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The geochemistry of environmentally important trace elements in UK coals, with special reference to the Parkgate coal in the Yorkshire-Nottinghamshire Coalfield, UK

机译:英国煤中环境重要微量元素的地球化学特征,特别是英国约克郡 - 诺丁汉郡煤田的parkgate煤

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摘要

The Parkgate coal of Langsettian age in the Yorkshire-Nottinghamshire coalfield is typical of many coals in the UK in that it has a high sulphur (S) content. Detailed information on the distribution of the forms of S, both laterally and vertically through the seam, was known from previous investigations. In the present work, 38 interval samples from five measured sections of the coal were comprehensively analysed for major, minor and trace elements and the significance of the relationships established using both raw and centered log transformed data. The major elements are used to quantify the variations in the inorganic and organic coal components and determine the trace element associations. Pyrite contains nearly all of the Hg, As, Se, Tl and Pb and is also the major source of the Mo, Ni, Cd and Sb. The clays contain the following elements in decreasing order of association: Rb, Cs, Li, Ga, U, Cr, V, Sc, Y, Bi, Cu, Nb, Sn, Te and Th. Nearly all of the Rb is present in the clay fraction, whereas for elements such as V, Cu and U, a significant amount is thought to be present in the organic matter, based on the K vs trace element regression equations. Only Ge, and possibly Be, would appear to have a dominant organic source. The trace element concentrations are calculated for pyrite, the clay fraction and organic matter. For pyrite it is noted that concentrations agree with published data from the Yorkshire-Nottinghamshire coalfield and also that Tl concentrations (median of 0.33 ppm) in the pyrite are greater than either Hg or Cd. Unlike these elements, Tl has attracted less attention and possibly more information is needed on its anthropogenic distribution and impacts on man and the environment. A seawater source is thought to be responsible for the high concentrations of S, Cl and the non-detrital trace elements in the Parkgate coal. Indicative of the seawater control is the Th/U ratio, which expresses the detrital to non-detrital element contributions. Using other elements, similar ratios can be calculated, which in combination offer greater interpretative value. (C) 2009 Elsevier B.V. All rights reserved.
机译:约克郡-诺丁汉郡煤田的Langsettian时代的Parkgate煤是英国许多煤的典型代表,因为它的硫(S)含量很高。从以前的研究中可以了解到有关S形态在整个煤层的横向和纵向分布的详细信息。在目前的工作中,对来自五个被测煤段的38个间隔样品进行了综合分析,分析了主要,次要和痕量元素以及使用原始和中心测井变换数据建立的关系的重要性。主要元素用于量化无机和有机煤成分的变化并确定痕量元素的缔合。黄铁矿几乎包含所有的Hg,As,Se,Tl和Pb,并且还是Mo,Ni,Cd和Sb的主要来源。粘土按降序排列包含以下元素:Rb,Cs,Li,Ga,U,Cr,V,Sc,Y,Bi,Cu,Nb,Sn,Te和Th。根据K对微量元素的回归方程,几乎所有的Rb都存在于粘土级分中,而对于诸如V,Cu和U之类的元素,有机物中存在大量的Rb。只有锗,可能还有铍,似乎具有主要的有机来源。计算出的黄铁矿,粘土含量和有机物的痕量元素浓度。对于黄铁矿,应注意其浓度与来自约克郡-诺丁汉郡煤田的公开数据相符,并且黄铁矿中的T1浓度(中位数为0.33 ppm)大于Hg或Cd。与这些元素不同,Tl吸引的关注较少,可能需要更多有关其人为分布及其对人类和环境影响的信息。人们认为,海水源是造成帕克盖特煤中高浓度的S,Cl和非破坏性微量元素的原因。 Th / U比是海水控制的指标,表示了碎屑对非碎屑元素的贡献。使用其他元素,可以计算出相似的比例,这些比例组合起来可以提供更大的解释价值。 (C)2009 Elsevier B.V.保留所有权利。

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    Spears D.A.; Tewalt S.J.;

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