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Multi-scale simulation of the 1,3-butadiene extraction separation process with an ionic liquid additive

机译:离子液体添加剂对1,3-丁二烯萃取分离过程的多尺度模拟

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A multi-scale simulation method is proposed to enable screening of ionic liquids (ILs) as entrainers in extractive distillation. The 1,3-butadiene production process with acetonitrile (ACN) was chosen as a research case to validate the feasibility of the methodology. Ab initio calculations were first carried out to further understand the influence of ionic liquids on the selectivity of ACN and the solubility of C4 fractions in [C_nMIM][PF6](n = 2-8), [C2MIM][X] (X = BF4~-, Cl~-, PF6~-, Br~-), by investigating the microstructure and intermolecular interaction in the mixture of C4 fractions and several selected ionic liquids. It was found that the selectivity of the ionic liquid is determined by both its polarity and hydrogen-bonding ability. Based on the analysis, a suitable ionic liquid was chosen. With the ab initio calculation, a priori prediction of thermophysical data of the IL-containing system was performed with COSMO-RS. The calculation revealed that the selectivity of the extractive solvent was increased by an average of 3.64% after adding [C2MIM][PF6]. With above calculations, an improved ACN extraction distillation process using ILs as an entrainer was proposed, and a configuration for the new process was constructed. Based on the established thermodynamic models which have considered the properties from the molecular structure of ILs, process simulation was performed to obtain the process parameters which are important for the new process design. The simulation results indicated that the temperatures at the bottom of the extractive distillation column with the ionic liquid as an additive are lowered by an average of 3.1 °C, which is significant for inhibition of polymerization. We show that the ACN consumption using this process can be lowered by 24%, and the energy consumption can likewise be lowered by 6.62%.
机译:提出了一种多尺度模拟方法,以筛选离子液体(ILs)作为萃取蒸馏中的夹带剂。以乙腈(ACN)的1,3-丁二烯生产工艺为研究案例,以验证该方法的可行性。首先进行了从头算的计算,以进一步了解离子液体对ACN的选择性和[C_nMIM] [PF6](n = 2-8),[C2MIM] [X](X =通过研究C4馏分和几种选定的离子液体的混合物中的微观结构和分子间的相互作用,确定BF4〜-,Cl〜-,PF6-〜,Br〜-)。已经发现,离子液体的选择性由其极性和氢键结合能力决定。基于该分析,选择合适的离子液体。通过从头算起,使用COSMO-RS对含IL的系统的热物理数据进行了先验预测。计算表明,加入[C2MIM] [PF6]后,萃取溶剂的选择性平均提高了3.64%。通过以上计算,提出了一种使用ILs作为夹带剂的改进的ACN萃取蒸馏工艺,并构造了新工艺的配置。基于已建立的热力学模型,该模型考虑了离子液体的分子结构性质,进行了工艺模拟以获得对新工艺设计至关重要的工艺参数。模拟结果表明,以离子液体为添加剂的萃取蒸馏塔底部温度平均降低了3.1°C,这对于抑制聚合反应非常重要。我们表明,使用此过程可以减少24%的ACN消耗,并且同样可以减少6.62%的能耗。

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