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首页> 外文期刊>Journal of Applied Polymer Science >Graft Copolymerization Onto Tamarind Kernel Powder: Ceric(IV)-initiated Graft Copolymerization of Acrylonitrile
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Graft Copolymerization Onto Tamarind Kernel Powder: Ceric(IV)-initiated Graft Copolymerization of Acrylonitrile

机译:罗望子仁粉末上的接枝共聚:Ceric(IV)引发的丙烯腈的接枝共聚

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摘要

Tamarind Kernel Powder (TKP) is derived from the seeds of Tamarindus indica Linn., a common and most important tree of India. It is extensively used in cotton sizing, as a wet-end additive in the paper industry, as a thickening, stabilizing, and gelling agent in the food industry. However, because of its fast biodegradability there is a need to prepare graft copolymers of TKP. The graft copolymerization of acrylonitrile (AN) onto TKP with ceric ammonium nitrate as a redox initiator in an aqueous medium has been studied. The reaction conditions were optimized to afford maximum percent grafting and percentage grafting efficiency of AN onto TKP, which was found to be 86% and 64%, respectively. Fourier Transform Infrared Spectrum of the grafted products showed an additional sharp absorption band at 2244 cm(-1) due to -C equivalent to N stretching, thereby confirming the grafting of AN onto TKP. Scanning electron microscopy studies indicated change in contour of the polysaccharide on grafting and the thick polymeric coating of AN on its surface along with grafting of AN such that all the gap between polysaccharide particles have been closed. Thermal studies using thermogravimetric and differential gravimetric analyses confirmed that TKP-g-AN has overall high thermal stability than pure TKP. Reaction mechanism of grafting of acrylnitrile onto TKP is also proposed.
机译:罗望子果仁粉(TKP)源自印度罗望子树的种子,罗望子树是印度常见且最重要的树。它被广泛用于棉花上浆,在造纸工业中用作湿部添加剂,在食品工业中用作增稠剂,稳定剂和胶凝剂。然而,由于其快速的生物降解性,需要制备TKP的接枝共聚物。研究了在水介质中用硝酸铈铵作为氧化还原引发剂将丙烯腈(AN)接枝共聚到TKP上。优化了反应条件,以提供最大的AN接枝率和TKP上的AN接枝率,分别为86%和64%。嫁接产物的傅立叶变换红外光谱显示,由于-C等效于N拉伸,因此在2244 cm(-1)处有一个额外的尖锐吸收带,从而确认了AN在TKP上的接枝。扫描电子显微镜研究表明,接枝时多糖的轮廓发生了变化,AN接枝时其表面上AN的聚合物涂层变厚,从而多糖颗粒之间的所有间隙均被封闭。使用热重分析和微分重量分析进行的热研究证实,TKP-g-AN具有比纯TKP更高的整体热稳定性。还提出了丙烯腈接枝到TKP上的反应机理。

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