Quantitative of Mass Transfer in Liquid-Liquid Operations of Oil-Alcohol-Glycerin Systems

Benjamim H.L. Silva, C. A. Abreu
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Abstract

The effects of mass transfer were quantified for the effective performance of mixtures between partially miscible phases, or for the promotion of their separations. To consolidate the analysis of heterogeneous liquid–liquid processes, variations in the composition of the liquid phases over the evolution of contact operations were considered, detailing the physical mechanisms involved in the mixtures of oil (soy, sunflower) and alcohol (methanol, ethanol), and in the separation between biodiesel and glycerin. Based on experimental evaluations, the average distribution coefficients for triglycerides (oil-alcohol) and glycerol (biodiesel-glycerin) were estimated at 1.31 and 1.46, and 3.42 × 10−2 and 4.06 × 10–2, for soybean and sunflower, respectively, while their mass transfer coefficients, depending on their concentration ranges in the phase, varied in orders of magnitude from 10−2 s−1 to 10–4 s−1. Including the values of the physical parameters, a heterogeneous model for the alkaline transesterification of soybean oil (methanol, ethanol, NaOH, 25°C, 40°C, 60°C, 600 rpm) was validated.
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油-醇-甘油体系液-液操作中传质的定量
质传递的影响被量化为部分可混相之间混合物的有效性能,或促进它们的分离。为了巩固对非均相液-液过程的分析,考虑了接触操作演变过程中液相组成的变化,详细说明了油(大豆、向日葵)和醇(甲醇、乙醇)混合物以及生物柴油和甘油分离过程中涉及的物理机制。根据实验评估,甘油三酯(油-醇)和甘油(生物柴油-甘油)的平均分布系数估计分别为1.31和1.46,大豆和向日葵的平均分布系数分别为3.42 × 10 - 2和4.06 × 10 - 2,而它们的传质系数,取决于它们在相中的浓度范围,从10 - 2 s - 1到10 - 4 s - 1的数量级变化。包括物理参数的值,验证了大豆油碱酯交换的非均相模型(甲醇,乙醇,NaOH, 25°C, 40°C, 60°C, 600 rpm)。
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The Use of Computational Fluid Dynamics in the Analysis of Gas-Liquid-Liquid Reactors Quantitative of Mass Transfer in Liquid-Liquid Operations of Oil-Alcohol-Glycerin Systems
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