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首页> 外文期刊>International Journal of Coal Geology >Trace elements in the Goze Delchev coal deposit, Bulgaria
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Trace elements in the Goze Delchev coal deposit, Bulgaria

机译:保加利亚Goze Delchev煤炭矿床中的微量元素

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The geochemistry of trace elements in the underground and open-pit mine of the Goze Delchev subbituminous coal deposit have been studied. The coals in both mines are highly enriched in W, Ge and Be, and at less extent in As, Mn and Y as compared with the world-wide Clarkes for subbituminous coals. Ni and Ti are also enhanced in the underground coals, and Zr, Cr and Mo in the open-pit mine coals. Characteristic for the trace element contents in the deposit is a regular variation with depth. The following patterns were distinguished for profile I: a — the element content decreases from the bottom to the top of the bed paralleling ash distribution (Fe, Co, As, Sb, V, Y, Mo, Cs, REE, Hf, Ta, Th, P and Au); b — Ge and W are enriched in the near-bottom and near-top coals; c — in the middle part of the bed the content of K and Rb is maximal, while that of U is slightly enriched; d — Ba content decreases from the top to the bottom of the bed. In profile II, W and Be contents decrease from the bottom to the top. The near-bottom, and especially the near-roof samples of profile IV are highly enriched in Ge, while for W the highest is the content of the near-bottom sample. Ge, Be, As, Mn, Cl and Br are mainly organically associated. The organic affiliation is still strong for Co, B, Sr, Ba, Sb, U, Th, Mo, La, Ce, Sm, Tb and Yb in the underground coals, and Fe, Co, Na, W, Sr, Y and Ag in the coals from the open-pit mine. K, Rb, Ti, Zr, Hf and Ta are of dominant inorganic affinity. The chalcophile and siderophile elements correlate positively with Fe and each other and may be bound partly with pyrite or other sulphides and iron containing minerals. Compared statistically by the t-criteria, the elements Na, Li, Cu, Zn, Pb, Cr, Ni, Co, Mo, Fe and Be are of higher content in the open-pit mine. Tungsten is the only element of higher concentration in the underground mine. The contents of Ge, As, Sr, V, Mn, Y, Zr and P are not statistically different in both mines. It was supposed that there were multiple sources of the trace elements in the deposit. The source of the highly enriched elements (W, Ge, Be, and As) most probably were the thermal waters in the source area. The contemporary mineral springs are of high content of these elements. Another source were the hosting Mesta volcanic rocks, which are enriched in Sb, Mo, Hf, U, Th, As, Li and Rb. Some of the volcanics were hydrothermally altered and enriched or depleted of many elements. Thus, the hydrothermal solutions were also suppliers of elements for the coals. It is obvious that the contents, distribution and paragenesis, of the trace elements in both Goze Delchev coals reflect the geochemical specialization of the source area, including rocks, paleo- and contemporary thermal waters.
机译:研究了Goze Delchev次烟煤矿床地下和露天矿中微量元素的地球化学。与世界范围内次烟煤的克拉克斯矿相比,两个矿井中的煤都富含W,Ge和Be,而As,Mn和Y含量较低。地下煤中的Ni和Ti也得到增强,露天矿中的Zr,Cr和Mo也得到增强。沉积物中痕量元素含量的特征是随深度的规律变化。轮廓I区分了以下模式:a-元素含量从床的底部到顶部平行于灰分分布(Fe,Co,As,Sb,V,Y,Mo,Cs,REE,Hf,Ta, Th,P和Au); b — Ge和W富集在近底和近顶煤中; c —在床的中部,K和Rb的含量最大,而U的含量稍高; d — Ba含量从床的顶部到底部降低。在配置文件II中,W和Be含量从底部到顶部降低。剖面IV的近底样品,尤其是近顶样品富含Ge,而W含量最高的是近底样品。 Ge,Be,As,Mn,Cl和Br主要是有机缔合的。地下煤中Co,B,Sr,Ba,Sb,U,Th,Mo,La,Ce,Sm,Tb和Yb以及Fe,Co,Na,W,Sr,Y和Y的有机隶属关系仍然很强露天煤矿煤中的银。 K,Rb,Ti,Zr,Hf和Ta具有主要的无机亲和力。嗜硫元素和嗜铁元素与铁和彼此正相关,并且可以部分与黄铁矿或其他硫化物和含铁矿物结合。通过t标准进行统计比较,露天矿中的元素Na,Li,Cu,Zn,Pb,Cr,Ni,Co,Mo,Fe和Be含量较高。钨是地下矿井中浓度较高的唯一元素。在两个矿山中,Ge,As,Sr,V,Mn,Y,Zr和P的含量均无统计学差异。假定矿床中有多种痕量元素来源。高浓度元素(W,Ge,Be和As)的来源很可能是源区的热水。当代的矿泉中这些元素含量很高。另一个来源是寄主梅斯塔火山岩,其中富含Sb,Mo,Hf,U,Th,As,Li和Rb。一些火山被热液改造,并富集或耗尽了许多元素。因此,水热解决方案也是煤炭元素的供应商。显然,两种Goze Delchev煤中的微量元素的含量,分布和共生作用都反映了包括岩石,古今热水在内的源区的地球化学特征。

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