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Effect of occurrence mode of heavy metal elements in a low rank coal on volatility during pyrolysis

机译:低阶煤中重金属元素的发生方式对热解过程中挥发性的影响

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摘要

The harmful trace elements will be released during coal utilization,which can cause environment pollution and further endangering human health,especially for heavy metal elements.Compared to combustion,the release of heavy metal elements during coal pyrolysis process,as a critical initial reaction stage of combustion,has not received sufficient attention.In the present paper,a low rank coal,from Xinjiang province in China,was pyrolyzed in a fixed bed reactor from room temperature,at atmospheric pressure,with the heating rate of 10 ℃/min,and the final pyrolysis temperature was from 400 to 800 ℃ with the interval of 100 ℃.The volatility of heavy metal elements (including As,Hg,Cd and Pb) during pyrolysis process was investigated.The results showed the volatility of all heavy metal elements increased obviously with increasing temperature,and followed the sequence as Hg > Cd > As > Pb,which was mainly caused by their thermodynamic property and occurrence modes in coal.The occurrence modes of heavy metals were studied by sink-and-float test and sequential chemical extraction procedure,and it can be found that the heavy metal elements were mainly in the organic and residual states (clay minerals) in the raw coal.And most of the organic heavy metals escaped during the pyrolysis process,the remaining elements were mainly in the residual state,and the elements in Fe-Mn state also tended to remain in the char.
机译:煤炭利用过程中会释放出有害的微量元素,特别是对于重金属元素,会造成环境污染并进一步危害人体健康。与燃烧相比,煤热解过程中重金属元素的释放是关键的初始反应阶段。本文研究了一种来自新疆的低级煤,在室温,大气压,升温速率为10℃/ min的条件下,在固定床反应器中进行热解。最终热解温度为400〜800℃,间隔为100℃。研究了重金属元素(包括As,Hg,Cd,Pb)在热解过程中的挥发性。结果表明,所有重金属元素的挥发性均增加。随温度升高而明显变化,其顺序为Hg> Cd> As> Pb,其主要原因是煤的热力学性质和发生方式。通过沉浮试验和顺序化学萃取程序研究了重金属的含量,发现原煤中的重金属元素主要为有机态和残余态(粘土矿物)。重金属在热解过程中逸出,其余元素主要处于残留状态,Fe-Mn状态的元素也倾向于残留在焦炭中。

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  • 来源
    《国际煤炭科学技术学报(英文)》 |2019年第002期|235-246|共12页
  • 作者单位

    China University of Mining and Technology(Beijing), D11,Xueyuan Road, Haidian District, Beijing 100083, China;

    China University of Mining and Technology(Beijing), D11,Xueyuan Road, Haidian District, Beijing 100083, China;

    China University of Mining and Technology(Beijing), D11,Xueyuan Road, Haidian District, Beijing 100083, China;

    China University of Mining and Technology(Beijing), D11,Xueyuan Road, Haidian District, Beijing 100083, China;

    China Datang Corporation Science and Technology Research Institute, Beinong Road 2, Changping District, Beijing, China;

    School of Materials Science and Engineering, Central South University, Changsha 410083, Hunan, China;

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