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Release Behaviors of Arsenic in Fine Particles Generated from a Typical High-Arsenic Coal at a High Temperature

机译:典型的高砷煤在高温下产生的细颗粒中砷的释放行为

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摘要

To make an accurate assessment on transformation behaviors of arsenic in coal at a high temperature, a typical high-arsenic coal collected from southwest China has been chosen in the study and a series of high-temperature experiments in different atmospheres have been conducted with the help of a lab-scale drop-tube furnace. Fine particulate matter were collected by a low-pressure impactor, for obtaining their mass size distributions and further quantifying for arsenic distributions and speciation in fine particles of different sizes. The results indicated that the bleeding ratios of arsenic in air combustion, CO2 gasification, and N-2 pyrolysis were 85, 65, and 45%, respectively, at 1300 degrees C. The ratio was found to remain relatively constant when the temperature increased from 1200 to 1400 degrees C. Organically associated arsenic would be more inclined to vaporize in N-2 pyrolysis, while both organic and inorganic associated arsenic would vaporize in. CO2 gasification and air combustion. Pyrite associated arsenic would vaporize together with sulfur in pyrite inclusions. The decomposition of pyrite followed the principle of an unreacted core model and was mostly controlled by the surface sulfur vapor pressure. Mass size distributions of fine particulate matter generated from coal gasification presented a bimodal distribution, and two major peaks appeared at 0.4 and 5 mu m. Particles in the size range of 5 mu m were presented as a round shape with pores and cracks on the surface, while particles in the size range of 0.4 mu m were confirmed to be soot. Arsenic was obviously enriched in fine particles with a size of around 0.1-0.2 mu m in both combustion and gasification. The major speciation of arsenic identified in fine particles generated from coal combustion was As2O5 and Ca-3(AsO4)(2), while that in fine particles generated from coal gasification was As2O5, As, AsO, and Ca-3(AsO4)(2).
机译:为了准确评估煤中砷的转化行为,本研究选择了典型的从中国西南地区采集的高砷​​煤,并在不同气氛下进行了一系列高温实验。实验室规模的滴管式炉。用低压冲击器收集细颗粒物,以获得其质量尺寸分布,并进一步量化不同尺寸细颗粒中砷的分布和形态。结果表明,在1300摄氏度时,空气燃烧,CO2气化和N-2热解过程中的砷放气率分别为85、65和45%。当温度从30℃升高时,该比率保持相对恒定。在1200至1400摄氏度之间。有机缔合的砷更倾向于在N-2热解中汽化,而有机缔合的和无机缔合的砷都将在CO 2气化和空气燃烧中汽化。黄铁矿伴生的砷会与硫黄铁矿夹杂物中的硫一起蒸发。黄铁矿的分解遵循未反应核模型的原理,并且主要由表面硫蒸气压控制。煤气化产生的细颗粒物的质量尺寸分布呈双峰分布,在0.4和5μm处出现两个主峰。粒径范围为5μm的颗粒呈圆形,表面具有孔和裂纹,而粒径范围为0.4μm的颗粒被确认为烟灰。在燃烧和气化过程中,砷明显富集了约0.1-0.2微米大小的细颗粒。煤燃烧产生的细颗粒中砷的主要形态为As2O5和Ca-3(AsO4)(2),而煤气化产生的细颗粒中砷的主要形态为As2O5,As,AsO和Ca-3(AsO4)( 2)。

著录项

  • 来源
    《Energy & fuels》 |2016年第8期|6201-6209|共9页
  • 作者单位

    Huazhong Univ Sci & Technol, State Key Lab Coal Combust, Wuhan 430074, Hubei, Peoples R China;

    Univ Alberta, Dept Chem & Mat Engn, Edmonton, AB T6G 2V4, Canada;

    Huazhong Univ Sci & Technol, State Key Lab Coal Combust, Wuhan 430074, Hubei, Peoples R China;

    Huazhong Univ Sci & Technol, State Key Lab Coal Combust, Wuhan 430074, Hubei, Peoples R China;

  • 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
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