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In situ catalytic pyrolysis of Jatropha wastes using ZSM-5 from hydrothermal alkaline fusion of fly ash

机译:利用粉煤灰水热碱熔融制得的ZSM-5原位催化热解麻疯树废物

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摘要

In this work, ZSM-5 catalysts was successfully synthesized from fly ash via alkali fusion followed by hydrothermal treatment with the initial SiO2/Al2O3 ratios of 24 and 40 (HZSM5-FA). HZSM-5 synthesized with SiO2/Al2O3 ratios of 40 exhibited superior physical and textural properties such as higher crystallinity, larger surface area, and smaller particle size. After synthesis, the catalytic activity of HZSM5-FA with SiO2/Al2O3 ratios of 40 was investigated via fast pyrolysis of Jatropha wastes in order to upgrade the evolved vapor using Py-GC/MS technique. In addition, the ZSM-5 prepared from chemical reagents (HZSM5-CV) were evaluated for comparison. The pyrolysis temperature was set at 500 degrees C with the Jatropha wastes to catalyst ratio of 1:1-1:10. The major components from non-catalytic fast pyrolysis were acids (51%) and nitrogen containing compounds (20%). Other organic compounds were ketones, alcohols, esters, ethers, phenols and sugars. The presence of HZSM5-FA contributed to the elimination of undesirable oxygenated compounds such as fatty acids which could mitigate problem regarding acidity and instability in bio-oil. In addition, this synthesized material also remarkably improved the hydrocarbon selectivity, especially aromatic hydrocarbons. Higher catalyst contents had positive effect on the formation of aromatic hydrocarbons and tended to promote deoxygenation and denitrogenation. At high catalyst proportion (biomass to catalyst ratio of 1:10), HZSM5-FA produced the highest hydrocarbon selectivity of 97%, mainly benzene, toluene and xylene (BTX), which are valuable products due to their high heating values. Interestingly, the catalytic activity of HZSM5-FA was comparable to that of the HZSM5-CV in terms of reducing oxygenates as well as nitrogenous compounds and consequently increasing hydrocarbon compounds. Overall, HZSM-5 derived from fly ash can be economically used as a potential catalyst for pyrolysis oil upgrading applications.
机译:在这项工作中,ZSM-5催化剂是由粉煤灰经碱熔融成功合成的,然后以初始SiO2 / Al2O3为24和40(HZSM5-FA)进行水热处理。 SiO2 / Al2O3比率为40的HZSM-5合成具有优异的物理和结构特性,例如较高的结晶度,较大的表面积和较小的粒度。合成后,通过麻疯树废料的快速热解研究了SiO2 / Al2O3比为40的HZSM5-FA的催化活性,以便使用Py-GC / MS技术提高逸出的蒸气。另外,对由化学试剂(HZSM5-CV)制得的ZSM-5进行了评价。热解温度设置为500摄氏度,麻风树废物与催化剂的比例为1:1-1:10。非催化快速热解的主要成分是酸(51%)和含氮化合物(20%)。其他有机化合物是酮,醇,酯,醚,酚和糖。 HZSM5-FA的存在有助于消除不良的含氧化合物,例如脂肪酸,这可以减轻有关生物油中酸度和不稳定性的问题。另外,这种合成材料还显着提高了烃的选择性,特别是芳族烃。较高的催化剂含量对芳烃的形成具有积极作用,并倾向于促进脱氧和脱氮。在高催化剂比例下(生物质与催化剂的比例为1:10),HZSM5-FA产生的烃选择性最高为97%,主要是苯,甲苯和二甲苯(BTX),由于它们的高热值,它们是有价值的产品。有趣的是,HZSM5-FA的催化活性与HZSM5-CV的催化活性相当,在还原含氧化合物以及含氮化合物方面,因此在增加烃化合物方面。总体而言,源自粉煤灰的HZSM-5可以经济地用作热解油提质应用的潜在催化剂。

著录项

  • 来源
    《Journal of Analytical & Applied Pyrolysis》 |2019年第5期|156-166|共11页
  • 作者单位

    Natl Met & Mat Technol Ctr, Ceram Res Unit, Pathum Thani 12120, Thailand;

    Natl Met & Mat Technol Ctr, Ceram Res Unit, Pathum Thani 12120, Thailand;

    Chulalongkorn Univ, Dept Environm Engn, Fac Engn, Bangkok 10330, Thailand;

    Natl Met & Mat Technol Ctr, Ceram Res Unit, Pathum Thani 12120, Thailand;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fly ash; ZSM-5; Pyrolysis; Jatropha;

    机译:粉煤灰;ZSM-5;热解;麻风树;

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