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作 者:李前 韦小杰[2] 陈小鹏[2] 阳承利[2] 王琳琳[2] 周龙昌[2]
机构地区:[1]广西梧州日成林产化工股份有限公司,广西梧州543100 [2]广西大学化学化工学院,广西南宁530004
出 处:《化工学报》2010年第10期2573-2578,共6页CIESC Journal
基 金:国家自然科学基金项目(20976031;31060102);广西自然科学基金项目(0991030; 2010GXNSFA013042);梧州市科技计划项目(200901011)~~
摘 要:采用FYX-2G型高压搅拌釜,以Raney镍为催化剂,在温度423~453K、压力4.0~7.0MPa下进行松香催化加氢反应动力学的研究。利用改进搅拌器类型、提高搅拌速度、加入200#溶剂油和改变催化剂粒径的方法消除内外扩散,使反应处于化学动力学控制区,然后采集动力学数据,经对17种可能的反应机理模型进行筛选,结果表明,Raney镍催化枞酸加氢生成二氢和四氢枞酸是并行反应,最可几反应机理为:松香中的主要成分枞酸分子与催化剂表面上被吸附的氢原子进行反应,氢原子的吸附为控制步骤,生成二氢枞酸和四氢枞酸的活化能分别为47.18kJ.mol-1和106.35kJ.mol-1。The kinetics of catalytic hydrogenation of rosin on Raney nickel catalyst was investigated in a FYX-2G high-pressure agitated autoclave at 423—453K and 4.0—7.0 MPa.The external diffusion effect was eliminated by adding 200# solvent oil,increasing rotational speed and improving the type of stirrer so that the reaction was in the region under chemical kinetics control.Then kinetics data were collected.The results showed that hydrogenation of abietic-acid on Raney nickel catalyst to abietenoic-acid and abietanoec-acid is a parallel reaction.A suitable reaction mechanism was selected from 17 probable reaction mechanism models,i.e.the absorption of atomic hydrogen with reaction between atomically absorbed hydrogen on catalyst surface and the main component of rosin abietic-acid could be the controlling step.The activated energy of abietenoic-acid and abietanoec-acid were 47.18 kJ·mol-1 and 106.35 kJ·mol-1,respectively.
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