Reprint

Recovery of Waste Materials: Technological Research and Industrial Scale-Up

Edited by
June 2022
214 pages
  • ISBN978-3-0365-3062-8 (Hardback)
  • ISBN978-3-0365-3063-5 (PDF)

This book is a reprint of the Special Issue Recovery of Waste Materials: Technological Research and Industrial Scale-Up that was published in

Chemistry & Materials Science
Engineering
Physical Sciences
Summary

Increases in population, booming economy, rapid urbanization and the rise of living standard have exponentially accelerated waste production.

Currently, 2 billion tons per year of municipal solid waste is produced worldwide and about 33% of this amount remains uncollected by different municipalities.. However, the entire waste production process concerns different streams and origins other than municipal solid waste, including industrial, agricultural, construction and demolitions waste; and hazardous, medical and electronic waste. Published papers, as a whole, concern different waste materials such as the recovery of different building materials, the treatment of waste deriving from electrical and electronic equipment, the utilization of stainless-steel slags, agricultural and domestic waste and plastics.

In conclusion, the works demonstrate scientific and technological relevance in terms of the topics dealt with, but the problems addressed in this Special Issue proceed beyond the solution that the scientific community is able to propose. In fact, our industrial system, at the end of its cycle of production and consumption, has not developed the capacity to absorb and reuse waste and byproducts. We have not yet managed to adopt a circular model of production capable of preserving resources for present and future generations.

Format
  • Hardback
License
© 2022 by the authors; CC BY-NC-ND license
Keywords
pyrolysis; biochars; agricultural waste; biomass; recycled aggregates; self-compacting concrete; design parameters; fresh concrete properties; mix design; printed circuit boards; spent mobile phones; thiourea; precious metals; hydrometallurgy; factorial plans; pyrolysis; plastic waste; carbon nanotubes; plastic oil; fuels; monomer recovery; olefins; reusing of wastes; secondary lime; neutralization; reduce landfill; acidic wastewater treatment; sustainable production; recycling; lathe waste; CNC machining; sustainable development; mix modification; workability; mechanical properties; thermal properties; bottom ash; dry treatment; incineration; municipal solid waste; potential toxic elements; salts; sound absorber; cigarette butts; sustainable material; recycling; chemical cleaning; stainless steel slag; recycling; acidic wastewater treatment; upscale trials; mixing time; absorption; circular economy; oil spill; refrigerator; WEEE; waste; agricultural waste; value-added materials; calcium oxide; eggshell; incense sticks; adsorption; circular economy; wastewater; refrigerator; WEEE; n/a