Application of Phosphonium- and Choline Chloride Based Deep Eutectic Solvents as Catalyst for Emulsifier Production from Low Quality Oil Assisted by Microwave Irradiation

Miranda Amiroh Sulaiman, S. Zullaikah, Hoo Peng Yong, A. Quitain
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Abstract

Monoglycerides (MAG) and Diglycerides (DAG) have wide applications in the food, pharmaceutical and cosmetic industries. Despite the economic competitiveness of producing this type of emulsifier from vegetable oils, the increasing demand for products with high nutritional value makes certain types of healthy oils such as rice bran oil (RBO) a potential raw material for high quality fats to serve this growing market. However, the high free fatty acids (FFA) and RBO content which is insoluble in acetone make it difficult to process and is categorized as a low-quality oil, causing RBO to be only used as biodiesel feedstock. Enzymatic catalytic route for glycerolysis of vegetable oil offers milder operating conditions and higher product selectivity (MAG) but it has high production costs and long processing time. In this study, biodegradable catalysts were used, namely deep eutectic solvents (DES) based on phosponium and choline chloride for glycerolysis of dewaxed/degummed RBO (DDRBO) assisted with microwave irradiation. Effects of different types of DES catalysts (phosphonium and choline chloride based DES) on DES-catalyzed glycerolysis of low quality oil will be evaluated using 5%wt of DES, 300 W(150°C) for about 15 minutes. Out of the four DESs used, DES [TBAB][PTSAM] and DES [ChCl][AcAd] both showed outstanding catalytic performance. Especially [ChCl][AcAd] as a reaction catalyst for DDRBO glycerolysis showed the best catalytic activity, and high selectivity for the formation of monoglycerides (MG). Meanwhile [TBAB][PTSAM] showed high selectivity (92.57%) for diglyceride (DG) formation.
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应用膦基和氯化胆碱深共晶溶剂作为催化剂,在微波辐照辅助下从低质油中生产乳化剂
单甘油酯 (MAG) 和双甘油酯 (DAG) 在食品、制药和化妆品行业有着广泛的应用。尽管从植物油中生产这类乳化剂具有经济竞争力,但人们对高营养价值产品的需求不断增长,使得米糠油(RBO)等某些类型的健康油成为生产优质油脂的潜在原料,以满足这一不断增长的市场需求。然而,高游离脂肪酸(FFA)和不溶于丙酮的米糠油含量使其难以加工,被归类为低质油,导致米糠油只能用作生物柴油原料。利用酶催化路线对植物油进行甘油分解可提供更温和的操作条件和更高的产品选择性(MAG),但其生产成本高、加工时间长。本研究使用了生物可降解催化剂,即基于磷酸盐和氯化胆碱的深共晶溶剂(DES),在微波辐照辅助下用于脱蜡/脱胶 RBO(DDRBO)的甘油分解。在使用 5%重量的 DES、300 W(150°C)、约 15 分钟的条件下,将评估不同类型的 DES 催化剂(基于磷和氯化胆碱的 DES)对 DES 催化低质油甘油分解的影响。在使用的四种 DES 中,DES [TBAB][PTSAM]和 DES [ChCl][AcAd] 均表现出优异的催化性能。尤其是[ChCl][AcAd]作为DDRBO甘油分解反应催化剂,其催化活性最好,对单甘油酯(MG)的生成具有很高的选择性。同时,[TBAB][PTSAM]对二甘油酯(DG)的生成具有较高的选择性(92.57%)。
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