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由玉米秸秆制备食品级羧甲基纤维素。

Preparation of food grade carboxymethyl cellulose from corn husk agrowaste.

机构信息

Polymer and Textile Research Lab., Department of Applied Chemistry and Chemical Engineering, Rajshahi University, Rajshahi 6205, Bangladesh.

Polymer and Textile Research Lab., Department of Applied Chemistry and Chemical Engineering, Rajshahi University, Rajshahi 6205, Bangladesh.

出版信息

Int J Biol Macromol. 2015 Aug;79:144-50. doi: 10.1016/j.ijbiomac.2015.04.061. Epub 2015 May 1.

Abstract

Alpha-cellulose extracted from corn husks was used as the raw material for the production of food-grade carboxymethyl cellulose (CMC). Preparation of CMC from husk cellulose was carried out by an etherification process, using sodium hydroxide and monochloroacetic acid (MCA), with ethanol as the supporting medium. Characterizations of CMC were carried out by analyzing the spectra of FTIR, XRD patterns and SEM photomicrographs. Degree of substitution (DS) was determined with respect to particle size using chemical methods. Solubility, molecular weight and DS of CMC increased with decreased cellulose particle sizes. Microbiological testing of the prepared CMC was done by the pour plate method. Concentrations of heavy metals such as arsenic, lead, cadmium and mercury in the purified CMC were measured by Atomic Absorption Spectroscopy technique and found to be within the WHO/FAO recommended value. A comparative study with CMC available in the international market was conducted. The purity of the prepared CMC was higher, at 99.99% well above the purity of 99.5% for standard CMC. High purity CMC showed a yield 2.4 g/g with DS 2.41, water holding capacity 5.11 g/g, oil holding capacity 1.59 g/g. The obtained product is well suited for pharmaceutical and food additives.

摘要

以玉米穗皮为原料提取的α-纤维素,用于生产食品级羧甲基纤维素(CMC)。采用碱化和一氯乙酸(MCA)醚化工艺,以乙醇为支持介质,由穗皮纤维素制备 CMC。通过分析 FTIR 光谱、XRD 图谱和 SEM 照片对 CMC 进行了表征。通过化学方法,根据粒径确定取代度(DS)。CMC 的溶解度、分子量和 DS 随纤维素粒径的减小而增加。采用倾注平板法对制备的 CMC 进行了微生物测试。采用原子吸收光谱技术测定了纯化 CMC 中砷、铅、镉和汞等重金属的浓度,发现均在世界卫生组织/粮农组织建议值范围内。与国际市场上可用的 CMC 进行了比较研究。制备的 CMC 的纯度更高,为 99.99%,远高于标准 CMC 的 99.5%。高纯度 CMC 的产率为 2.4 g/g,取代度为 2.41,持水能力为 5.11 g/g,持油能力为 1.59 g/g。所得产物非常适合用作药物和食品添加剂。

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