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Emissions of SO2, NOx, CO2, and HCl from Co-firing of coals with raw and torrefied biomass fuels

机译:煤与生的和焙制的生物质燃料共同燃烧产生的SO2,NOx,CO2和HCl排放

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摘要

This work examined acid gas emissions of sulfur dioxide, nitrogen oxide, carbon dioxide, and hydrogen chloride from co-firing biomass (corn straw and rice husk) with either a high-sulfur bituminous coal or a low-sulfur sub-bituminous coal. Pulverized neat coals, neat biomass, either raw or torrefied, and 50-50 wt% blends thereof were introduced to a laboratory-scale electrically-heated drop-tube furnace (DTF), operated at a gas temperature of 1350 K, and experienced high heating rates. Emissions from the combustion of the fuels in air were measured at the furnace effluent. Coal particles were in the range of 75-90 mu m and biomass particles in the range of 90-150 mu m. Results revealed that blending of both coals with raw and torrefied biomass drastically reduced the coal's SO2 and NOx emission yields to values that were below those predicted by linear interpolation of the corresponding emission yields of the two neat fuels. The SO2 emission yields from torrefied biomass were lower than those of their raw biomass precursors due to their lower sulfur contents. Similarly to the emission yields, the SO2 emission factors (based on the energy content of each sample) from the blends of coal with torrefied biomass were also lower than the blends of coal with raw biomass. NOx emission yields from neat torrefied biomass were mildly higher than those from raw biomass, as the latter had higher nitrogen content per unit mass. There was no discernible trend in NOx emissions from the blends based on their nitrogen contents. HCl emission from torrefied corn straw was lower than that from its raw precursor, as the former had a lower chlorine content. The HCl emission yields from the blends of corn straw with coal were much higher than those from neat coal combustion. Finally, the HCl emission yield from blends of the high-sulfur coal with corn straw were higher than those from the blends of the same biomass with the low-sulfur coal.
机译:这项工作检查了与高硫烟煤或低硫亚烟煤共烧生物质(玉米秸秆和稻壳)产生的酸性气体排放的二氧化硫,氮氧化物,二氧化碳和氯化氢。将粉状的纯煤,纯净的生物质(原料或焙烧的原料)及其50-50%(重量)的混合物引入实验室规模的电加热滴管炉(DTF),在1350 K的气体温度下运行,并经历加热速率。在炉子废气中测量了空气中燃料燃烧产生的排放。煤颗粒在75-90μm的范围内,而生物质颗粒在90-150μm的范围内。结果表明,将两种煤炭与生的和焙烧的生物质混合后,煤炭的SO2和NOx排放量大大降低,低于通过线性插值两种纯净燃料的相应排放量预测的值。烘焙过的生物质的二氧化硫排放量低于其原始生物质前体的排放量,因为它们的硫含量较低。与排放量相似,煤与焙烧过的生物质混合物的SO2排放因子(基于每个样品的能量含量)也低于煤与原始生物质的混合物。纯净烘焙过的生物质的NOx排放量略高于原始生物质,因为后者每单位质量的氮含量更高。根据混合物中的氮含量,NOx排放量没有明显的趋势。烘焙过的玉米秸秆的HCl排放量低于其原始原料的HCl排放量,因为前者的氯含量较低。玉米秸秆与煤的混合物的HCl排放量要比纯煤燃烧的高得多。最后,高硫煤与玉米秸秆混合物的HCl排放量高于相同生物量与低硫煤混合物的HCl排放量。

著录项

  • 来源
    《Fuel》 |2018年第1期|363-374|共12页
  • 作者单位

    Northeastern Univ, Mech & Ind Engn Dept, Boston, MA 02115 USA;

    Shandong Univ, Inst Thermal Sci & Technol, Jinan 250061, Shandong, Peoples R China|Harbin Inst Technol, Sch Energy Sci & Engn, Harbin 150001, Heilongjiang, Peoples R China;

    Northeastern Univ, Mech & Ind Engn Dept, Boston, MA 02115 USA;

    Northeastern Univ, Mech & Ind Engn Dept, Boston, MA 02115 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Coal-biomass blends; Raw and torrefied biomass; Pollutant emissions; SO2; NOx; CO2; HCl;

    机译:煤-生物质混合气;原料和焙烧生物质;污染物排放;SO2;NOx;CO2;HCl;

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