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Production of a Producer Gas with High Heating Values and Less Tar from Dried Sewage Sludge through Air Gasification Using a Two-Stage Gasifier and Activated Carbon

机译:利用两级气化炉和活性炭通过空气气化从干污泥中生产具有高热值和较少焦油的生产气

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摘要

The production of sewage sludge in South Korea is continually increasing. Until now, much of the sewage sludge in the country has been disposed of by dumping it into the ocean, which the London Convention wants stopped. Therefore, new sewage sludge treatment methods should be sought. Sewage sludge can be energetically utilized through gasification, which produces combustible gases such as H_2, CO, and CH_4. During the gasification of a biomass, however, a large amount of tar is also formed. In this paper we report the results of the experiments that were conducted on the air gasification of dried sewage sludge in a newly developed two-stage gasifier. In such experiments, activated carbon was applied to reduce the tar components of the producer gas. The total amount of tar that was reduced was 6-fold when activated carbon was used in the upper reactor of the gasifier. The effects of the reaction conditions, such as the reaction temperature and the equivalence ratio, on the gas composition were also investigated. The producer gas was analyzed using gas chromatographs and a GC-MS system. The producer gases (inclusive of N_2) that were obtained with the application of activated carbon had high hydrogen contents (24 vol %), and their lower heating values amounted to 11.6 MJ/Nm~3 (Nm~3 = normal cubic meter). The use of activated carbon led to a strong reduction of tar in the producer gases. In each of the experiments with activated carbon, the tar content of the producer gas was found to be below 10 mg/Nm~3. At this tar level, the producer gas seems to be appropriate for use as a fuel gas in internal combustion engines.
机译:韩国污水污泥的产量正在不断增加。到现在为止,该国的大部分污泥已经通过将其倾倒入海洋而得到处置,《伦敦公约》希望将其停止。因此,应寻求新的污水污泥处理方法。污水污泥可通过气化进行能源利用,产生可燃气体,例如H_2,CO和CH_4。但是,在生物质的气化过程中,还会形成大量的焦油。在本文中,我们报告了在新开发的两级气化炉中对干燥污水污泥进行空气气化的实验结果。在此类实验中,使用了活性炭以减少生产气中的焦油成分。当在气化炉的上部反应器中使用活性炭时,减少的焦油总量为6倍。还研究了反应条件如反应温度和当量比对气体组成的影响。使用气相色谱仪和GC-MS系统分析了产生气。使用活性炭获得的废气(含N_2)具有较高的氢含量(24%体积),其较低的发热量为11.6 MJ / Nm〜3(Nm〜3 =正常立方米)。活性炭的使用大大降低了生产气体中的焦油含量。在每个使用活性炭的实验中,发现生产气中的焦油含量低于10 mg / Nm〜3。在此焦油水平下,生产气似乎适合用作内燃机的燃料气。

著录项

  • 来源
    《Energy & fuels》 |2009年第3期|3268-3276|共9页
  • 作者单位

    Faculty of Environmental Engineering, University of Seoul, 90 Jeonnong-Dong, Dongdaemun-Gu, Seoul 130-743, Republic of Korea;

    Faculty of Environmental Engineering, University of Seoul, 90 Jeonnong-Dong, Dongdaemun-Gu, Seoul 130-743, Republic of Korea;

    Faculty of Environmental Engineering, University of Seoul, 90 Jeonnong-Dong, Dongdaemun-Gu, Seoul 130-743, Republic of Korea;

  • 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
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  • 入库时间 2022-08-18 00:42:16

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