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首页> 外文期刊>Journal of the American Oil Chemists' Society >CONVERSION OF OILS TO MONOGLYCERIDES BY GLYCEROLYSIS IN SUPERCRITICAL CARBON DIOXIDE MEDIA
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CONVERSION OF OILS TO MONOGLYCERIDES BY GLYCEROLYSIS IN SUPERCRITICAL CARBON DIOXIDE MEDIA

机译:在超临界二氧化碳介质中通过甘油水解将油转化为单甘油酯

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摘要

Glycerolysis of soybean oil was conducted in a supercritical carbon dioxide (SC-CO2) atmosphere to produce monoglycerides (MG) in a stirred autoclave at 150-250 degrees C, over a pressure range of 20.7-62.1 MPa, at glycerol/oil molar ratios between 15-25, and water concentrations of 0-8% (wt% of glycerol). MG, di-, triglyceride, and free fatty acid (FFA) composition of the reaction mixture as a function of time was analyzed by supercritical fluid chromatography. Glycerolysis did not occur at 150 degrees C but proceeded to a limited extent at 200 degrees C within 4 h reaction time; however, it did proceed rapidly at 250 degrees C. At 250 degrees C, MG formation decreased significantly (P < 0.05) with pressure and increased with glycerol/oil ratio and water concentration. A maximum MC content of 49.2% was achieved at 250 degrees C, 20.7 MPa, a glycerol/oil ratio of 25 and 4% water after 4 h. These conditions also resulted in the formation of 14% FFA. Conversions of other oils (peanut, corn, canola, and cottonseed) were also attempted. Soybean and cottonseed oil yielded the highest and lowest conversion to MG, respectively. Conducting this industrially important reaction in SC-CO2 atmosphere offered numerous advantages, compared to conventional alkali-catalyzed glycerolysis, including elimination of the alkali catalyst, production of a lighter color and less odor, and ease of separation of the CO2 from the reaction products. [References: 27]
机译:在超临界二氧化碳(SC-CO2)气氛中进行大豆油的甘油分解,在150-250摄氏度,压力范围20.7-62.1 MPa,甘油/油摩尔比的条件下,在搅拌高压釜中生产甘油单酸酯(MG​​)。在15-25之间,并且水浓度为0-8%(甘油的wt%)。通过超临界流体色谱法分析了反应混合物的MG,甘油二酯,甘油三酯和游离脂肪酸(FFA)随时间的变化。糖酵解在150摄氏度没有发生,但在4小时的反应时间内在200摄氏度进行了有限程度的分解。但是,它确实在250摄氏度下迅速进行。在250摄氏度下,MG的形成随压力显着减少(P <0.05),并且随着甘油/油比和水浓度的增加而增加。 4小时后,在250摄氏度,20.7兆帕,25的甘油/油比和4%的水的条件下,最大MC含量达到49.2%。这些条件还导致形成14%FFA。还尝试了其他油(花生,玉米,低芥酸菜子和棉籽)的转化。大豆和棉籽油分别转化为MG的最高和最低。与常规的碱催化的甘油分解相比,在SC-CO2气氛中进行这一工业上重要的反应具有许多优势,包括消除了碱催化剂,产生了较浅的颜色和较少的气味,以及易于从反应产物中分离出CO2。 [参考:27]

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