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Scrubbing of Syngas from MSW Pyrolysis-Volatile Re-forming Process with the Co-produced Oil to Remove Tar and Particulates

机译:用共制成的油从MSW热解 - 挥发性重新形成过程中擦洗合成气以除去焦油和颗粒

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摘要

Synthetic gas from municipal solid waste (MSW) pyrolysis or gasification is usually contaminated with tar, and its economical removal is still pursued. In this research, the volatile compounds from pyrolysis of MSW were re-formed by passing through a hot char bed to be converted into synthetic gas and re-formed pyrolysis oil (RMPO). Then RMPO was used as absorbent to remove the tar and particulates from the synthetic gas, and its performance was compared with that of soybean oil. To prevent the evaporation of light compounds during the absorption process, RMPO left from distillation at 80 and 98 °C, respectively, was used as absorbent. The mechanism for tar carrying in the synthetic gas after RMPO absorption was also explored. Research results showed that at 15 °C both RMPO and soybean oil had high absorption efficiencies of 97.13% and 98.08% for the tar and 97.36% and 98.58% for particulates, respectively, while at 45 °C the removal efficiencies of the two oils for the tar decreased but the removal efficiencies for particulates remained almost the same. In addition, it had been found that the evaporation of compounds with low boiling points from RMPO was the main reason for its low tar absorption efficiency and the lower temperature was recommended. The RMPO left from distillation showed much higher tar removal efficiency; especially after distillation at 98 °C, the remaining RMPO behaved the same as soybean oil; and its absorption efficiency for the typical light compounds including benzene, toluene, xylene, styrene, phenol, and indene reached 100%. This research shows that RMPO can be used as an alternative to vegetable oil for cheap tar and particulates removal from synthetic gas.
机译:来自城市固体废物(MSW)的合成气体热解或气化通常被焦油污染,仍然追求经济的去除。在该研究中,通过通过热炭床来重新形成来自MSW的热解的挥发性化合物,以转化为合成气和重建热解油(RMPO)。然后使用RMPO作为吸收剂以除去来自合成气体的焦油和颗粒,并将其性能与大豆油的性能进行比较。为了防止在吸收过程中蒸发光学化合物,使用80和98℃的蒸馏留下的RMPO作为吸收剂。还探讨了RMPO吸收后携带合成气体的焦油机制。研究结果表明,在15℃下,RMPO和大豆油的吸收效率高97.13%和98.08%,分别为97.36%和98.58%,而颗粒的颗粒,两种油的去除效率为45°C焦油减少,但颗粒的去除效率几乎相同。此外,已经发现,来自RMPO的低沸点的化合物蒸发是其低焦油吸收效率的主要原因,推荐较低的温度。从蒸馏留下的RMPO显示出更高的焦油清除效率;特别是在98℃下蒸馏后,剩余的RMPO与大豆油表现相同;其对典型光学化合物的吸收效率,包括苯,甲苯,二甲苯,苯乙烯,苯酚和茚的达到100%。本研究表明,RMPO可用作植物油的替代品,用于廉价焦油和颗粒物从合成气体中去除。

著录项

  • 来源
    《Energy & fuels》 |2020年第11期|14312-14320|共9页
  • 作者单位

    Thermal and Environmental Engineering Institute School of Mechanical Engineering Tongji University;

    Thermal and Environmental Engineering Institute School of Mechanical Engineering Tongji University;

    Thermal and Environmental Engineering Institute School of Mechanical Engineering Tongji University;

    Thermal and Environmental Engineering Institute School of Mechanical Engineering Tongji University;

    Thermal and Environmental Engineering Institute School of Mechanical Engineering Tongji University;

  • 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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