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Low-temperature bleaching of cotton knitting fabric with H2O2/PAG system

机译:H2O2 / PAG系统的棉织物的低温漂白

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摘要

Pentaacetyl glucose (PAG) is a common and cheap intermediate and has biocompatible, nontoxic, and renewable features. PAG was investigated as a bleach activator for H2O2 in the pretreatment of gray knitting cotton fabric. The bleaching performance of the H2O2/PAG bleaching system was investigated by measuring the CIE whiteness index (WI), H2O2 decomposition rate and bursting strength. By addition of PAG, the WI and H2O2 decomposition rate increased significantly at 70 A degrees C with little damage to the strength. The effects of temperature and pH value on WI were also considered. Due to its environmental advantages, the H2O2/PAG system showed a good applied prospect. By using benzenepentacarboxylic acid as a fluorescent probe for HO center dot detection, it was found that PAG could strongly promote HO center dot generation and that the concentration of HO center dot was closely related to the WI of the fabric. On this basis, a bleaching mechanism of the H2O2/PAG system was proposed.
机译:五乙酰葡萄糖(PAG)是一种常见而廉价的中间体,具有生物相容性,无毒和可再生特征。 在预处理灰色针织棉织物的预处理中,研究了PAG作为H2O2的漂白活化剂。 通过测量CIE白度指数(Wi),H2O2分解速率和爆破强度来研究H 2 O 2 / PAG漂白系统的漂白性能。 通过添加PAG,Wi和H 2 O 2分解速率在70℃下显着增加,而强度损坏。 还考虑了温度和pH值对Wi的影响。 由于其环境优势,H2O2 / PAG系统显示出良好的应用前景。 通过使用苯磺酸羧酸作为荧光探针进行HO中心点检测,发现PAG可以强烈地促进HO中心点生成,并且HO中心点的浓度与织物的Wi密切相关。 在此基础上,提出了H2O2 / PAG系统的漂白机理。

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