.otherenergy and climate plan
dc.subject.otherenergy price
dc.subject.otherenergy transition
dc.subject.otherGreece
dc.subject.otherlignite
dc.subject.otherRES
dc.subject.othern/a
dc.titleEnergy Transition and Climate Change in Decision-making Processes
dc.typebook
oapen.identifier.doi10.3390/books978-3-0365-2706-2
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0
oapen.relation.isbn9783036527062
oapen.relation.isbn9783036527079
oapen.pages303
oapen.place.publicationBasel


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