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不同谷物秸秆用于木质纤维素纳米纤维分离的适用性比较研究。

A comparative study of the suitability of different cereal straws for lignocellulose nanofibers isolation.

作者信息

Espinosa Eduardo, Sánchez Rafael, Otero Rocío, Domínguez-Robles Juan, Rodríguez Alejandro

机构信息

Chemical Engineering Department, Faculty of Science, University of Córdoba, Building Marie-Curie, Campus of Rabanales, Córdoba, Spain.

Chemical Engineering Department, Faculty of Science, University of Córdoba, Building Marie-Curie, Campus of Rabanales, Córdoba, Spain.

出版信息

Int J Biol Macromol. 2017 Oct;103:990-999. doi: 10.1016/j.ijbiomac.2017.05.156. Epub 2017 May 26.

Abstract

The aim of this work is to study the suitability of different soda cereal straw pulps (wheat, barley, corn and oats) to produce lignocellulose nanofibers (LCNF). For the study of the influence of the composition and physical characteristics, the pulps were characterized, observing that the physical characteristics do not influence the nanofibrillation process. However, the composition of the fibers plays a key role, mainly the hemicellulose content. The LCNF produced were characterized: chemical structure (FTIR), crystallinity (XRD), thermal stability (TGA), size (DLS) and colloidal stability (ZP). The TO-LCNF are those which presents higher nanofibrillation yields and lower nanofibers size, however presents low crystallinity, thermal stability and a further depolymerization compared to the others LCNF. The lignin contents allow a greater thermal stability (<330°C) than the same size CNF (<250°C). TO-LCNF present more stable suspensions (ZP<-25mV) due to their higher surface charge (COO- groups). AF4 technique was used to effectively determine the size of polydispersed samples of LCNF by avoiding the errors committed by conventional techniques. In addition, it is observed that wheat and barley straws present the most homogeneity in the LCNF samples, being the wheat which presents the best values in the production of LCNF under the three pretreatments.

摘要

这项工作的目的是研究不同苏打谷物秸秆浆(小麦、大麦、玉米和燕麦)用于生产木质纤维素纳米纤维(LCNF)的适用性。为了研究成分和物理特性的影响,对纸浆进行了表征,发现物理特性不影响纳米纤维化过程。然而,纤维的组成起着关键作用,主要是半纤维素含量。对所生产的LCNF进行了表征:化学结构(傅里叶变换红外光谱法)、结晶度(X射线衍射法)、热稳定性(热重分析法)、尺寸(动态光散射法)和胶体稳定性(ζ电位)。TO-LCNF具有较高的纳米纤维化产率和较小的纳米纤维尺寸,但与其他LCNF相比,结晶度低、热稳定性差且存在进一步解聚。木质素含量比相同尺寸的CNF(<250°C)具有更高的热稳定性(<330°C)。由于TO-LCNF具有更高的表面电荷(羧基),其悬浮液更稳定(ζ电位<-25mV)。采用不对称流场-流分技术有效测定了LCNF多分散样品的尺寸,避免了传统技术所产生的误差。此外,观察到小麦和大麦秸秆的LCNF样品最为均匀,在三种预处理条件下,小麦秸秆在LCNF生产中表现出最佳值。

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