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作 者:樊栓狮[1] 尤莎莉 郎雪梅[1] 王燕鸿[1] 李文涛 刘元直 周政 FAN Shuanshi;YOU Shali;LANG Xuemei;WANG Yanhong;LI Wentao;LIU Yuanzhi;ZHOU Zheng(School of Chemistry and Chemical Engineering,South China University of Technology,Guangzhou 510640,Guangdong,China;Natural Gas Processing Plant of Zhongyuan Oilfield,Sinopec,Puyang 457001,Henan,China)
机构地区:[1]华南理工大学化学与化工学院,广东广州510640 [2]中国石油化工股份有限公司中原油田分公司天然气处理厂,河南濮阳457001
出 处:《化工进展》2020年第4期1211-1218,共8页Chemical Industry and Engineering Progress
基 金:国家自然科学基金重点项目(21736005);中国石油化工股份有限公司中原油田分公司天然气处理厂项目(30950012-18-ZC0613-0006)。
摘 要:开发一种低碳、高效的分离和捕获二氧化碳方法一直是缓解温室效应的关键技术。本文首先比较了现有的5种碳捕获技术,发现相较于化学吸收、深冷分离和变压吸附,水合物法和膜分离技术具有绿色环保、操作简单的优势。随后,本文以水合物法为切入点,阐述了其分离机理和强化手段。为进一步研究更加有效的新技术,通过利用水合物法的技术优势,结合膜分离的结构,提出一种更加具有发展潜力的水合物膜分离技术。然后,根据水合物膜的成膜方式将水合物膜技术分为第一、二、三代,并重点分析了每代水合物膜技术的改进手段。最后指出未来第三代水合物膜分离技术应从以下3个方面寻求突破与创新:探索合适膜载体材料;寻找合适的添加剂;优化温度、压力、流速水合分离条件。The study of a low carbon and efficient carbon dioxide separation and capture technology has been the key to mitigate the greenhouse effect.Comparing the existing five carbon capture technologies,it can be found that the hydrate method and the membrane separation technology are more environmentally friendly and simpler to operate than chemical absorption,cryogenic separation and pressure swing adsorption.In order to further develop the more potential separation and capture carbon dioxide technology,in this paper,the separation mechanism and strengthening method of hydrate method are demonstrated taking the hydrate method as breakthrough point.By utilizing the technical advantages of the hydrate method and combining the structure of membrane separation,a more promising hydrate membrane separation technology is proposed.Then,according to the formation mode of the hydrate membrane,the hydrate membrane technology is divided into the first,second and third generations,and it is discussed in detail for the improvement of each generation of the hydrate membrane technology.Finally,it is pointed out that the third generation hydrate membrane separation technology should seek breakthroughs and innovations from the following three aspects:exploring suitable membrane carrier materials;finding suitable additives;and optimizing temperature,pressure and flow rate in hydration separation.
分 类 号:TK6[动力工程及工程热物理—生物能]
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