化工进展
化工進展
화공진전
CHEMICAL INDUSTRY AND ENGINEERING PROGRESS
2012年
9期
2102-2106
,共5页
郑辉东%赵素英%曾燕茹%王良恩%徐炳辉
鄭輝東%趙素英%曾燕茹%王良恩%徐炳輝
정휘동%조소영%증연여%왕량은%서병휘
“背包式”反应精馏%乙酸甲酯%水解
“揹包式”反應精餾%乙痠甲酯%水解
“배포식”반응정류%을산갑지%수해
catalytic distillation coupled with side reactor%methyl acetate%hydrolysis
采用"背包式"反应精馏深度水解乙酸甲酯,考察了工艺条件对水解率和酸水比的影响,并与传统的单塔催化精馏工艺进行了对比。结果表明:提高水酯比可以显著提高乙酸甲酯的水解率;回流进料比的增加有利于提高水解率但会增加能耗,较佳回流比为3.0左右;乙酸甲酯水解率随空速的增加而降低的速度较慢,可以适当提高空速以增加处理能力;增加固定床体积有利于酯的预水解,但是不一定有利于酯的总转化率。采用"背包式"催化精馏工艺可以实现乙酸甲酯的深度水解,且优于传统的单塔催化精馏工艺。
採用"揹包式"反應精餾深度水解乙痠甲酯,攷察瞭工藝條件對水解率和痠水比的影響,併與傳統的單塔催化精餾工藝進行瞭對比。結果錶明:提高水酯比可以顯著提高乙痠甲酯的水解率;迴流進料比的增加有利于提高水解率但會增加能耗,較佳迴流比為3.0左右;乙痠甲酯水解率隨空速的增加而降低的速度較慢,可以適噹提高空速以增加處理能力;增加固定床體積有利于酯的預水解,但是不一定有利于酯的總轉化率。採用"揹包式"催化精餾工藝可以實現乙痠甲酯的深度水解,且優于傳統的單塔催化精餾工藝。
채용"배포식"반응정류심도수해을산갑지,고찰료공예조건대수해솔화산수비적영향,병여전통적단탑최화정류공예진행료대비。결과표명:제고수지비가이현저제고을산갑지적수해솔;회류진료비적증가유리우제고수해솔단회증가능모,교가회류비위3.0좌우;을산갑지수해솔수공속적증가이강저적속도교만,가이괄당제고공속이증가처리능력;증가고정상체적유리우지적예수해,단시불일정유리우지적총전화솔。채용"배포식"최화정류공예가이실현을산갑지적심도수해,차우우전통적단탑최화정류공예。
An experimental setup of catalytic distillation coupled with a side reactor was established to hydrolyze methyl acetate with high conversion rate.The influences of operating parameters on the conversion rate and the mass ratio of acetic acid to water were investigated.This new technology was also compared with traditional single column catalytic distillation.The results showed that the molar ratio of water to methyl acetate had a great impact on the conversion rate of methyl acetate.With the increase of the volume ratio of reflux to methyl acetate feed the conversion rate of methyl acetate slowly increased and energy consumption linearly increased,and the optimum volume ratio of reflux to methyl acetate feed was 3.0.Due to a slow decrease of conversion rate of methyl acetate with the increase of space velocity,a higher space velocity would be favorable in increasing processing capacity.A bigger fixed reactor can improve the conversion rate of methyl acetate at the outlet of the reactor but is not necessarily conducive to higher total conversion rate.This new technology can realize the hydrolysis of methyl acetate with high conversion rate and is better than traditional single column catalytic distillation.