首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Liquid-Liquid Equilibrium of Water+2-Methoxyphenol plus Methyl Isobutyl Ketone and Water+1,2-Benzenediol plus Methyl Isobutyl Ketone at 303.15 K and 328.15 K
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Liquid-Liquid Equilibrium of Water+2-Methoxyphenol plus Methyl Isobutyl Ketone and Water+1,2-Benzenediol plus Methyl Isobutyl Ketone at 303.15 K and 328.15 K

机译:水+ 2-甲氧基苯酚的液液平衡加甲基异丁基酮和水+ 1,2-苯二硫醇加甲基异丁基酮,303.15 k和328.15 k

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摘要

Liquid-iquid equilibrium (LLE) experiments for the systems water + 2-methoxyphenol + MIBK and water + 1,2-benzenediol + MIBK were carried out at 303.15 and 328.15 K according to a procedure allowing the measurement of both the composition of the phases in equilibrium and their relative amounts. Binary LLE data of subsystems water + MIBK and water + 2-methoxyphenol were also measured, as was the solubility of 1,2-benzenediol in water. The experimental data were modeled using the NRTL activity coefficient model, with optimal energy parameters calculated from the experimental data. The NRTL model proved to be adequate in describing the LLE phase behavior of the systems investigated, and it can be used for the process design of liquid liquid extraction of these aromatic solutes from aqueous phases. MIBK proved to be an efficient extractant for 2-methoxyphenol and 1,2-benzenediol, even though the distribution factors for 2-ethoxyphenol are 4-5 times higher than those for 1,2-benzenediol. The results are relevant to the design of extraction processes aimed at recovering phenols from wastewater or aqueous phases produced in the hydrothermal conversion of biomass, such as in the case of the conversion of lignin, which is a byproduct of pulp mills and lignocellulosic bioethanol plants.
机译:系统水+ 2-甲氧基苯酚+ MIBK和水+ 1,2-苯并+ MIBK的液体-Iquid平衡(LLE)实验在303.15和328.15k下进行,根据允许测量相的阶段的组成在均衡及其相对量。还测量了子系统水+ MIBK和水+ 2-甲氧基酚的二进制淋病数据,如1,2-苯二醇在水中的溶解度。使用NRTL活性系数模型建模实验数据,具有从实验数据计算的最佳能量参数。证明NRTL模型是充分描述所研究的系统的LLE相行为,可用于从水相中的液体液萃取的过程设计。 MIBK被证明是2-甲氧基苯酚和1,2-苯二醇的有效萃取剂,即使2-乙氧基苯酚的分布因子比1,2-苯甲酸二硫醇高4-5倍。结果与旨在从生物质的水热转化中产生的废水或水相回收酚的提取方法的设计相关,例如在木质素的转化的情况下,这是牙髓磨机和木质纤维素生物乙醇植物的副产物。

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