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Modification mechanism of sesbania gum, and preparation, property, adsorption of dialdehyde cross-linked sesbania gum

机译:芝麻胶的改性机理及二醛交联芝麻胶的制备,性能,吸附

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This paper studied the modification mechanism of Sesbania gum (SG) by means of the variations in the numbers of surface hydroxyl groups on the granules, Schiff's agent coloration of aldehyde groups, Fourier transform infrared spectroscopy (FTIR) and X-ray diffraction (XRD), energy dispersive spectrum (EDS), etc., and also examined the preparation, property and adsorption of dialdehyde cross-linked sesbania gum (DCLSG). The results showed that the surface hydroxyl numbers of cross-linked sesbania gum (CLSG) decreased with increasing the cross-linking degree. The distribution of the aldehyde groups on the DCLSG particles was nonuniform because most of aldehyde groups mainly located on the edge of particles. The cross-linking occurred only on the surface of SG particles. The oxidization occurred not only on the surface of SG particles, but also in the interior of particles. The cross-linking or oxidization changed the thermal properties, and reduced the swelling power, viscosity, alkali and acid resistance of SG. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过颗粒表面羟基数的变化,醛基的席夫试剂着色,傅里叶变换红外光谱(FTIR)和X射线衍射(XRD)等手段研究了芝麻胶的改性机理。 ,能量色散谱(EDS)等,还研究了二醛交联芝麻胶(DCLSG)的制备,性质和吸附。结果表明,交联芝麻胶的表面羟基数随交联度的增加而降低。醛基在DCLSG颗粒上的分布不均匀,因为大多数醛基主要位于颗粒的边缘。交联仅在SG颗粒的表面上发生。氧化不仅发生在SG颗粒的表面,而且还发生在颗粒内部。交联或氧化改变了热性能,并降低了SG的溶胀能力,粘度,耐碱和耐酸性。 (C)2016 Elsevier Ltd.保留所有权利。

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