Reprint

Sustainability, Circular Economy and Waste Recycling: Advances in Materials Research

Edited by
August 2024
250 pages
  • ISBN978-3-7258-1749-8 (Hardback)
  • ISBN978-3-7258-1750-4 (PDF)

This is a Reprint of the Special Issue Sustainability, Circular Economy and Waste Recycling: Advances in Materials Research that was published in

Chemistry & Materials Science
Engineering
Physical Sciences
Summary

Scientific research is constantly promoting innovative materials and technologies for the reuse of raw materials, due to environmental problems and new legislation that has emerged in recent years. Sustainability, the circular economy, green engineering, waste recycling, and the development of innovative and eco-friendly materials are some of the main topics addressed by the different authors in this Special Issue.

Format
  • Hardback
License and Copyright
© 2024 by the authors; CC BY-NC-ND license
Keywords
polymer; plastic; waste; degradation; microplastic; nanoplastic; environment pollution; food safety; human health; microporous calcium silicate; extraction silicon solution; crystal transformation; fly ash; preheated decarburized; backfill; coal gangue; compressive strength; microstructure; leaching; manganese; sludge; zinc; lead; potassium; sulfuric acid; ferromanganese; submerged arc furnace; kinetics; manganese carbonate; short-carbon-fiber-reinforced PA6,6 thermoplastic composites; recycled carbon fibers; 3D printing; recoverability; critical length; proton exchange membrane water electrolysis (PEMWE); green hydrogen; renewable energy; electrocatalysts; noble metals; non-noble metals; confectionery gels; low-sugar candy; gummy jelly; furcellaran; biodegradable films; vanadium pentoxide; leaching process; recovery of V2O5; recycling; extraction; adsorption; catalytic oxidation; hydrogen reforming; non-oxidative coupling; toluene; methane; waste; cocoa shell; 3D printing; fused filament fabrication; PLA; circular economy; fly ash; silica aerogel; acid dissolution–alkali leaching; ambient pressure drying; reinforcing modification; geopolymer mortars; lightweight aggregates; sustainable mortars; thermal conductivity

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