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Geochemical and Mineralogical Characteristics of the Middle Jurassic Coals from the Tongjialiang Mine in the Northern Datong Coalfield, Shanxi Province, China

机译:山西大同煤田北部同家梁矿中侏罗统煤的地球化学和矿物学特征

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There is limited information available on the minerals and elements present in the Jurassic coals from Datong Coalfield. This paper investigates the geochemical and mineralogical characteristics of the Middle Jurassic coals from the Tongjialiang Mine using X-ray powder diffraction (XRD), X-ray fluorescence spectrometry (XRF), inductively coupled plasma mass spectrometry (ICP-MS), and scanning electron microscopy in combination with energy-dispersive X-ray spectrometry (SEM-EDS). No.12 coal is a low-medium volatile bituminous coal and is characterized by low ash yield content, low moisture content, and ultra-low sulfur content. Compared with Chinese coals, the Tongjialiang coals have slightly higher average percentages of MgO and P 2 O 5 , and lower average percentages of the other major oxides, including SiO 2 , TiO 2 , Al 2 O 3 , Fe 2 O 3 , CaO, MnO, Na 2 O, and K 2 O. Compared with the World hard coals, Be, Cr, Co, Ni, Ge, Sn, Ta, and W are slightly enriched in the Tongjialiang coals. The concentrations of Li, F, Sc, V, Cu, Ga, Se, Sr, Zr, Nb, Hf, Pb, Th, and U are close to the average values of the world’s hard coals. The minerals in No.12 coal mainly include quartz, kaolinite, siderite, and ankerite, along with smaller amounts of pyrite, illite, calcite, and rutile. The formation of syngenetic siderite in No.12 coal is related to the weathering of biotite in the gneiss of the Yinshan Upland. The modes of occurrence of ankerite indicate that the coals may be affected by the injection of low temperature hydrothermal fluids. It is noteworthy that a portion of epigenetic ankerite may be a product of metasomatism between syngenetic siderite and the epigenetic Fe-Mg-Ca rich hydrothermal fluids. The ratios of Al 2 O 3 /TiO 2 , REY (rare earth elements and yittrium) enrichment patterns, the modes of occurrence of siderite and ankerite, as well as the enriched lithophile and siderophile elements indicate that the No.12 coal may have originated from the Yinshan Upland and may also have been influenced by low temperature hydrothermal fluids that might have circulated in the coal basin.
机译:关于大同煤田侏罗纪煤中存在的矿物和元素的信息很少。本文利用X射线粉末衍射(XRD),X射线荧光光谱(XRF),电感耦合等离子体质谱(ICP-MS)和扫描电子对通家梁矿中侏罗统煤的地球化学和矿物学特征进行了研究。显微镜结合能量色散X射线光谱法(SEM-EDS)。 No.12煤是一种低中等挥发性的烟煤,其特点是灰分含量低,水分含量低和硫含量极低。与中国的煤炭相比,童家良煤的MgO和P 2 O 5的平均百分比略高,而其他主要氧化物(包括SiO 2,TiO 2,Al 2 O 3,Fe 2 O 3,CaO, MnO,Na 2 O和K 2O。与世界上的硬煤相比,桐家梁煤中的Be,Cr,Co,Ni,Ge,Sn,Ta和W略有富集。 Li,F,Sc,V,Cu,Ga,Se,Sr,Zr,Nb,Hf,Pb,Th和U的浓度接近世界硬煤的平均值。 12号煤中的矿物主要包括石英,高岭石,菱铁矿和方铁矿,以及少量的黄铁矿,伊利石,方解石和金红石。 12号煤中同生菱铁矿的形成与银山山地片麻岩中黑云母的风化有关。钙长石的发生方式表明,煤可能会受到低温热液注入的影响。值得注意的是,部分表观生铁长石可能是同生菱铁矿和表观生铁-镁-钙富集热液之间的交代作用产物。 Al 2 O 3 / TiO 2的比例,REY(稀土元素和钇的富集模式),菱铁矿和方铁矿的发生方式以及富集的亲石和铁粒石元素都表明第12号煤可能起源于可能来自银山高地,也可能受到了可能在煤盆地中循环的低温热液的影响。

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