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Investigation on the Catalytic Behavior of Alkali Metals and Alkaline Earth Metals on the Biomass Pyrolysis Assisted with Real-Time Monitoring

机译:实时监测辅助碱金属和碱土金属催化行为的研究

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摘要

In this study, the catalytic behavior of alkali metals and alkaline earth metals (AAEMs) on the pyrolysis of lignocellulosic biomass was investigated, assisted with the online monitoring of synchrotron vacuum ultraviolet photoionization mass spectrometry (SVUV-PIMS). Rice husk was pretreated by acid washing and AAEMs (Na+, K+, Ca2+, Mg2+) infusion before pyrolysis. Py-GC/MS and Py-SVUV-PIMS analysis were conducted at 550 degrees C. The effects of AAEMs on the distribution and the time-evolution of pyrolysis products were comprehensively discussed. With the catalysis of alkali metals, the reaction process was promoted while the duration of the whole pyrolysis process was shortened. The fragmentation followed by ring-fission of sugar units was enhanced, resulting in an increase of aldehyde, ketones, and acids. The ether bond fracture in lignin and the secondary thermal cracking of big molecule phenolics were enhanced, resulting in an increase of phenolics. Phenol and m-cresol were found partly formed by the secondary decomposition of bigger phenolic molecules or oligomers in the late pyrolysis stage. Compared with alkali metals, alkali earth metals have stronger Lewis acidity, which are more conducive to the dehydration of cellulose to form anhydrosugars as well as the secondary dehydration conversion of anhydrosugars to form other dehydrated products. Under the catalysis of alkali earth metals, most of the furfural is generated by the decomposition of hemicellulose in the early pyrolysis stage and a small part came from the secondary conversion of anhydrosugars in the late pyrolysis stage. The dehydration capacity of alkali earth metals induced the repolymerization between phenolic products, resulting in a decrease of the yield of phenolics products.
机译:在本研究中,研究了碱金属和碱土金属(AAEM)对木质纤维素生物质热解的催化作用,辅助在在线监测同步紫外线紫外线光离谱(SVUV-PIM)。在热解之前,通过酸洗和AAEM(Na +,K +,Ca2 +,Mg2 +)输注进行预处理稻壳。 PY-GC / MS和PY-SVUV-PIMS分析在550℃下进行。全面讨论了AAEM对分布和热解产物的时间演化的影响。随着碱金属的催化,促进了反应过程,同时缩短了全热解过程的持续时间。随后是糖单位环裂解的碎裂,导致醛,酮和酸增加。提高了木质素中的醚键骨折和大分子酚醛酚的二次热裂纹,导致酚类增加。发现苯酚和M-甲酚部分通过晚期热解阶段的次级分解而部分地形成了更大的酚类分子或低聚物的二次分解。与碱金属相比,碱土金属具有较强的路易斯酸度,这更有​​利于纤维素的脱水,形成硫醇的脱水,以及Anhydrookar的二次脱水转化,形成其他脱水产物。在碱土金属的催化下,大多数糠醛由早期热解阶段的半纤维素分解产生,小部分来自晚热解阶段的Anhydrougar的二次转化。碱土金属的脱水能力诱导酚类产品之间的重新聚合,导致酚类产品产量降低。

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  • 来源
    《Energy & fuels》 |2020年第10期|12654-12664|共11页
  • 作者单位

    Univ Sci & Technol China Dept Thermal Sci & Energy Engn Hefei 230026 Anhui Peoples R China;

    Univ Sci & Technol China Dept Thermal Sci & Energy Engn Hefei 230026 Anhui Peoples R China;

    Univ Sci & Technol China Dept Thermal Sci & Energy Engn Hefei 230026 Anhui Peoples R China;

    Univ Sci & Technol China Dept Thermal Sci & Energy Engn Hefei 230026 Anhui Peoples R China;

  • 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

  • 入库时间 2022-08-18 22:24:59

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