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首页> 外文期刊>Environmental Geology >A review of the synthesis and characterisation of pillared clays and related porous materials for cracking of vegetable oils to produce biofuels
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A review of the synthesis and characterisation of pillared clays and related porous materials for cracking of vegetable oils to produce biofuels

机译:用于植物油裂解生产生物燃料的带柱粘土和相关多孔材料的合成与表征研究进展

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This paper presents an overview of the modification of clay minerals by propping apart the clay layers with an inorganic complex. This expanded material is converted into a permanent two-dimensional structure, known as pillared clay or shortly PILC, by thermal treatment. The resulting material exhibits a two-dimensional porous structure with acidic properties comparable to that of zeolites. Synthetic as well as natural smectites serve as precursors for the synthesis of Al, Zr, Ti, Fe, Cr, Ga, V, Si and other pillared clays as well as mixed Fe/Al, Ga/Al, Si/Al, Zr/Al and other mixed metal pillared clays. Biofuels form an interesting renewable energy source, where these porous, catalytically active materials can play an important role in the conversion of vegetable oils, such as canola oil, into biodiesel. Transesterification of vegetable oil is currently the method of choice for conversion to biofuel. The second part of this review focuses on the catalysts and cracking reaction conditions used for the production of biofuel. A distinction has been made in three different vegetable oils as starting materials: canola oil, palm oil and sunflower oil.
机译:本文概述了通过用无机配合物撑开粘土层来改性粘土矿物的方法。通过热处理,这种膨胀的材料被转换成永久的二维结构,称为柱状粘土或简称为PILC。所得材料表现出具有与沸石相当的酸性的二维多孔结构。合成蒙脱石和天然蒙脱石是合成Al,Zr,Ti,Fe,Cr,Ga,V,Si和其他带柱粘土以及混合的Fe / Al,Ga / Al,Si / Al,Zr /铝和其他混合金属柱状粘土。生物燃料形成有趣的可再生能源,这些多孔的催化活性材料在将菜籽油(例如菜籽油)转化为生物柴油方面可以发挥重要作用。目前,植物油的酯交换反应是转化为生物燃料的选择方法。本综述的第二部分重点介绍用于生产生物燃料的催化剂和裂化反应条件。在三种不同的植物油作为原料中已作了区分:菜籽油,棕榈油和葵花籽油。

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