首页> 外文期刊>Journal of the American Oil Chemists' Society >Decolorization of rice bran oil using modified kaolin.
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Decolorization of rice bran oil using modified kaolin.

机译:米糠油用改性高岭土脱色。

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Measurements show that kaolin from Ranong, obtained from a major deposit in southern Thailand, can be modified to produce a material that is suitable for decolorizing rice bran oil. Its sorption properties were determined after various physical and chemical modifications of this kaolin. Physical modification was achieved by grinding via a planetary ball mill (300 rpm for 1 h), and this was followed by chemical treatment using sulfuric or oxalic acids. The optimum decolorization capacity (approx. 80%) was achieved by using 2M sulfuric acid. With oxalic acid, the best results were obtained with 0.7M, but these were slightly lower than those obtained with 2M sulfuric acid. Compared to the original kaolin sample, the specific surface area of the modified clay increased from approx. 13 to approx. 244 cm2 g--1, and the total pore volume from 0.06 to 0.43 cm3 g--1. The pore size distribution curves show that most pores are in the mesoporous region with their diameters between 3.0-4.5 nm, and are suitable for adsorption of pigment molecules that are present in rice bran oil. Desorption and spectroscopic studies suggest that both electrostatic and chemical processes are involved in the interaction between pigments and active sites on the clay surface
机译:测量表明,从拉廊购自泰国南部主要矿床的高岭土可以进行改性,以生产适合使米糠油脱色的材料。在对该高岭土进行各种物理和化学修饰后,确定其吸附性能。物理改性是通过行星式球磨机(300 rpm进行1 h)研磨来实现的,然后用硫酸或草酸进行化学处理。使用2M硫酸可获得最佳的脱色能力(约80%)。使用草酸,使用0.7M可获得最佳结果,但略低于使用2M硫酸获得的结果。与原始的高岭土样品相比,改性粘土的比表面积从大约1增加到大约2。 13至约244 cm 2 g -1 ,总孔体积从0.06到0.43 cm 3 g -1 。孔径分布曲线表明,大多数孔位于中孔区域,其直径在3.0-4.5 nm之间,并且适合吸附米糠油中存在的色素分子。解吸和光谱研究表明,静电和化学过程都参与了颜料与粘土表面活性位之间的相互作用

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