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Review of Mid- to High-Temperature Sulfur Sorbents for Desulfurization of Biomass- and Coal-derived Syngas

机译:用于生物质和煤衍生的合成气脱硫的中高温硫吸收剂的综述

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摘要

This review examines state-of-the-art mid- and high-temperature sulfur sorbents that remove hydrogen sulfide (H_2S) from syngas generated from coal gasification and may be applicable for use with biomassderived syngas. Biomass feedstocks contain low percentages of protein-derived sulfur that is converted primarily to H_2S, as well as small amounts of carbonyl sulfide (COS) and organosulfur compounds during pyrolysis and gasification. These sulfur species must be removed from the raw syngas before it is used for downstream fuel synthesis or power generation. Several types of sorbents based on zinc, copper, iron, calcium, manganese, and ceria have been developed over the last two decades that are capable of removing H_2S from dry coal-derived syngas at mid- to high-temperature ranges. Further improvement is necessary to develop materials more suitable for desulfurization of biomass-derived syngas because of its hydrocarbon, tar, and potentially high steam content, which presents different challenges as compared to desulfurization of coal-derived syngas.
机译:这篇综述研究了最新的中高温硫吸附剂,该吸附剂可从煤气化产生的合成气中去除硫化氢(H_2S),并可能适用于生物质衍生的合成气。生物质原料包含低百分比的蛋白质衍生的硫(在热解和气化过程中主要转化为H_2S)以及少量的羰基硫(COS)和有机硫化合物。在用于下游燃料合成或发电之前,必须从粗合成气中除去这些硫。在过去的二十年中,已经开发了几种类型的基于锌,铜,铁,钙,锰和二氧化铈的吸附剂,它们能够在中高温范围内从干煤衍生的合成气中去除H_2S。由于碳氢化合物,焦油和潜在的高蒸汽含量,需要开发更适合于生物质衍生的合成气脱硫的材料,与煤炭衍生的合成气脱硫相比,这提出了不同的挑战。

著录项

  • 来源
    《Energy & fuels》 |2009年第6期|5291-5307|共17页
  • 作者单位

    National Bioenergy Center, National Renewable Energy Laboratory, 1617 Cole Blvd., MS 3322 Golden, Colorado 80401;

    National Bioenergy Center, National Renewable Energy Laboratory, 1617 Cole Blvd., MS 3322 Golden, Colorado 80401;

    National Bioenergy Center, National Renewable Energy Laboratory, 1617 Cole Blvd., MS 3322 Golden, Colorado 80401;

  • 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 00:42:20

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