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Optimization of methanol crystallization for highly efficient separation of palmitic acid from palm fatty acid mixture using response surface methodology

机译:使用响应面法优化甲醇结晶以从棕榈脂肪酸混合物中高效分离棕榈酸

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The objective of the current study was to develop parameters for the separation of palmitic acid (PA) from a crude palm oil saturated fatty acid (SFAs) mixture by using the methanol crystallization method. The conditions of methanol crystallization were optimized by the response surface methodology (RSM) with the D-optimal design. The procedure of developing the solvent crystallization method was based on various different parameters. The fatty acid composition was carried out using a gas chromatography flame ionization detector (GC-FID) as fatty acid methyl esters. The highest percentage of SFAs was more than 96% with the percentage yield of 87.5% under the optimal conditions of fatty acids-to-methanol ratio of 1: 20 (w/v), the crystallization temperature of -15 °C, and the crystallization time of 24 hours, respectively. The composition of separated SFAs in the solid fraction contains 96.7% of palmitic acid (C 16:0 ) as a dominant component and 3.3% of stearic acid (C 18:0 ). The results showed that utilizing methanol as a crystallization solvent is recommended because of its high efficiency, low cost, stability, availability, comparative ease of recovery and its ability to form needle-like crystals which have good filtering and washing characteristics.
机译:本研究的目的是通过甲醇结晶法开发从棕榈油饱和脂肪酸(SFA)混合物中分离棕榈酸(PA)的参数。甲醇的结晶条件通过响应面法(RSM)和D优化设计进行了优化。溶剂结晶方法的开发过程基于各种不同的参数。使用气相色谱火焰离子化检测器(GC-FID)作为脂肪酸甲酯进行脂肪酸组成。在脂肪酸与甲醇的最佳比例为1:20(w / v),结晶温度为-15°C,且结晶温度为-1的最佳条件下,SFA的最高百分比超过96%,产率为87.5%。结晶时间分别为24小时。固体部分中分离出的SFA的组成包含96.7%的棕榈酸(C 16:0)作为主要成分和3.3%的硬脂酸(C 18:0)。结果表明,推荐使用甲醇作为结晶溶剂,因为其效率高,成本低,稳定性,可利用性,相对容易回收并且具有形成具有良好过滤和洗涤特性的针状晶体的能力。

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