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作 者:李春利[1,2] 董立会 马帅明 姜挺 闫磊[1] LI Chun-li DONG Li-hui MA Shuai-ming JIANG Ting YAN Lei(Hebei University of Technology, Tianjin 300130, China National-Local Joint Engineering Laboratory for Energy Conservation of Chemical Process Integration and Resources Utilization, Tianjin 300130, China)
机构地区:[1]河北工业大学,天津300130 [2]化工节能过程集成与资源利用国家地方联合工程实验室,天津300130
出 处:《现代化工》2017年第10期197-200,共4页Modern Chemical Industry
基 金:河北省重点研发计划项目(16964502D);河北省重点基础研究项目(16214505D)
摘 要:针对反应精馏中部分物系存在反应物与生成物相对挥发度较小、难以分离的问题,提出共沸-反应精馏隔壁塔结构。以酯化法制备乙酸乙酯为研究对象,对共沸-反应精馏隔壁塔的操作性能进行了分析。在搭建的1套反应精馏隔壁塔实验装置内进行了相应的实验研究,并用Aspen Plus进行了模拟,模拟结果与实验结果一致性良好;对共沸剂用量、液相分配比、塔顶回流比以及原料乙酸质量分数等因素的影响进行了模拟研究;对共沸-反应精馏隔壁塔进行了节能分析。与传统反应精馏相比,共沸-反应精馏隔壁塔可实现重组分乙酸和中间组分水的清晰分离,有效避免中间组分的返混,提高热力学效率。The relative volatility between the reactant and the product is close to 1 for some mixtures,so they are hard to separate clearly by reactive distillation. The azeotropic-reactive distillation dividing wall column structure is proposed to solve such difficulties. Taking the synthesis of ethyl acetate with the esterifying method as study object,the operational performance of azeotropic-reactive dividing wall column is analyzed. An azeotropic-reactive dividing wall column experimental equipment is built up.The synthesis of ethyl acetate is studied through experiment in this equipment and also simulated by Aspen Plus.The results of simulation agree with the experiment ones very well. The influences of the amount of azeotropic agent,liquid phase split ratio,reflux ratio and the concentration of acetic acid in feedstock are simulated by Aspen Plus. The energy saving analysis is carried out for the azeotropic-reactive distillation dividing wall column.Compared with the traditional reactive distillation,the azeotropic-reactive dividing wall column can achieve clear separation between the heavy component acetic acid and intermediate component water,avoid the back-mixing of the intermediate components effectively,and improve thermodynamic efficiency.
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