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首页> 外文期刊>Separation and Purification Technology >An energy efficient route for the dehydration of 2-Methylpropan-2-ol: Experimental investigation, modeling and process optimization
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An energy efficient route for the dehydration of 2-Methylpropan-2-ol: Experimental investigation, modeling and process optimization

机译:2-甲基丙-2-醇脱水的节能途径:实验研究,建模和工艺优化

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In the prospect of bio-refinery industries and escalating demand towards renewable energy resources, etherification of glycerol with 2-Methylpropan-2-ol (2M2P) could be a promising solution to supersede conventional petroleum derived fuel additives. However, the presence of water in 2M2P restricts its applicability as an etherifying agent to produce tert-butyl ethers of glycerol. Thus, a novel and energy efficient Saline Entrainer Extractive Distillation (SEED) process is investigated for the dehydration of 2M2P, which utilizes an organic solvent: glycerol and an inorganic salt: MgCl2, as an effectual combined entrainer. The present work exhibits a practical approach towards the design and optimization of SEED based on a suitable thermodynamic model. In this context, phase equilibrium data was determined for different binary systems in consideration. The symmetric eNRTL thermodynamic model was found to best describe the experimental data. The modeled parameters successfully demonstrated the feasibility of the proposed process in terms of ternary; 2M2P + water + glycerol and quaternary; 2M2P + water + glycerol + MgCl2 system. The preferential energetic interaction of MgCl2 with glycerol and water modifies the phase equilibrium, thereby eliminating the azeotrope of 2M2P + water system. In addition, the SEED process was successfully implemented at laboratory-scale which resulted in 99.5 wt% of 2M2P. Finally, based on process design and optimization, a reduction of 30.5% in energy, 44.7% in capital expenditures and 50% in number of stages was obtained with the use of combined entrainer as compared to glycerol as an entrainer in the dehydration process. (C) 2015 Elsevier B.V. All rights reserved.
机译:在生物炼油业的前景以及对可再生能源的需求不断增长的情况下,将甘油与2-甲基丙烷-2-醇(2M2P)醚化可能是取代常规石油衍生燃料添加剂的有前途的解决方案。然而,水在2M2P中的存在限制了其作为醚化剂生产甘油叔丁基醚的适用性。因此,研究了一种新颖,节能的盐水夹带剂萃取蒸馏(SEED)工艺,用于2M2P的脱水,该方法利用有机溶剂:甘油和无机盐:MgCl2作为有效的混合夹带剂。本工作展示了一种基于合适的热力学模型进行SEED设计和优化的实用方法。在这种情况下,针对不同的二元系统确定了相平衡数据。发现对称的eNRTL热力学模型可以最好地描述实验数据。建模参数成功地证明了三元拟议工艺的可行性。 2M2P +水+甘油和季铵盐; 2M2P +水+甘油+ MgCl2系统。 MgCl2与甘油和水的优先能量相互作用改变了相平衡,从而消除了2M2P +水系统的共沸物。另外,SEED工艺已在实验室规模成功实施,产生了99.5 wt%的2M2P。最后,根据工艺设计和优化,与甘油在脱水过程中的夹带剂相比,使用混合夹带剂可减少30.5%的能源,44.7%的资本支出和50%的阶段数。 (C)2015 Elsevier B.V.保留所有权利。

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