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作 者:张新宇 柴涛 吴凯 张行 赵伟 Zhang Xinyu;Chai Tao;Wu Kai;Zhang Xing;Zhao Wei(School of Environment and Safety Engineering,North University of China,Taiyuan 030051,Shanxi,China)
机构地区:[1]中北大学环境与安全工程学院,太原山西030051
出 处:《中国胶粘剂》2020年第12期11-16,共6页China Adhesives
基 金:山西省研究生教育创新项目(2019SY456);中北大学研究生科技立项(20191659)。
摘 要:为实现HTPB基胶粘剂体系的生物降解,以其为唯一碳源,从活性污泥和污染的土壤中分离筛选出各一降解菌株。研究结果表明:两菌株分别属于气微菌属和节杆菌属,其最佳培养条件为:可溶性淀粉为碳源、牛肉膏为氮源、培养基初始pH为7,Ca^2+、Na^+、Mg^2+等金属离子有利于菌株生长。该菌株能够通过分泌水解、蛋白酶、尿素酶和酯酶破坏聚氨酯中的羰基、脲键和醚键,45 d材料的失重率大于12%;生物降解后,材料的热失重主要来源于HTPB基软段的热解。In order to realize the biodegradation of HTPB based adhesive system,each biodegradable bacterium was isolated from activated sludge and contaminated soil with HTPB as the sole carbon source.The research results showed that the two strains belonged to Aeromicrobium and Arthrobacter respectively,and the optimal culture conditions were as follows:soluble starch was carbon source,beef paste was nitrogen source,initial pH of culture medium was 7,metal ions such as Ca^2+,Na^+,Mg^2+were favorable for strain growth.The strain could destroy carbonyl,urea and ether bonds in polyurethane by secreting hydrolysis,protease,urease and esterase,the weight loss rate of the material was more than 12%in 45 days.After biodegradation,the thermal weight loss of the material mainly came from the pyrolysis of HTPB based soft segment.
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