纺织学报 ›› 2019, Vol. 40 ›› Issue (8): 101-108.doi: 10.13475/j.fzxb.20180401208
ZHANG Fan1, ZHANG Ru1, ZHOU Wenchang1, ZHOU Hui2, WANG Nanfang1()
摘要:
为解决传统高温练漂中棉针织物加工过程能耗高、纤维损伤大的问题,以N,N'-双(3-氨丙基)乙二胺和三(2-氨基乙基)胺分别和水杨醛反应生成席夫碱配体M和N,然后与铜盐反应制备金属铜配合物CuM和CuN用于棉织物低温漂白加工。借助红外光谱仪和核磁共振仪表征金属配合物的化学结构,研究CuM和CuN对双氧水的催化分解特性以及铜配合物-双氧水低温漂白工艺因素对织物白度的影响,并对比探讨了低温漂白与传统高温漂白工艺。结果表明:CuM和CuN催化双氧水(H2O2)分解反应级数为1,分解速率常数分别为0.055、0.042 min -1,远大于空白体系;采用CuN-H2O2体系在70 ℃漂白的棉织物白度为80.0%,与传统工艺相当,毛效和强力保留率优于传统工艺。
中图分类号:
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