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Life Cycle Assessment of Energy Systems

Life Cycle Assessment of Energy Systems

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This Special Issue on “LCA of Energy Systems” contains inspiring contributions on assessing the sustainability of novel technologies destined to shape the future of our energy sector. These include battery-based and plug-in hybrid electric vehicles, geothermal energy, hydropower, biomass gasification, national electricity systems, and waste incineration. The analysis of trends and singularities will be invaluable to product designers, engineers, and policy makers. Furthermore, these exercises also contribute to refining the life cycle framework and harmonizing methodological decisions. Our hope is that this should be a step toward promoting the use of science and knowledge to shape a better world for everyone.

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Keywords

  • activated carbon
  • Allocation
  • Bagnore power plant
  • battery electric vehicle (BEV)
  • Biomass
  • carbon capture economy
  • carbon dioxide capture
  • carbon footprint
  • CHP
  • coalbed methane development
  • decentralized energy system
  • distance-to-target weighting
  • e-Waste
  • Eco-indicator 99
  • ecological scarcity
  • Electricity
  • Employment
  • energy
  • Environmental Impacts
  • exergy
  • flash technology
  • gas/oil-fired boilers
  • gasification
  • Geothermal Energy
  • greenhouse gas (GHG) emissions
  • IGCC
  • LCA
  • LCOE
  • Life Cycle Assessment
  • life cycle impact assessment
  • matter-element extension method
  • multifunctionality
  • pedigree matrix
  • plug-in electric vehicle
  • precious metal recovery
  • printed circuit board
  • Reference, information & interdisciplinary subjects
  • renewable electricity and heat generation
  • renewables
  • Research & information: general
  • Risk assessment
  • secondary copper smelting
  • SimaPro
  • SOFC
  • Spain
  • stirling cycle-based heat pump
  • structural entropy weight method
  • sustainability
  • thema EDItEUR::G Reference, Information and Interdisciplinary subjects::GP Research and information: general
  • thermodynamic modeling

Links

DOI: 10.3390/books978-3-0365-0525-1

Editions

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