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铋复合盐在乙炔氢氯化反应中的催化作用 被引量:45
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作者 魏小波 魏飞 +3 位作者 骞伟中 罗国华 师海波 金涌 《过程工程学报》 EI CAS CSCD 北大核心 2008年第6期1218-1222,共5页
采用浸渍法制备了以SiO2为载体、铋、铜等金属的氯化物和磷酸盐为活性组分的无汞催化剂,并测试了该催化剂在乙炔氢氯化反应中的活性.结果表明,催化剂中加入PO43-可以显著提高催化活性,其中Bi和Cu的复合磷酸盐比其他催化剂有更好的活性,... 采用浸渍法制备了以SiO2为载体、铋、铜等金属的氯化物和磷酸盐为活性组分的无汞催化剂,并测试了该催化剂在乙炔氢氯化反应中的活性.结果表明,催化剂中加入PO43-可以显著提高催化活性,其中Bi和Cu的复合磷酸盐比其他催化剂有更好的活性,在200℃的反应温度下,其初始反应活性为工业氯化汞催化剂的1/3,且催化剂有一定的可再生性.催化剂在反应和再生过程中存在失活,主要是由Bi的流失造成的,积炭则是另一个失活原因. 展开更多
关键词 氯乙烯 氢氯化 乙炔 磷酸铋 无汞催化剂
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Hybrid enzyme catalysts synthesized by a de novo approach for expanding biocatalysis 被引量:3
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作者 Yufei Cao Jun Ge 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第10期1625-1633,共9页
The two major challenges in industrial enzymatic catalysis are the limited number of chemical reaction types that are catalyzed by enzymes and the instability of enzymes under harsh conditions in industrial catalysis.... The two major challenges in industrial enzymatic catalysis are the limited number of chemical reaction types that are catalyzed by enzymes and the instability of enzymes under harsh conditions in industrial catalysis.Expanding enzyme catalysis to a larger substrate scope and greater variety of chemical reactions and tuning the microenvironment surrounding enzyme molecules to achieve high enzyme performance are urgently needed.In this account,we focus on our efforts using the de novo approach to synthesis hybrid enzyme catalysts that can address these two challenges and the structure-function relationship is discussed to reveal the principles of designing hybrid enzyme catalysts.We hope that this account will promote further efforts toward fundamental research and wide applications of designed enzyme hybrid catalysts for expanding biocatalysis. 展开更多
关键词 Expanding biocatalysis In situ synthesis Hybrid enzyme catalysts Structure-function relationship Rational design
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Probing the role of surface speciation of tin oxide and tin catalysts on CO_(2) electroreduction combining in situ Raman spectroscopy and reactivity investigations 被引量:1
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作者 Ming He Bingjun Xu Qi Lu 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第6期1473-1477,共5页
Electrochemical CO_(2)reduction to formate is a promising approach to store renewable electricity and utilize CO_(2).Tin oxide catalysts are efficient catalysts for this process,while the mechanisms underneath,especia... Electrochemical CO_(2)reduction to formate is a promising approach to store renewable electricity and utilize CO_(2).Tin oxide catalysts are efficient catalysts for this process,while the mechanisms underneath,especially the existence and role of oxidized tin species under CO2 electroreduction conditions remain unclear.In this work,we provide strong evidence on the presence of oxidized tin species on both SnO_(2)and Sn during CO_(2)reduction via in situ surface‐enhanced Raman spectroscopy,while in different nature.Reactivity measurements show similar activity and selectivity to formate production on SnO_(2)and Sn catalysts.Combined analysis of Raman spectra and reactivity results suggests that Sn(IV)and Sn(II)oxide species are unlikely the catalytic species in CO_(2)electroreduction to formate. 展开更多
关键词 CO2 electroreduction REACTIVITY Oxidized tin species In situ surface‐enhanced Raman spectroscopy Surface speciation
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