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Study of pyrite transformation during coal samples heated in CO_2 atmosphere

机译:CO_2大气中加热煤样中黄铁矿转化的研究

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摘要

Pyrite transformation in two coals heated in CO2 was investigated. It was found that the pyrite experienced two visibility DTG peaks at temperature above 840 degrees C in CO2. It may be due to the pyrite decomposed products further reacting with CO2 to form iron oxides, sulfur oxide and CO as temperature increased. There are two main parts during the coal-pyrite blends heated to 1300 degrees C in CO2, which are the main pyrolysis part and the main gasification part, respectively. It shown that the coal decomposition processes did influence the pyrite transformation behaviors. During the main pyrolysis part, two DTG peaks were significantly observed related to the devolatilization of acid-washed coal and the pyrite pyrolysis desulfurization, respectively. The pyrite in coal-pyrite blends decomposed at lower temperature than the pure pyrite. The decomposition temperature of pyrite in coal-pyrite blends are decreased as the pyrite content in blends decreased in the main pyrolysis part. The flue gas analysis shows that, H2S is the main sulfur-containing gaseous product in the main pyrolysis part, SO2 and CO are the major gas products in the main gasification part of the coal-pyrite blends. During the main gasification process, the SO2 and CO release peaks move to high temperature zone as the pyrite content decreased. The ashes from the fix-bed reactor were also analyzed. It was shown that the iron oxide (magnetite) may be formed at temperature as low as 600 degrees C in the coal-pyrite blends. At higher temperature (main gasification part), it suggested the pyrite in coal-pyrite blends may be transformed together with char gasification and the co-transformation temperature is different with the coal type.
机译:研究了二氧化碳加热两种煤中的黄铁矿转化。发现黄铁矿在CO 2中高于840℃的温度下经历了两个可见性DTG峰。它可能是由于硫铁矿分解产物,进一步与CO 2反应形成氧化铁,氧化硫和CO随温度的增加。在煤吡钛矿共混物中加热至1300℃的二氧化碳中有两种主要部分,分别是主要热解零件和主要气化部分。结果表明,煤分解过程确实影响了黄铁矿转化行为。在主要热解部分期间,显着观察到两种DTG峰与酸洗煤的脱挥发和脱钛矿热解脱硫的脱挥发。煤吡钛矿中的黄铁矿在较低的温度下分解比纯硫铁矿。随着主要热解零件中的共混物中的硫铁矿含量降低,煤 - 黄铁矿共混物中的硫铁矿的分解温度降低。烟道气分析表明,H 2 S是主要热解零件中的主要含硫气态产物,SO2和CO是煤 - 黄铁矿共混物的主要气化部分中的主要气体产品。在主要气化过程中,随着黄铁矿含量降低,SO2和CO释放峰移动到高温区。还分析了固定床反应器的灰烬。结果表明,氧化铁(磁铁矿)可以在煤 - 黄铁矿混合物中以低至600℃的温度形成。在较高的温度(主要气化部分)下,它表明煤中的黄铁矿中的混合物可以与炭气化一起转化,并且共转化温度与煤型不同。

著录项

  • 来源
    《Fuel》 |2021年第15期|120269.1-120269.10|共10页
  • 作者单位

    Jianghan Univ Hubei Key Lab Ind Fume & Dust Pollut Control 8 Sanjiaohu Rd Wuhan 430056 Hubei Peoples R China;

    Jianghan Univ Hubei Key Lab Ind Fume & Dust Pollut Control 8 Sanjiaohu Rd Wuhan 430056 Hubei Peoples R China;

    Jianghan Univ Hubei Key Lab Ind Fume & Dust Pollut Control 8 Sanjiaohu Rd Wuhan 430056 Hubei Peoples R China;

    Huazhong Univ Sci & Technol State Key Lab Coal Combust 1037 Luoyu Rd 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pyrite; Co-transformation; H2S, SO2, CO; Iron oxides;

    机译:黄铁矿;共转化;H2S;SO2;CO;氧化铁;
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