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Nonformaldehyde Durable Press Finishing of Cotton Fabrics by Combining Citric Acid with Polymers of Maleic Acid

机译:柠檬酸与马来酸聚合物相结合对棉织物的无甲醛持久压制成型

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摘要

In our previous research, we investigated the use of two polymers of maleic acid, i.e., the homopolymer (PMA) and the terpolymer (TPMA), for crosslinking cotton cellulose. We found that PMA and TPMA were less effective than 1,2,3,4-butanetetracarboxylic acid (BTCA) due to the low mobility of the anhydride intermediates to access the cellulosic hydroxyl during a curing process. We found that the hydroxyl of citric acid (CA) hinders its esterification with cotton cellulose, and so is less effective than 1,2,3-propanetricar-boxylic acid as a crosslinking agent for cotton. We also found that CA esterifies the anhydride intermediate of PMA or TPMA on the cotton fabric formed under curing conditions. In this research, we observed a synergistic effect by combining PMA or TPMA with CA as co-crosslinking agents for cotton fabrics. The combination of TPMA/CA is more effective than the PMA/CA combination for imparting wrinkle resistance to the finished cotton fabrics. Cottons finished with the TPMA/CA combination show superior durable press performance, good laundering durability, and high fabric strength retention. The superior performance and cost effectiveness of this new finishing system makes it feasible as a replacement for formaldehyde-based durable press finishes.
机译:在我们以前的研究中,我们研究了两种马来酸聚合物,即均聚物(PMA)和三元共聚物(TPMA),用于交联棉纤维素。我们发现PMA和TPMA的效果不如1,2,3,4-丁烷四羧酸(BTCA),这是因为酸酐中间体在固化过程中进入纤维素羟基的迁移率较低。我们发现柠檬酸(CA)的羟基阻碍了其与棉纤维素的酯化作用,因此,其效果不如1,2,3-丙烷-羧酸作为棉交联剂。我们还发现,CA使在固化条件下形成的棉织物上的PMA或TPMA的酸酐中间体发生酯化。在这项研究中,我们观察到通过将PMA或TPMA与CA用作棉织物的共交联剂,可以产生协同作用。 TPMA / CA的组合比PMA / CA的组合更有效地赋予成品棉织物抗皱性。用TPMA / CA组合整理的棉布具有卓越的耐久压榨性能,良好的耐洗性和较高的织物强度保持力。这种新型精加工系统的卓越性能和成本效益使其可替代甲醛基耐久压榨精加工。

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