Mercury in coals might emit into the environment from coal combination, and finally cause environmental pollution. In this paper, 26 coal samples were selected from No. 1 which is coal in the Shanxi Formation of Zhangji and Xinjier mines in the Huainan coalfield. The mineralogical and geochemical components of coal samples were determined by DMA-80 mercury-measuring instrument, XRF, XRD, ICP-MS, and the relationship between the depositional environment of the coal seam and mercury enrichment was analyzed. The results show that the mercury content of coal in the study area ranged from 0.03 to 0.93 μg/g, with an arithmetic means of 0.21 μg/g, higher than the background values of coal in China and the world. The mercury content of Shanxi Formation coal varied among different mines, the arithmetic mean value of mercury in Zhangji coal mine and Xinjier mine coal is 0.35 μg/g and 0.12 μg/g respectively. Due to the complex depositional environment and depositional facies, the distribution of mercury content in the coal seam is quite different. XRD, Microscopic observation and the ratio of (CaO + MgO + Fe2O3)/(SiO2+ Al2O3) and Al2O3/TiO2 show that the main mineral in the depositional environment of this study area is kaolinite, quartz and pyrite, and the depositional facies are intercontinental and sea-land, so the parent rock type belongs to acid bedrock. The Ni/Co, Sr/Ba, and Sr/Cu ratios were used to indicate a weak oxidation-reduction, Marine salt water, and an arid and hot environment. The vertical distribution of mercury in coal and the characteristics of the depositional environment are combined to show that mercury in coal is easily affected by redox conditions, paleosalinity and paleoclimate in the depositional environment. At the same time, mercury accumulation is more easily in the depositional environment dominated by seawater intrusion than in the terrigenous input.
以淮南煤田深部山西组煤为研究对象,分别采集研究区张集煤矿和新集二矿二叠系山西组1煤层的煤样品,测试了样品中总汞的含量,分析汞的空间分布特征,采用浮沉实验、逐级化学提取实验以及相关性分析研究了煤中汞的赋存状态,并结合沉积环境探讨了深部山西组煤中汞的富集成因.结果 表明:(1)研究区煤样中汞含量介于0.03~0.93 μg/g之间,算术平均值为0.21 μg/g,均高于中国和世界煤中汞的背景值,与地壳中汞含量相比,富集系数高达2.6,表现出明显富集;(2)淮南煤田不同煤矿山西组煤中汞含量不同,张集煤矿煤中汞算术平均值为0.35 μg/g,新集二矿煤中汞算术平均值为0.12 μg/g;受复杂沉积环境和沉积相作用,同一煤层中,汞含量分布差异性较大;(3)相关性分析、浮沉实验和逐级化学提取实验结果表明,煤中的汞主要以硫化物结合态存在;矿物分析结果显示,黄铁矿是煤中汞的主要载体,张集煤矿煤中的汞主要以固溶态赋存于原生黄铁矿中,新集二矿山西组煤中的汞主要赋存于裂隙充填的后生黄铁矿中.
铜陵某尾矿库堆积大量富硫尾矿,为研究其氧化状况及对周边土壤的污染情况,在尾矿库和周边采集尾矿及土壤样品,测试分析尾矿及土壤样品典型重金属(Hg、As、Cr、Cd、Pb、Zn)含量和赋存形态,并基于单因子污染指数法和内梅罗综合污染指数法对土壤污染状况进行了评价.结果 表明:(1)尾矿中Fe2O3平均占比达到38.08%(质量分数,下同),S平均占比达到5.34%;(2)尾矿库周边土壤中Cd、As、Zn、Hg严重超标,分别为《土壤环境质量农用地土壤污染风险管控标准(试行)》(GB 15618-2018)风险筛选值的6.3、3.7、1.8、1.5倍;(3)土壤中重金属主要以残渣态形式存在,但Cd、Hg、Zn的非残渣态平均占比均达到25%以上,生物有效性较高,对周边环境存在潜在危害;(4)两种污染指数法评价结果表明,尾矿库周边土壤以Cd、As、Zn污染为主,该富硫尾矿库已对周边环境造成重度污染.