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CO_2乳化液强化置换水合物中CH_4的作用研究进展 被引量:9
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作者 张伟 王赵 +2 位作者 李文强 李文雍 贺端威 《天然气化工—C1化学与化工》 CAS CSCD 北大核心 2009年第1期59-63,共5页
综述了天然气水合物中甲烷的置换反应的研究进展,比较了传统置换法与CO2置换法的优缺点,论述了CO2置换法尤其是CO2乳化液法的优越性。CO2乳化液具有更高的反应温度以及更好的传导率和扩散性,在置换反应中起到了强化作用,增加了CH4从水... 综述了天然气水合物中甲烷的置换反应的研究进展,比较了传统置换法与CO2置换法的优缺点,论述了CO2置换法尤其是CO2乳化液法的优越性。CO2乳化液具有更高的反应温度以及更好的传导率和扩散性,在置换反应中起到了强化作用,增加了CH4从水合物中的释放,提高了置换的反应速率,同时乳化液的热可以使热源增强,从而使置换反应得到进一步强化。 展开更多
关键词 天然气水合物 二氧化碳乳化液 强化置换甲烷
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Pickering interfacial biocatalysis with enhanced diffusion processes for CO_(2) mineralization 被引量:1
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作者 Boyu Zhang Jiafu Shi +5 位作者 Yang Zhao a Han Wang Ziyi Chu Yu Chen Zhenhua Wu Zhongyi Jiang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第4期1184-1191,共8页
Utilization of carbon dioxide(CO_(2))has become a crucial and anticipated solution to address environmental and ecological issues.Enzymes such as carbonic anhydrase(CA)can efficiently convert CO_(2) into various platf... Utilization of carbon dioxide(CO_(2))has become a crucial and anticipated solution to address environmental and ecological issues.Enzymes such as carbonic anhydrase(CA)can efficiently convert CO_(2) into various platform chemicals under ambient conditions,which offers a promising way for CO_(2) utilization.Herein,we constructed a Pickering interfacial biocatalytic system(PIBS)stabilized by CA‐embedded MOFs(ZIF‐8 and ZIF‐L)for CO_(2) mineralization.Through structure engineering of MOFs and incorporation of Pickering emulsion,the internal and external diffusion processes of CO_(2) during the enzymatic mineralization were greatly intensified.When CO_(2) was ventilated at a flow rate of 50 mL min^(–1) for 1 h,the pH value of PIBS dropped from~8.00 to~6.50,while the average pH value of free system only dropped to~7.15,indicating that the initial reaction rate of CO_(2) mineralization of PIBS is nearly twice that of the free system.After the 8^(th) cycle reaction,PIBS can still produce more than 9.8 mg of CaCO_(3) in 5 min,realizing efficient and continuous mineralization of CO_(2). 展开更多
关键词 Carbon dioxide conversion Carbonic anhydrase Pickering emulsion Metal‐organic frameworks Diffusion intensification
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