首页> 外文期刊>European food research and technology =: Zeitschrift fur Lebensmittel-Untersuchung und -Forschung. A >Elimination of 3-MCPD fatty acid esters and glycidyl esters during palm oil hydrogenation and wet fractionation
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Elimination of 3-MCPD fatty acid esters and glycidyl esters during palm oil hydrogenation and wet fractionation

机译:在棕榈油氢化和湿分级期间消除3-MCPD脂肪酸酯和缩水甘油酯

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摘要

Palm oil is the vegetable oil refined and modified in the largest amount. In this study, we present the effect of wet fractionation and hydrogenation of RBD palm oil on the removal of 3-MCPD and glycidyl esters. Fractionated palmstearins had significantly decreased contents of 3-MCPD esters (71-74%) and glycidyl esters (21-26%), whereas top olein contained the highest levels of processing-induced contaminants accompanied by polar compounds. Exhaustive hydrogenation conditions caused rapid degradation of 3-MCPD esters (51-70%) in high melting palm oil products. Reduction of glycidyl esters (1-42%) was dependent on the type of nickel catalyst. The effect of iodine value drop on the contaminant degradation was shown to be linear. The combined action of dry-reduced, supported, 22% Ni and Raney nickel catalysts was found to be an optimal. Adsorptive bleaching and deodorization of hydrogenated palm stearin impacted particularly repeated formation of glycidyl esters up to 1.01-1.76 mg/kg, while 3-MCPD esters remained under the input RBD palm oil level. The mechanism of the catalyst action was investigated with glycidyl-d(5) palmitate, 3-MCPD-d(5)-1,2-dipalmitate. They were transformed into non-carcinogenic and non-genotoxic products by hydrogenolysis and deoxygenation reactions.
机译:棕榈油是植物油,以最大的量改进和改性。在这项研究中,我们介绍了RBD棕榈油湿法分馏和氢化对3-MCPD和缩水甘油基酯的影响。分馏的棕榈蛋白含量显着降低了3-MCPD酯(71-74%)和缩水甘油酯(21-26%),而顶部油蛋白含有最高水平的加工诱导的污染物伴随着极性化合物。详尽的氢化条件引起了高熔棕榈油产品中3-MCPD酯(51-70%)的快速降解。缩水甘油基酯的还原(1-42%)取决于镍催化剂的类型。显示碘值下降对污染物降解的影响是线性的。发现干燥,负载,22%Ni和阮内镍催化剂的组合作用是最佳的。氢化棕榈茎的吸附漂白和除臭,含有高达1.01-1.76mg / kg的缩水甘油酯的特别重复地层,而3-MCPD酯在输入的RBD棕榈油水平下。研究了催化剂作用的机制,用甘二酰基-D(5)棕榈酸酯,3-MCPD-D(5)-1,2-二硫酸酯研究。将它们通过氢解和脱氧反应转化为非致癌和非遗传毒性产物。

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