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首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Demonstration of catalytic properties of de-inking sludge char as a carbon based sacrificial catalyst
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Demonstration of catalytic properties of de-inking sludge char as a carbon based sacrificial catalyst

机译:演示脱墨污泥炭作为碳基牺牲催化剂的催化性能

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摘要

De-inking sludge (DIS) is generated as a waste stream from secondary fibre paper mills during the de-inking stage of the paper pulping process; in order to ensure end of waste to landfill an alternative valorisation route is required for this waste. At the same time, an inexpensive sacrificial catalyst is essential to achieve the techno-economic feasibility of biomass gasification and pyrolysis. The present work explores the potential of DIS char as a catalyst using a 2 kg/h Thermo-Catalytic Reforming (TCR (R)) system, which involves intermediate pyrolysis combined with a unique integrated catalytic reforming step. Wood was used for the TCR catalytic experiments with a DIS char to biomass ratio (wt.%) of 0.3:1 and 0.65:1. Results have shown that hydrogen relative volumes and syngas yields, are positively correlated with the increase in DIS char to wood ratio. Average hydrogen relative volumes of 28.30 vol.% and syngas yields of 47.64 wt.% were achieved. Organic liquid yields were significantly reduced in favour of higher syngas yields, implying the suitability of DIS char as a tar reduction catalyst in gasification or pyrolysis. The influence of TCR DIS char is less profound on the chemical distribution in the organic phase of bio-oil; a reduction on PAHs from 38.82 % to 26.70 % though was determined with the use of DIS char, according to the relative abundance peak areas from the GC-MS chromatograms. The oxygen content of bio-oil was significantly reduced due to cracking of higher molecular weight organics.
机译:在纸浆制浆过程的脱墨阶段,二次纤维造纸厂的废料流会产生脱墨污泥(DIS)。为了确保废物的最终填埋,需要为此废物选择替代的增值途径。同时,廉价的牺牲催化剂对于实现生物质气化和热解的技术经济可行性至关重要。本工作探索使用2 kg / h热催化重整(TCR(R))系统的DIS炭作为催化剂的潜力,该系统涉及中间热解结合独特的集成催化重整步骤。木材用于TCR催化实验,DIS炭与生物质的比率(重量%)为0.3:1和0.65:1。结果表明,氢的相对体积和合成气产率与DIS炭与木材比的增加呈正相关。平均氢相对体积为28.30体积%,合成气产率为47.64重量%。有机液体的收率大大降低,有利于更高的合成气收率,这表明DIS炭适合作为气化或热解中的焦油还原催化剂。 TCR DIS炭对生物油有机相中化学分布的影响较小。根据DIS-char的测定,根据GC-MS色谱图的相对丰度峰面积,PAHs从38.82%降低到26.70%。由于高分子量有机物的裂解,生物油中的氧含量大大降低。

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  • 来源
    《Journal of Analytical & Applied Pyrolysis》 |2020年第3期|104773.1-104773.12|共12页
  • 作者

  • 作者单位

    Univ Birmingham Sch Chem Engn Birmingham B15 2TT W Midlands England;

    Univ Birmingham Sch Chem Engn Birmingham B15 2TT W Midlands England|Fraunhofer UMSICHT Fraunhofer Inst Environm Safety & Energy Technol Marhutte 1 D-92237 Sulzbach Rosenberg Germany|Friedrich Alexander Univ Erlangen Nuremberg Schlosspl 4 D-91054 Erlangen Germany;

  • 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

    Bioenergy; Paper industry; De-inking sludge; Pyrolysis; Char; Catalyst;

    机译:生物能源造纸工业;脱墨污泥;热解;字符催化剂;

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