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Influence of AlCl_3 and oxidant catalysts on hydrogen production from the supercritical water gasification of dewatered sewage sludge and model compounds

机译:AlCl_3和氧化催化剂对脱水污泥超临界水气化氢生产的影响及模型化合物

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摘要

Hydrogen has attracted significant attention as a clean energy source. Supercritical water gasification (SCWG) technology can produce hydrogen-rich gas while also disposing of sludge. The hydrogen yield from the SCWG of sludge is greatly increased when catalyzed by AlCl3. In this paper, a combined catalyst based on AlCl3 was proposed to further increase the hydrogen yield of SCWG of dewatered sewage sludge (DSS). Analysis of the products from catalytic gasified of DSS and its model compounds were used to propose a catalytic mechanism and reaction pathway of the catalytic SCWG of DSS. Among the combined catalysts used for the SCWG of DSS, 10 wt% AlCl3-H2O2 (mass ratio 8:2) had the best hydrogen production effect, and the hydrogen yield reached 8.88 mol/kg organic matter. This was 14% higher than when catalyzed by 10 wt% AlCl3. During catalysis with AlCl3, Al3+ reacted with OH- in water and precipitated as Al(OH)3, which produced an acidic environment in the liquid product. Al(OH)3 dehydrated to form an AlO(OH) and deposited in the solid product. A small amount of H2O2 promoted the steam reforming reaction of organic matter in DSS, which increased the hydrogen yield. H2O2 further promoted the hydrogen yield in an acidic environment. The catalytic effect of AlCl3 was unaffected by H2O2. The H+ generated by AlCl3 during catalysis promoted H2O2 to further depolymerized organic matter (such as humic substances) in DSS, so that AlCl3-H2O2 catalyzed the SCWG of DSS to further increase the hydrogen yield. The order of hydrogen yield catalyzed by AlCl3 -H2O2 was guaiacol humic acid glycerol alanine glucose. Compared with AlCl3, AlCl3-H2O2 reduced the hydrogen yield of glucose by nearly 20% and increased the hydrogen yield of humic acid by about 17% (25.81 mol/kg feed). (c) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.commentSuperscript/Subscript Available/comment
机译:氢引起了清洁能源的显着关注。超临界水气化(SCWG)技术可以生产富含氢气的同时处理污泥。当通过AlCl3催化,污泥Scwg的氢屈服大大增加。本文提出了一种基于AlCl 3的组合催化剂,以进一步提高脱水污水污泥(DSS)的SCWG的氢产率。通过DSS的催化气化分析DSS和其模型化合物的产品用于提出DSS催化SCG的催化机制和反应途径。用于DSS的SCWG的合并催化剂中,10wt%AlCl 3-H 2 O 2(质量比8:2)具有最佳的氢生产效果,氢率达到8.88mol / kg有机物。这比10wt%AlCl3催化时的14%高。在用AlCl3的催化期间,Al3 +与OH-在水中反应并作为Al(OH)3沉淀,其在液体产品中产生酸性环境。 Al(OH)3脱水以形成AlO(OH)并沉积在固体产物中。少量H 2 O 2促进了DSS中有机物质的蒸汽重整反应,从而增加了氢屈服。 H 2 O 2进一步促进了酸性环境中的氢屈服。 AlCl3的催化作用不受H 2 O 2的影响。在催化期间AlCl 3产生的H +促进H 2 O 2在DSS中进一步解聚有机物质(例如腐殖质),使得AlCl3-H 2 O 2催化DSS的SCW以进一步提高氢屈服。 AlCl3-H 2 O 2催化的氢氢屈服的顺序是愈菌醇&腐殖酸&甘油>丙氨酸&葡萄糖。与AlCl3相比,AlCl3-H 2 O 2将葡萄糖的氢产率降低了近20%,并将腐殖酸的氢产率升高约17%(25.81mol / kg饲料)。 (c)2021氢能出版物LLC。由elestvier有限公司出版。保留所有权利。&评论&上标/下标可用& /评论

著录项

  • 来源
    《International journal of hydrogen energy》 |2021年第61期|31262-31274|共13页
  • 作者单位

    Hefei Univ Technol Sch Civil Engn Hefei 230009 Peoples R China;

    Hefei Univ Technol Sch Civil Engn Hefei 230009 Peoples R China|Anhui Prov Engn Lab Rural Water Environm & Resour Hefei 230009 Peoples R China|Anhui Prov Key Lab Ind Wastewater & Environm Trea Hefei 230024 Peoples R China;

    Hefei Univ Technol Sch Civil Engn Hefei 230009 Peoples R China;

    Hefei Univ Technol Sch Civil Engn Hefei 230009 Peoples R China;

    Hefei Univ Technol Sch Civil Engn Hefei 230009 Peoples R China;

    Hefei Univ Technol Sch Mech Engn Hefei 230009 Peoples R China;

    Hefei Univ Technol Sch Civil Engn Hefei 230009 Peoples R China|Anhui Prov Engn Lab Rural Water Environm & Resour Hefei 230009 Peoples R China|Anhui Prov Key Lab Ind Wastewater & Environm Trea Hefei 230024 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

    Hydrogen; Supercritical water gasification; Dewatered sewage sludge; Combined catalyst;

    机译:氢;超临界水气化;脱水污水污泥;组合催化剂;

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