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作 者:游遨[1] 黎彧[1] 邹训重[2] 黎柳堂 张祖伟[1] 韩敬泉[1] 冯安生[1] 林志胜[1] 黄天送[1] 萧韵琪
机构地区:[1]广东轻工职业技术学院 [2]广东药学院中药学院/药科学院
出 处:《纺织导报》2016年第11期134-134,136,137,共3页China Textile Leader
基 金:广东省高等职业院校珠江学者岗位计划资助项目(2015);广州市科技计划项目(201510010170);广东轻院珠江学者人才类项目(00A01003);广东省自然科学基金项目(2016A030313761)
摘 要:本文研究了微波协同纳米银对羽绒抗菌除臭的新工艺,通过控制单一变量法,确定了抗菌实验中最适宜辐射时间、羽绒与纳米材料最佳质量比、辐射温度、微波辐射功率等条件。在所确定的最适条件下,探讨了微波协同纳米银的最佳抗菌率。同时,进行了纳米银的回收实验,测定了多次回收的纳米材料的最佳抗菌率的变化规律。结果表明:纳米银的优化抗菌条件为微波时间5 min,纳米银与羽绒质量比3∶1,微波时温度50℃,微波功率300 W,最佳抗菌效果88.02%,新工艺最佳抗菌率随着纳米抗菌剂使用次数增加略有下降,至少可回收循环使用2次。A new down antibacterial deodorizing process by using nano-silver synthesized with the assistance o:f microwave was studied. By using the method of single variable control, the optimum conditions of the antibacterial test such as with the most suitable microwave radiation time, the best mass ratio of the nano material and down, the radiation temperature, and the radiation power were studied. Meanwhile, the experiment on recycling nano-silver was done, with which the variation of the sterilization rate of the recycled materials was discovered. The results reveal the optimum antibacterial conditions: radiation time 5 rain, the mass ratio between silver and down is 3:1, radiation temperature 50 ℃, radiation power 300 W, the best antibacterial effect is 88.02%. The best antibacterial rate fell slightly with the increasing number of use ofnanometer antibacterial agent. The nano-silver can be regenerated repeatedly at least two times.
分 类 号:TS195.5[轻工技术与工程—纺织化学与染整工程]
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