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首页> 外文期刊>Separation and Purification Technology >Separation of free fatty acids from deodorizer distillates using choline hydrogen carbonate and supercritical carbon dioxide
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Separation of free fatty acids from deodorizer distillates using choline hydrogen carbonate and supercritical carbon dioxide

机译:使用胆碱碳酸氢盐和超临界二氧化碳从脱臭剂馏出物中分离游离脂肪酸

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摘要

One of the main problems of deodorizer distillates is the difficulty in separating free carboxylic fatty acids (FFA) from the remaining added-value components, such as squalene. A two-step novel strategy for the valorization of olive oil deodorizer distillate (OODD) is presented, based on the use of choline hydrogen carbonate and supercritical carbon dioxide (scCO2). In the first step, the FFA present in OODD were neutralized with choline hydrogen carbonate to form choline carboxylates. The choline carboxylates obtained are of interest to the cosmetic industry. Due to their ionic character, they are insoluble in scCO2. Therefore in the second step, the reaction mixture was subjected to extraction with scCO2 at 15 MPa, 313 K and a gas flow rate of 2 ml min~(-1), yielding an extract with a maximum FFA content of ca. 3% (w/w). A valorization supply chain of OODD is proposed.
机译:除臭剂馏出物的主要问题之一是难以从剩余的增值组分,例如角鲨烯中分离出游离羧酸脂肪酸(FFA)。基于胆碱碳酸氢盐和超临界二氧化碳(scCO2)的使用,提出了一种用于橄榄油除臭剂馏出物(OODD)增值的两步新策略。第一步,用胆碱碳酸氢盐中和OODD中的FFA,形成胆碱羧酸盐。所获得的胆碱羧酸盐是化妆品工业所关注的。由于其离子特性,它们不溶于scCO2。因此,在第二步骤中,将反应混合物在15MPa,313K和2ml min-1(-1)的气体流速下用scCO 2进行萃取,得到的最大FFA含量为约1。 3%(w / w)。提出了OODD的价格供应链。

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