微晶纤维素
解聚
聚合度
聚合
水解
纤维素
聚合物
球磨机
材料科学
化学工程
化学
高分子化学
酸水解
制浆造纸工业
有机化学
复合材料
工程类
作者
Karel Thielemans,Yamina De Bondt,Sander Van den Bosch,An Bautil,Chiara Roye,Aron Deneyer,Christophe M. Courtin,Bert F. Sels
标识
DOI:10.1016/j.carbpol.2022.119764
摘要
Depolymerization of cellulose is often used as a (pre)treatment protocol within the catalytic valorization strategies of cellulose. Typical depolymerization protocols yield polymerization degrees above 70 anhydroglucose units (AGU). However, shorter cellulose fibers are of interest in the search for accessible dietary fiber additives or renewable materials with distinct mechanical properties (bio-composites). In this work, short-polymer microcrystalline celluloses (SMCC) with an average polymerization degree between 29 and 70 AGU were produced with material yields of 95 % and above by combining a planetary ball mill pretreatment with mild acid hydrolysis. By first decreasing the levelling-off degree of polymerization (LODP) with an intensive ball mill treatment, a mild acid hydrolysis protocol was sufficient to ensure high yields of SMCC. Furthermore, the desired polymerization degree could be obtained by tuning the process parameters.
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