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李家新,王文峰,陆青锋,等. 新疆地区不同岩性煤矸石重金属元素释放规律研究[J]. 煤炭科学技术,2023,51(S2):1−8. doi: 10.12438/cst.2023-0142
引用本文: 李家新,王文峰,陆青锋,等. 新疆地区不同岩性煤矸石重金属元素释放规律研究[J]. 煤炭科学技术,2023,51(S2):1−8. doi: 10.12438/cst.2023-0142
LI Jiaxin,WANG Wenfeng,LU Qingfeng,et al. Study on the release regularity of heavy metals from coal gangue with differentlithology in Xinjiang[J]. Coal Science and Technology,2023,51(S2):1−8. doi: 10.12438/cst.2023-0142
Citation: LI Jiaxin,WANG Wenfeng,LU Qingfeng,et al. Study on the release regularity of heavy metals from coal gangue with differentlithology in Xinjiang[J]. Coal Science and Technology,2023,51(S2):1−8. doi: 10.12438/cst.2023-0142

新疆地区不同岩性煤矸石重金属元素释放规律研究

Study on the release regularity of heavy metals from coal gangue with differentlithology in Xinjiang

  • 摘要: 为了解新疆地区不同岩性煤矸石重金属元素释放规律和防范重金属元素产生的环境风险,采用皮里青矿区和五彩湾矿区未风化煤矸石,通过X射线衍射、X射线荧光光谱、电感耦合等离子体质谱仪测试手段研究煤矸石淋滤过程中V、Cr、Ni、Cu、Zn、Ba、Pb、Th、U重金属元素的释放规律。结果表明:① 煤矸石的矿物组成以高岭石和石英为主,黏土岩矸石矿物组成较为复杂,黏土矿物含量高;② 新疆砂岩和黏土岩矸石重金属元素Ni、Cu、Zn、Ba含量较高,砂岩矸石Ba元素含量为291.00 μg/g,黏土岩矸石中Ba含量最高为416.05 μg/g,煤矸石样品中元素含量高淋滤后元素释放量大; ③ 煤矸石重金属元素均在淋滤前期、中期释放较多,黏土矿物吸附作用是淋滤后期黏土岩矸石元素释放浓度降低的重要原因; ④ “缩核模型”显示不同岩性煤矸石重金属元素释放是多因素耦合作用的结果。元素淋滤结果环境效应评价表明,黏土岩矸石相比砂岩矸石潜在危害性更大,长时间、多期次的淋滤造成重金属元素累积效应值得关注。

     

    Abstract: In order to understand the release law of heavy metals in coal gangue with different lithology in Xinjiang and prevent and resolve the environmental risks caused by heavy metals. In this paper, the roof and floor coal gangue of Piliqing mining area and Wucaiwan mining area were used to study the release law of V, Cr, Ni, Cu, Zn, Ba, Pb, Th and U heavy metals in the leaching process by X-ray diffraction, X-ray fluorescence spectroscopy and inductively coupled plasma mass spectrometry. The results show that: ① The mineral composition of coal gangue is mainly kaolinite and quartz. ② The contents of heavy metals Ni, Cu, Zn and Ba in sandstone and clay rock gangue in Xinjiang are high. The content of Ba in sandstone gangue is 416.05 μg/g, and the content of V in clay rock gangue is up to 247.02 μg/g. The content of most elements in coal gangue is high and the release of elements is large after leaching. ③ The adsorption of clay minerals is an important reason for the decrease of element release concentration of clay rock gangue in the later stage of leaching. ④ The ‘shrinking core model’ shows that the release of heavy metals from coal gangue with different lithology is the result of multi-factor coupling. The environmental effect evaluation of element leaching results shows that clay rock gangue is more harmful than sandstone gangue, and the cumulative effect of heavy metals caused by long-term and multi-period leaching is worthy of attention.

     

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