Journal Article10.1016/J.CARBPOL.2008.11.030
Bionanocomposites based on pea starch and cellulose nanowhiskers hydrolyzed from pea hull fibre: Effect of hydrolysis time
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TL;DR: In this article, a series of pea hull fiber-derived nanowhisker (PHFNW-t) dispersions was prepared by hydrolyzing PEA hull fibres for different times (t) with sulfuric acid, and then blended with pea starch (PS) to fabricate bionanocomposite films.
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About: This article is published in Carbohydrate Polymers. The article was published on 16 May 2009.
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References
Review of Recent Research into Cellulosic Whiskers, Their Properties and Their Application in Nanocomposite Field
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Enzymatic hydrolysis combined with mechanical shearing and high-pressure homogenization for nanoscale cellulose fibrils and strong gels.
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TL;DR: Mild enzymatic hydrolysis has been introduced and combined with mechanical shearing and a high-pressure homogenization, leading to a controlled fibrillation down to nanoscale and a network of long and highly entangled cellulose I elements.
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Isolation and characterization of nanofibers from agricultural residues: wheat straw and soy hulls.
Ayse Alemdar,Mohini Sain +1 more
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Effect of reaction conditions on the properties and behavior of wood cellulose nanocrystal suspensions.
TL;DR: Increased acid-to-pulp ratio reduced the dimensions of the nanocrystals thus produced and the critical concentration was increased and the biphasic range became narrower; a suspension made from a bleached kraft eucalyptus pulp gave very similar properties to the softwood nanocrystal suspension when prepared under similar hydrolysis conditions.
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Optimization of the isolation of nanocrystals from microcrystalline cellulose by acid hydrolysis
TL;DR: In this article, a rapid, high-yield process was proposed to obtain an aqueous stable colloid suspension of cellulose nanocrystals/whiskers. But the results of the process were limited by the concentration of MCC and sulfuric acid, the hydrolysis time and temperature, and ultrasonic treatment time.
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