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Production of purified glycerol using sequential desalination and extraction of crude glycerol obtained during trans-esterification of Crotalaria juncea oil

机译:使用连续脱盐法生产纯甘油并提取猪屎豆油酯交换过程中获得的粗甘油

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摘要

Crude glycerol, produced as a by-product of catalytic methanolysis of Crotalaria juncea oil, was first separated from the methyl esters, then purified and analysed using GCMS. Impurities like soap, free fatty acids and fatty acid methyl esters are mainly present in the crude glycerol. A novel purification sequence, using acidification, neutralization, solvent extraction, decolourisation and finally pressure filtration through a membrane, was applied. Neutralization was carried out with four strong concentrated inorganic acids, namely phosphoric acid, sulphuric acid, hydrochloric acid, perchloric acid and acetic acid (organic). Neutralization produced potassium phosphate, potassium bi-sulphate, potassium chloride and potassium acetate, which were separated afterwards. A trade-off between common-ion, solubility and buffering effect is observed. Effects of various process parameters were optimized by Response Surface Methodology (RSM) using a Central Composite Design (CCD). The optimum condition for a 90.4% pure glycerol was estimated to have been attained at a pH of 3.26 and an adsorbent quantity of 0.933 gm with phosphoric acid (0.43 N). (C) 2016 Elsevier Ltd. All rights reserved.
机译:首先从甲基酯中分离出作为猪屎豆油催化甲醇分解的副产物的粗制甘油,然后将其纯化并使用GCMS分析。诸如肥皂,游离脂肪酸和脂肪酸甲酯之类的杂质主要存在于粗制甘油中。应用了一种新的纯化程序,该过程使用酸化,中和,溶剂萃取,脱色以及最后通过膜的压力过滤。用四种强浓无机酸中和,即磷酸,硫酸,盐酸,高氯酸和乙酸(有机)。中和产生磷酸钾,硫酸氢钾,氯化钾和乙酸钾,然后分离。观察到在普通离子,溶解度和缓冲效果之间进行权衡。使用中央复合设计(CCD)通过响应表面方法(RSM)优化了各种工艺参数的效果。估计在3.26的pH值和0.933 gm的磷酸(0.43 N)吸附量下,可获得90.4%纯甘油的最佳条件。 (C)2016 Elsevier Ltd.保留所有权利。

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