首页> 外文期刊>The Journal of Chemical Thermodynamics >Isobaric (vapour plus liquid) equilibria of binary systems containing butyl acetate for the separation of methoxy aromatic compounds (anisole and guaiacol) from biomass fast pyrolysis oil
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Isobaric (vapour plus liquid) equilibria of binary systems containing butyl acetate for the separation of methoxy aromatic compounds (anisole and guaiacol) from biomass fast pyrolysis oil

机译:含乙酸丁酯的二元系统的等压(蒸气加液体)平衡,用于从生物质快速裂解油中分离甲氧基芳族化合物(苯甲醚和愈创木酚)

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摘要

Developing value-added chemicals from pyrolysis oil has been gaining increasing attention. Thus effective separation and purification of the pyrolysis oil are important and the phase equilibrium data are essential for the design and simulation of the processes. In this study, isobaric vapour-liquid equilibrium (VLE) for the two binary mixtures (butyl acetate + anisole) and (butyl acetate + guaiacol) have been determined at 101.33 kPa, a knowledge of which is essential for the separation of methoxy aromatic compounds (anisole and guaiacol) from biomass fast pyrolysis oil using butyl acetate as a solvent. All the experimental values were confirmed to be thermodynamically consistent using the van Ness method. The NRTL, UNIQUAC, and Wilson activity coefficient models were applied to regress the experimental values. The calculated results agreed well with the measured values. Furthermore, the results were calculated by the UNIFAC (Do) method (modified UNIFAC model) in which aromatic methoxyl is treated as a group (ACOCH(3)). The new interaction parameter (ACOCH(3)-CH3COO) was obtained and proved to be reliable. Based on the preceding results, a feasible separation process for the ternary mixture (butyl acetate + anisole + guaiacol) has been designed to obtain the required products. (C) 2015 Elsevier Ltd. All rights reserved.
机译:从热解油中开发增值化学品受到越来越多的关注。因此,有效分离和纯化热解油非常重要,并且相平衡数据对于工艺的设计和仿真至关重要。在这项研究中,确定了两种二元混合物(乙酸丁酯+茴香醚)和(乙酸丁酯+愈创木酚)的等压蒸气-液体平衡(VLE),这一知识对于分离甲氧基芳族化合物至关重要(生物质快速裂解油中的乙酸(茴香醚和愈创木酚)),使用乙酸丁酯作为溶剂。使用van Ness方法确认所有实验值在热力学上均一致。 NRTL,UNIQUAC和Wilson活度系数模型用于回归实验值。计算结果与测量值非常吻合。此外,通过将芳族甲氧基作为一个组(ACOCH(3))处理的UNIFAC(Do)方法(改进的UNIFAC模型)计算结果。获得了新的相互作用参数(ACOCH(3)-CH3COO),并证明了它的可靠性。根据上述结果,设计了一种可行的三元混合物(乙酸丁酯+茴香醚+愈创木酚)分离方法,以获得所需的产品。 (C)2015 Elsevier Ltd.保留所有权利。

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