Solid-Liquid Equilibrium Study of Binary System Saturated Fatty Acid in Short Chain Alcohols

Dwi Ardiana Setyawardhani, Difa Aulia Majid, Rudhang Suryoadhi Suryatmoko Plawi
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Abstract

Unsaturated fatty acids are potential to be used for preventing degenerative diseases and developing brain function in babies. Separation of unsaturated fatty acids from saturated fatty acids efficiently achieved by urea complexation fractionation method. It is considered to be the simplest, most efficient, and lowest cost method. This study aimed to optimize urea complexation for increasing PUFA concentrations by determining solid-liquid equilibrium data of saturated fatty acids in short chain alcohols. In this study, there were two types of short chain alcohol, methanol and ethanol, in various concentrations (99,7%; 95%; 88%; 76% w/w) towards the solubility of saturated fatty acids, palmitic and stearic acid (PA and SA). PA and SA dissolved in various concentration of methanol and ethanol to get homogeneous solutions. When solid SFA disappeared by heating the solution, or first formed by cooling the solution, the temperature was determined as the solid-liquid equilibrium temperature. The results showed that the best composition of solvent within high solubility level is ethanol 95% and methanol 99,7% over palmitic acid because it can dissolve at room temperature and below 0.01 mole fraction.
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短链醇中饱和脂肪酸二元体系的固液平衡研究
不饱和脂肪酸具有预防退行性疾病和开发婴儿大脑功能的潜力。尿素络合分馏法能有效地从饱和脂肪酸中分离出不饱和脂肪酸。该方法被认为是最简单、最高效、成本最低的方法。本研究旨在通过确定饱和脂肪酸在短链醇中的固液平衡数据,优化脲络合法以提高 PUFA 的浓度。在这项研究中,甲醇和乙醇这两种短链醇以不同的浓度(99.7%;95%;88%;76% w/w)溶解饱和脂肪酸棕榈酸和硬脂酸(PA 和 SA)。PA 和 SA 溶解在不同浓度的甲醇和乙醇中,得到均匀的溶液。当加热溶液使固体 SFA 消失或冷却溶液使固体 SFA 首先形成时,测定温度为固液平衡温度。结果表明,在高溶解度范围内,最佳溶剂成分是 95% 的乙醇和 99.7% 的甲醇,而不是棕榈酸,因为棕榈酸可在室温下溶解,且溶解度低于 0.01 摩尔分数。
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