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Experimental and simulation of the reactive dividing wall column based on ethyl acetate synthesis 被引量:4
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作者 Jiangwei Xie Chunli Li +2 位作者 Fei Peng Lihui Dong Shuaiming Ma 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2018年第7期1468-1476,共9页
Reactive dividing wall column(RDWC) is a highly integrated unit which combines reaction distillation(RD) with dividing wall column separation technology into one shell, and it realized the chemical reaction and the se... Reactive dividing wall column(RDWC) is a highly integrated unit which combines reaction distillation(RD) with dividing wall column separation technology into one shell, and it realized the chemical reaction and the separation of multiple product fractions simultaneously. In this paper, the reaction of esterification with acetic acid and ethanol to produce ethyl acetate was used as the research system, experiments and simulations of the RDWC were carried out. This system in the traditional process mostly used the homogeneous catalyst(e.g. sulfuric acid). However, in view of the corrosion of the equipment caused by the acidity of the catalyst, we used the heterogeneous catalysts – iron exchange resins – Amberlyst15 and proposed a novel catalyst loading method. Firstly,the reliability of the model of the simulation was verified by the experimental study on the change of liquid split ratio and reflux ratio. After that, the four-column model was established in Aspen Plus to analyze the effects of the amount of azeotropic agent, reflux ratio and acetic acid concentration. Finally, for a fair comparison, the economic analysis was conducted between traditional RD column and RDWC. The results showed that RDWC can save34.7% of total operating costs and 18.5% of TAC. 展开更多
关键词 reactive dividing wall column Catalyst loading method Ethyl acetate SIMULATION Energy saving
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Reactive dividing wall column for hydrolysis of methyl acetate:Design and control 被引量:11
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作者 Lumin Li Lanyi Sun +3 位作者 Delian Yang Wang Zhong Yi Zhu Yuanyu Tian 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2016年第10期1360-1368,共9页
Reactive distillation and dividing wall column distillation are two kinds of effective separation technologies,and their integrated configuration,reactive dividing wall column(RDWC),presents attractive advantages.In t... Reactive distillation and dividing wall column distillation are two kinds of effective separation technologies,and their integrated configuration,reactive dividing wall column(RDWC),presents attractive advantages.In this study,the rigorous simulation of RDWC for methyl acetate hydrolysis is performed,and sensitivity analysis is conducted to obtain the minimum reboiler duty.Then a comparison is made between the conventional process and RDWC process,and it shows that 20.1% energy savings can be achieved by RDWC process.In addition,the dynamic characteristic of RDWC is studied and an effective control strategy is proposed.The simple PI control scheme with three temperature loops can obtain reasonable control performance and maintain products at desired purities.It is proved that this RDWC process is an energy efficiency alternative with good controllability. 展开更多
关键词 reactive dividing wall column Methyl acetate Hydrolysis Design Control
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Control of reactive dividing wall column for selective hydrogenation and separation of C3 stream 被引量:5
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作者 Xing Qian Shengkun Jia +2 位作者 Yiqing Luo Xigang Yuan Kuo-Tsong Yu 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2016年第9期1213-1228,共16页
In our previous work, the reactive dividing wall column(RDWC) was proposed and proved to be effective for selective hydrogenation and separation of C3 stream. In the present paper, the dynamics and control of the prop... In our previous work, the reactive dividing wall column(RDWC) was proposed and proved to be effective for selective hydrogenation and separation of C3 stream. In the present paper, the dynamics and control of the proposed RDWC are investigated. Four control structures including composition and temperature controls are proposed. The feed forward controllers are employed in the four control strategies to shorten the dynamic response time, reduce the maximum deviations and offer an immediate adjustment. The control structures are compared by applying them into the RDWC system with 20% disturbances in both the feed flow rate and the feed compositions, and the results are discussed. 展开更多
关键词 Process control C3 stream selective hydrogenation reactive dividing wall column
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