Description

Book Synopsis
Aerogels have been in use for over 80 years and have been utilised in a wide variety of applications, in particular, there has been growing use of insulating nanoporous materials in the aerospace industry. Recent awareness of the environmental implications of materials has driven researchers to develop new green materials, with aerogels being developed using biobased constituents, such as polysaccharides and proteins. Recently, biobased components, such as cellulose nanocrystals, have replaced synthetic counterparts in the production of nanoporous materials. Biobased Aerogels is the first book to cover aerogel research from a green perspective, using commentary and analysis from leading researchers working in the field. Aerogels based on polysaccharides and proteins, their preparation and characterisation will be covered in detail, with further discussion highlighting properties such as surface morphology, shape recovery, mechanical properties and adsorption capacity. This insightful and timely publication will provide essential reading for those researchers and industrialists working within the green chemistry field.

Table of Contents
Polysaccharide and Protein Based Aerogels: An Introductory Outlook; Chitin/Chitosan Based Aerogels: Processing and Morphology; Cellulose Based Aerogels: Processing and Morphology; Starch Based Aerogels: Processing and Morphology; Alginate and Carrageenan Based Aerogels: Processing and Morphology; Protein-based Aerogels: Processing and Morphology; Hybrid Green Aerogels: Processing and Morphology; Modelling and Simulations of Polysaccharide and Protein Based Aerogels; Biodegradation of Polysaccharide and Protein Based Aerogels; Thermal, Electrical, Insulation and Fire Resistance Properties of Polysaccharide and Protein-based Aerogels; Mechanical, Rheological and Viscoelastic Properties of Polysaccharide and Protein Based Aerogels; Tuning Microscopic and Mechanical Properties of Bio-based Aerogels; Applications of Aerogels in Aerospace and Packaging; Cellulose and Protein Aerogels for Oil Spill Cleaning, Life Science and Food Engineering Applications; Applications of Polysaccharide and Protein Based Aerogels in Thermal Insulation; Biomedical Applications of Polysaccharide and Protein Based Aerogels

Biobased Aerogels: Polysaccharide and

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    A Hardback by Sabu Thomas, Laly A Pothan, Rubie Mavelil-Sam

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      Publisher: Royal Society of Chemistry
      Publication Date: Publication Date: 29/08/2018
      ISBN13: 9781782627654, 978-1782627654
      ISBN10: 1782627650

      Description

      Book Synopsis
      Aerogels have been in use for over 80 years and have been utilised in a wide variety of applications, in particular, there has been growing use of insulating nanoporous materials in the aerospace industry. Recent awareness of the environmental implications of materials has driven researchers to develop new green materials, with aerogels being developed using biobased constituents, such as polysaccharides and proteins. Recently, biobased components, such as cellulose nanocrystals, have replaced synthetic counterparts in the production of nanoporous materials. Biobased Aerogels is the first book to cover aerogel research from a green perspective, using commentary and analysis from leading researchers working in the field. Aerogels based on polysaccharides and proteins, their preparation and characterisation will be covered in detail, with further discussion highlighting properties such as surface morphology, shape recovery, mechanical properties and adsorption capacity. This insightful and timely publication will provide essential reading for those researchers and industrialists working within the green chemistry field.

      Table of Contents
      Polysaccharide and Protein Based Aerogels: An Introductory Outlook; Chitin/Chitosan Based Aerogels: Processing and Morphology; Cellulose Based Aerogels: Processing and Morphology; Starch Based Aerogels: Processing and Morphology; Alginate and Carrageenan Based Aerogels: Processing and Morphology; Protein-based Aerogels: Processing and Morphology; Hybrid Green Aerogels: Processing and Morphology; Modelling and Simulations of Polysaccharide and Protein Based Aerogels; Biodegradation of Polysaccharide and Protein Based Aerogels; Thermal, Electrical, Insulation and Fire Resistance Properties of Polysaccharide and Protein-based Aerogels; Mechanical, Rheological and Viscoelastic Properties of Polysaccharide and Protein Based Aerogels; Tuning Microscopic and Mechanical Properties of Bio-based Aerogels; Applications of Aerogels in Aerospace and Packaging; Cellulose and Protein Aerogels for Oil Spill Cleaning, Life Science and Food Engineering Applications; Applications of Polysaccharide and Protein Based Aerogels in Thermal Insulation; Biomedical Applications of Polysaccharide and Protein Based Aerogels

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