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Fast pyrolysis of waste pepper stem over waste FCC catalyst

机译:废辣椒茎的快速热解茎废FCC催化剂

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Fast pyrolysis of waste pepper stem was investigated using waste FCC catalyst and HY zeolite with a SiO~(2)/Al~(2)O~(3)ratio of 5.1. The pyrolysis oil obtained from the pyrolysis at 500?°C was analyzed using GC/MS. Oxygenates were converted, in particular when the catalyst dose was high, to furans and aromatics. The contents of low-molecular-mass phenolics and aromatics increased with increasing quantity of acid sites deployed. On the other hand, the content of high-molecular-mass phenolics was increased by catalysis with the biomass:catalyst ratio of 1:1, whereas it was decreased by catalysis with the biomass:catalyst ratio of 1:10. This was explained by the pathway of lignin-to-aromatics conversion: lignin → high-molecular-mass phenolics → low-molecular-mass phenolics → aromatics. Activated waste FCC catalyst showed a little weaker catalytic activity for the conversion of low-molecular-mass phenolics to aromatics than HY, leading to a higher phenolics content and a lower aromatics content. The results of this study indicate that the catalytic pyrolysis of lignin-rich biomass over waste FCC catalyst can be a promising way of recycling waste FCC catalyst for the production of high-value-added chemicals, such as furans, phenolics and aromatics.
机译:使用废FCC催化剂和具有SiO〜(2)/ Al〜(2)O〜(3)比为5.1的SiO〜(2)/ Al〜(3)比的烃酸猪的快速热解。使用GC / MS分析从500℃下热解的热解油。氧化含氧化合物,特别是当催化剂剂量高时,呋喃和芳烃。随着部署量的酸性点,低分子量酚醛酚类和芳烃的含量增加。另一方面,通过用生物质的催化剂(催化剂比为1:1)增加高分子质谱酚类含量,而通过用生物质的催化剂(催化剂比为1:10)降低。这是由木质素 - 芳烃转化术的途径解释:木质素→高分子质谱→低分子质谱酚→芳烃。活化废物FCC催化剂显示出较弱的催化活性,用于将低分子量酚醛酚转化为芳烃而不是HY,导致酚类含量较高和较低的芳烃含量。该研究的结果表明,富含木质素的生物质催化性FCC催化剂的催化热解可以是回收废FCC催化剂的有希望的方法,用于生产高附加值的化学品,例如呋喃,酚类和芳烃。

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