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An easily recoverable thermo-sensitive polyelectrolyte as draw agent for forward osmosis process 被引量:4
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作者 Yanni Wang Hairong Yu +5 位作者 Rui Xie Kuangmin Zhao Xiaojie Ju Wei Wang Zhuang Liu Liangyin Chu 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2016年第1期86-93,共8页
As a potential solution to the crises of energy and resources, forward osmosis(FO) has been limited by the development of draw agents. An ideal draw agent should be able to generate high osmotic pressure and can be ea... As a potential solution to the crises of energy and resources, forward osmosis(FO) has been limited by the development of draw agents. An ideal draw agent should be able to generate high osmotic pressure and can be easily recovered. In this study, a thermo-sensitive polyelectrolyte of poly(N-isopropylacrylamide-co-acrylic acid)(PNA)is developed as an efficient draw agent, and two easy and simple methods are proposed to effectively recover the polyelectrolytes. After adjusting the pH value of polyelectrolyte solutions to around 6.0, the polyelectrolyte can generate relatively high osmotic pressure, and induce average water fluxes of 2.09 and 2.95 L·m^(-2)·h^(-1) during12 h FO processes when the polyelectrolyte concentrations are 0.20 and 0.38 g·ml^(-1) respectively. After acidifying and heating to 70 °C, the PNA-10 polyelectrolyte can aggregate together because of hydrophobic association and separate from water, so it can be easily recovered by either simple centrifugation or gravitational sedimentation. The recovery ratios of PNA-10 polyelectrolyte in both methods are as high as 89%, and the recovered polyelectrolytes can be reused with almost the same FO performance as fresh ones. The results in this study provide valuable guidance for designing efficient and easily recoverable draw agents for FO processes. 展开更多
关键词 Forward osmosis Draw agent Thermo-sensitive polyelectrolyte Recovery method Poly(N-isopropylacrylamide-co-acrylic acid)
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基于温差结晶法的盐浴等温淬火介质回收技术
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作者 陈立东 付长智 +2 位作者 李亚靖 付宇轩 邓春岩 《金属热处理》 CAS CSCD 北大核心 2012年第4期138-140,共3页
为避免金属制件在淬火后淬火介质随废水直接排放造成硝盐的浪费及环境污染,利用温差结晶法对淬火介质进行结晶回收,采用三级水洗的方法对淬火后的工件进行清洗,并利用旋风除尘装置对淬火时的介质浮粉进行回收。结果表明,利用该技术可以... 为避免金属制件在淬火后淬火介质随废水直接排放造成硝盐的浪费及环境污染,利用温差结晶法对淬火介质进行结晶回收,采用三级水洗的方法对淬火后的工件进行清洗,并利用旋风除尘装置对淬火时的介质浮粉进行回收。结果表明,利用该技术可以最大限度地实现节水和淬火剂溶质的循环利用,使整个生产过程做到不排放废水、溶质得到90%以上回收,水的用量也减少到原来的近1/20。 展开更多
关键词 温差结晶法 淬火介质 溶质回收 三级水洗 节能环保
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