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- W2276329676 abstract "This chapter focuses on bio-aerogels that demonstrate thermal superinsulating properties. It considers aerogels based on pure polysaccharides and on their composites with silica. The chapter describes the morphology, density, mechanical properties, and thermal conductivity of aerogels. Having excellent mechanical properties, cellulose nanofibrils can be used for reinforcing silica aerogels. Cellulose-silica aerogel composites were obtained from bacterial cellulose and nanofibrillated cellulose. Aerocellulose is prepared via cellulose dissolution, coagulation, and drying with CO2. One of the ways to decrease the thermal conductivity of Aerocellulose is filling its pores with a superinsulating silica aerogel. Pectin was discovered to form aerogels with thermal superinsulating properties. The mechanical properties of Aeropectins are similar to those of Aerocellulose. Pectin solutions at low pH were used to prepare one-pot pectin-silica aerogels resulting in strong, thermally superinsulating aerogels. All composite aerogels are thermal superinsulating materials, with the best performance corresponding to those prepared at pH1.5." @default.
- W2276329676 created "2016-06-24" @default.
- W2276329676 creator A5072450464 @default.
- W2276329676 date "2018-11-29" @default.
- W2276329676 modified "2023-10-16" @default.
- W2276329676 title "Bio-based Aerogels: A New Generation of Thermal Superinsulating Materials" @default.
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- W2276329676 doi "https://doi.org/10.1002/9781119217619.ch15" @default.
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