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Hydroupgrading of Bio-Oil Over PtMg/KIT-6 Catalysts

机译:PTMG / KIT-6催化剂上的生物油升温

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The objective of this study is to evaluate the catalytic potential of PtMg/Al-KIT-6 during the hydroupgrading of a mixture composed of C-15-C-18 alkane as a model compound of bio-oil obtained by a hydrodeoxygenation of palm oil. Al-KIT-6 was prepared through a post-alumination method using KIT-6, after which platinum and magnesium precursors were impregnated onto the synthesized Al-KIT-6. PtMg/Al-KIT-6 catalysts were shown to have a well-arranged mesoporous structure, a large surface area, and a large pore size. The jet-fuel yield (55-59%) in the hydroupgrading of the long-chain n-alkane mixture over PtMg/Al-KIT-6 catalysts was much higher than that over the PtMg/KIT-6 catalyst, which could be ascribed to the higher number of acid sites of the PtMg/Al-KIT-6 catalysts. The highest isomer selectivity of the PtMg/Al-KIT-6(20) catalyst can be attributed to the strong acidity as well as the abundance of acid sites. PtMg/Al-KIT-6 catalysts can be effective catalysts for producing jet fuel through the hydroupgrading of bio-oil.
机译:本研究的目的是评估PTMG / Al-kit-6期间PTMG / Al-kit-6的催化潜力在HydoupGrading由C-15-C-18烷烃组成的混合物中,作为通过棕榈油的加氢脱氧所获得的生物油的模型化合物。通过使用试剂盒-6的纸浆方法制备Al-kit -6,之后将铂和镁前体浸渍到合成的Al-kit-6上。 PTMG / Al-kit -6催化剂被示出为具有良好的布置的中孔结构,大表面积和大的孔径。在PTMG / Al-kit-6催化剂上的长链N-烷烃混合物的Hydourousgrading中的射流燃料产率(55-59%)远高于PTMG / kit-6催化剂,这可以归因于PTMG / kit-6催化剂到PTMG / Al-kit-6催化剂的酸位点的较高。 PTMG / Al-kit-6(20)催化剂的最高异构体选择性可归因于强酸性以及酸位的丰度。 PTMG / Al-kit -6催化剂可以是通过氢化生物油的氢化燃料产生喷射燃料的有效催化剂。

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