首页> 外文期刊>LWT-Food Science & Technology >Performance of two immobilized lipases for interesterification between canola oil and fully-hydrogenated canola oil under supercritical carbon dioxide.
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Performance of two immobilized lipases for interesterification between canola oil and fully-hydrogenated canola oil under supercritical carbon dioxide.

机译:在超临界二氧化碳下,两种固定化脂肪酶在低芥酸菜子油和完全氢化的低芥酸菜子油之间进行酯交换的性能。

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摘要

The performance and stability of Lipozyme RM IM and TL IM for the interesterification between canola oil and fully-hydrogenated canola oil (FHCO) in the presence of SCCO2 were studied using a high pressure batch stirred reactor at 65 degrees C/17.5 MPa. The influence of exposure time (4, 8, and 12 h) in SCCO2 and pressurization/depressurization cycles of up to 12 times on the enzyme's resultant activity were studied. There was no significant difference (p>0.05) in the performance of the two enzymes over reaction time, reaching a constant degree of interesterification of about 23% after 2 h. Although FE-SEM images illustrated some morphological changes on the surface of the enzymes after 4 cycles of 7 h each, similar degrees of interesterification were achieved after each cycle. However, the amount of reaction intermediates decreased by 50-60% in the product obtained by using SCCO2-treated enzymes after 12 pressurization/depressurization cycles compared to untreated enzymes, while there were no significant changes in the conformational and morphological structure of the treated enzymes based on FTIR and FE-SEM analysis. Findings enhance our understanding of enzymatic conversions of lipids under high pressure CO2, targeting production of base-stock for zero-trans margarines.
机译:使用高压间歇搅拌反应器,在SCCO 2 存在下研究了Lipozyme RM IM和TL IM在低芥酸菜子油和全氢化低芥酸菜子油(FHCO)之间进行酯交换的性能和稳定性。 C / 17.5 MPa。研究了SCCO 2 中的暴露时间(4、8和12 h)以及最多12次的加压/减压循环对酶合成活性的影响。两种酶的性能在反应时间内没有显着差异(p> 0.05),在2 h后达到约23%的恒定酯交换率。尽管FE-SEM图像显示了每个7小时的4个循环后酶表面的一些形态变化,但每个循环后均实现了相似的酯交换度。然而,与未经处理的酶相比,在经过12次加压/降压循环后,使用SCCO 2 处理的酶获得的产物中反应中间体的数量减少了50-60%,而在处理过程中没有明显变化。基于FTIR和FE-SEM分析的处理过的酶的构象和形态结构。这些发现增强了我们对高压CO 2 下脂质酶促转化的理解,其目标是生产零反人造黄油的基础原料。

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