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Exergy analysis and optimization of reactive distillation column in acetic acid production process

机译:乙酸生产过程中反应蒸馏塔的漏极分析与优化

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Exergy analysis method is applied to evaluate the performance of reactive distillation (RD) column in the acetic acid production process, at which acetic acid is produced via reaction between carbon monoxide and methanol with a soluble catalyst system consisting of rhodium complex (catalyst) and methyl iodide-hydrogen iodide (promoter). In this column, desired purity of the product is obtained through reaction between methanol and hydrogen iodide. The effects of different operational parameters on the separation and the exergy efficiencies of this RD column are evaluated by sensitivity analysis, finally, the response surface methodology (RSM) method is applied for modeling and optimization of the exergy loss. The adequacy of the developed model for exergy losses in the reactive distillation column is evaluated using analysis of variances (ANOVA). The result of ANOVA study shows that the most effective operating parameters are feed stream temperature, boilup ratio, and reflux ratio. As the result of this optimization the exergy losses and energy consumption for the reactive distillation column reduced by 28% and 12% respectively. This study shows that RSM method besides the exergy concept could be an appropriate tool for optimization of complex and energy intensive reactive distillation systems.
机译:施用的分析方法应用于评估乙酸生产过程中反应性蒸馏(RD)塔的性能,在乙酸通过一氧化碳和甲醇与铑配合物(催化剂)和甲基组成的可溶性催化剂体系之间的反应产生乙酸碘化物 - 氢碘化物(启动子)。在该柱中,通过甲醇和碘化氢之间的反应获得所需纯度。通过灵敏度分析评估不同操作参数对分离和漏洞效率的影响,最后,应用响应面方法(RSM)方法用于建模和优化的漏洞损失。使用差异分析评估反应蒸馏塔中发育模型的开发模型的充分性,评价差异(ANOVA)。 ANOVA研究的结果表明,最有效的操作参数是进料流温度,培养比和回流比。由于这种优化的结果,反应蒸馏塔的出漏损耗和能耗分别降低了28%和12%。本研究表明,除了出境概念之外的RSM方法可能是用于优化复杂和能量密集型反应蒸馏系统的适当工具。

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