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稀乙烯制乙苯丙烯解吸系统存在的问题与建议
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作者 马利杰 《化工技术与开发》 CAS 2017年第10期73-74,72,共3页
本文简述了第三代稀乙烯制乙苯工艺脱丙烯系统的流程,介绍了在生产过程中丙烯解吸系统主要遇到的问题:解吸塔顶气冷却器管束腐蚀泄漏导致富丙烯干气漏入循环水系统;解吸塔顶凝液泵容易汽蚀,操作难度大。分析了产生塔顶气冷却器腐蚀和解... 本文简述了第三代稀乙烯制乙苯工艺脱丙烯系统的流程,介绍了在生产过程中丙烯解吸系统主要遇到的问题:解吸塔顶气冷却器管束腐蚀泄漏导致富丙烯干气漏入循环水系统;解吸塔顶凝液泵容易汽蚀,操作难度大。分析了产生塔顶气冷却器腐蚀和解吸泵汽蚀的原因,提出了丙烯解吸系统操作建议和改造措施。 展开更多
关键词 稀乙烯 乙苯 丙烯解吸 腐蚀 汽蚀
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Temperature-triggered Protein Adsorption and Desorption on Temperature-responsive PNIPAAm-grafted-silica:Molecular Dynamics Simulation and Experimental Validation 被引量:2
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作者 康锴 卢滇楠 刘铮 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2012年第2期284-293,共10页
Poly(N-isopropylacrylamide)(PNIPAAm) grafted onto silica,which may be used for reverse phase chromatography(RPC),was simulated and synthesized for protein separation with temperature-triggered adsorption and desorptio... Poly(N-isopropylacrylamide)(PNIPAAm) grafted onto silica,which may be used for reverse phase chromatography(RPC),was simulated and synthesized for protein separation with temperature-triggered adsorption and desorption.Molecular dynamics simulation at an all-atom level was performed to illustrate the adsorption/desorption behavior of cytochrome c,the model protein,on PNIPAAm-grafted-silica,a temperature responsive adsorbent.At a temperature above the lower critical solution temperature(LCST),the PNIPAAm chains aggregate on the silica surface,forming a hydrophobic surface that is favorable for the hydrophobic adsorption of cytochrome c,which has a high exposure of hydrophobic patches.At temperatures below the LCST,the PNIPAAm chains stretch,forming hydrophilic surface due to hydrogen bonding between PNIPAAm and surrounding water.Desorption of cytochrome c on the PNIPAAm-grafted-silica surface occurs as a result of competition with water,which forms hydrogen bonds with the protein.The conformational transitions of both cytochrome c and PNIPAAm are monitored,providing molecular insight into this temperature-responsive RPC technique.PNIPAAm-grafted-silica beads were synthesized and used for the adsorption and desorption of cytochrome c at approximately 313 K and 290 K,respectively.The experimental results validate the molecular dynamics simulation.In comparison to conventional RPC,using temperature as a driving force for RPC reduces the risk of protein denaturation caused by exposure to chaotropic solvents.Moreover,it simplifies the separation process by avoiding the buffer exchange operations between the steps. 展开更多
关键词 reverse phase chromatography PNIPAAm-grafted-silica cytochrome c molecular dynamics simulation atom transfer radical polymerization (ATRP)
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