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Thermoanalytical and FT-IR Characteristics of Fabrics Finished with BTCA/Chloroacetates Part Ⅱ: FT-IR Identification of Volatile Decomposition Products

机译:BTCA /氯乙酸酯整理的织物的热分析和FT-IR特性第二部分:挥发性分解产物的FT-IR鉴定

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摘要

Cotton fabrics esterified with polycarboxylic acids possess excellent smooth drying properties and have good strength retention. The best results have been obtained with catalysts of inorganic phosphorus acids, especially sodium hypophosphite monohydrate (SHP). However, because SHP is fairly expensive and there is some concern that phosphorus from finishing plants would contribute to the pollution of rivers and streams, other catalyst systems are under investigation as substitutes. This paper reports on the characterization of sodium salts of chloroacetic acids as catalysts for esterification crosslink finishing of cotton with 1,2,3,4-butanetetracarboxylic acid (BTCA). In this part of the study, we report on FT-IR identification of the volatile products formed on thermal decomposition of fabrics treated with BTCA and chloroacetate catalysts. HCl does not appear to be released at any temperature, and chloroform, which is a decomposition product when trichloroacetate is used as the catalyst, is formed only above curing temperatures.
机译:用多元羧酸酯化的棉织物具有出色的平滑干燥性能,并具有良好的强度保持性。用无机磷酸,尤其是次磷酸钠一水合物(SHP)的催化剂可获得最佳结果。但是,由于SHP相当昂贵,并且有人担心精加工厂中的磷会造成河流和溪流的污染,因此正在研究其他催化剂体系作为替代品。本文报道了氯乙酸钠盐作为棉与1,2,3,4-丁烷四羧酸(BTCA)进行酯化交联整理的催化剂的表征。在研究的这一部分中,我们报告了FT-IR鉴定由BTCA和氯乙酸酯催化剂处理过的织物热分解形成的挥发性产物。似乎在任何温度下都不会释放出HCl,只有在固化温度以上才能形成氯仿(当使用三氯乙酸酯作为催化剂时会分解的产物)。

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