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Because of widespread concern about the environment, trash buildup and destruction, and the eventual depletion of fossil fuels, researchers have increasingly concentrated on the invention of novel materials derived from biorenewable and sustainable sources. Many applications have made substantial use of biorenewable materials as a matrix or reinforcement. Composites provide significant benefits in the development of novel processes and materials due to their superior qualities such as ease of production, higher mechanical properties, high thermal stability, and many others. When compared to…mehr

Produktbeschreibung
Because of widespread concern about the environment, trash buildup and destruction, and the eventual depletion of fossil fuels, researchers have increasingly concentrated on the invention of novel materials derived from biorenewable and sustainable sources. Many applications have made substantial use of biorenewable materials as a matrix or reinforcement. Composites provide significant benefits in the development of novel processes and materials due to their superior qualities such as ease of production, higher mechanical properties, high thermal stability, and many others. When compared to traditional composites, nanocomposites (obtained from biorenewable sources) offer substantial benefits. Food, biomedical, electroanalysis, energy storage, wastewater treatment, automotive, and other sectors have all made use of nanocomposites. This thorough overview covers the chemistry, architectures, advanced applications, and latest discoveries in biorenewable nanocomposites.
Autorenporträt
Balwinder Singh Ghuman é Engenheiro Químico. Fez o seu B.Tech,M.Tech e doutoramento no Departamento de Engenharia Química e Tecnologia, Universidade de Panjab, Chandigarh, Índia.