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Zhou Yiping, Ren Youliang. Element Geochemistry of Volcanic Ash Derived Tonsteins in Late-Permian Coal-Bearing Formation of Eastern Yunnan and Western Guizhou,China[J]. Acta Sedimentologica Sinica, 1994, 12(2): 123-132.
Citation: Zhou Yiping, Ren Youliang. Element Geochemistry of Volcanic Ash Derived Tonsteins in Late-Permian Coal-Bearing Formation of Eastern Yunnan and Western Guizhou,China[J]. Acta Sedimentologica Sinica, 1994, 12(2): 123-132.

Element Geochemistry of Volcanic Ash Derived Tonsteins in Late-Permian Coal-Bearing Formation of Eastern Yunnan and Western Guizhou,China

  • Publish Date: 1994-06-10
  • Over 30 trace elements(with concentration lower than l%o) from 46 samples have been determined during the study by various techniques,including INAA and ICP. These samples were collected from the synsedimentary volcanic ash derived tonsteins, non-cineritic claystones, and the coal seams within the coal-bearing formation of the eastern Yunnan and western Guizhou Provinces. The analytical results demonstrate the fact that the concentrations of various trace elements source materials. The terrigenous non-cineritic claystones are characterized by their high contents in V,Ti,Sc,Cr,Co, and Ni,medium contents in Nb, Ta, Hf, Zr and REE,and low in The U and Th/U ratio,with an indistinct negative anomaly of SEu(0. 63-0. 93),which is, in overall, consistent with the properties of the basalt from the erosional region. On the other hand,tonsteins are low in V,Ti,Sc,Cr,Co, and Ni, contents, medium to high in REE,Nb,Ta,Hf,Zr, Th and U, and high in Th/U ratio, with a distinct bEu anomaly (normally in the range of 0. 2-0. 4 ). The characteristics of tonstein geochemistry of trace elements can be distinguished from those of the non-cineritic claystones, as indicative of their unique volcanic ash-fall origin. As far as the tonsteins are concerned,those from the lower section (P2.1) of the coal-bearing formation are high in Li,13e, Ti, Zr, Hf, Nb, Ta and REE contents, as compared to those from the middle and upper sections (P2.2+3). As shown on the plots of correlations between Hf-Ta,Ti-Ta,Ti-V,Hf-Sc, Lu-Hf and Lu-Th,tonsteins from P2.1.1horizon always fall in an isolated distribution area,separating from the tonsteins of P2.2+3 horizon. These results suggest that from the tonsteins from the two different horizons were probably derived comparison of the concentration and assemblage of trace elements between various magmatic rocks, the source materials of tonsteins from Pz.1horizon were mostly compased of alkalene volcanic ash,whereas those from Pz.z+a were apparently acidic. Based on a convergence of evidence obtained from different approaches,including the analytical results of the distribution and assemblage of trace elements in tonsteins, it is discovered that the tonsteins from different horizons are ofter characterized by their unique properties,which remain quite consistent over a great lateral extent. An integrated and customized use of these properties makes possible the establishment of tonstein stratigtaphy, thus facilitating the more precise and reliable coal seam correlation.
  • [1] 刘英俊等,1979,地球化学,北京,科学出版社,514,
    [2] 刘英俊等,1984,元素地球化学,北京,科学出版社,548,
    [3] 李石,1991,鄂北地区碱性岩的时代与成因,岩石学报,(3) :27-36,
    [4] 杨光荣等,1986,四川南部上二叠统划分与含煤性,重庆出版社,153.
    [5] 周瑶琪等,1991,混合成因模式,地质论评,V. 37 (1) : 51-63.
    [6] Brouoz, A. and Spears, D. A.,1985,Influence of water depth on the alteration process of cinerites in thesedimentary basin-importance of Pedogenesis. 10th Congr. Int. Strat. Geol. Carbon.,C. R., 4 : p. 183-187.
    [7] Burger, K.,Zhou, Y. and Tang, D.,1990, Synsedimentary volcanic ash-derived illite tonsteins in Late Permian coal-bearing formations of southwestern China. Int. J. Coal Geol.,15:p. 341-356.
    [8] Dopita, M. and Kralik, J.,1977,Coa1 tonsteins in Octrava-Karvina coal basin. CSSR,Octrava, p. 213
    [9] Plant et al.,1988. Developments in regional geochemistry for mineral exploration. Trans. IMM, SEC. B, Vol.97.
    [10] Spars, D. A. and Kanaris-Sotiriou, K.,1975,Titanium in some Carboniferous sediments from Great Britain. Geochem. Cosmechem. Acta,40(3);p. 345-351.
    [11] Zhou, Lei and Kyte Frank T.,1988,The Permian-Triassic boundary event:a geochemical study of three Chinese sections. Earth and Planetary Science Letters, V. 90, No. 4, p. 411-421.
    [12] Zhou;Y.,Ren,Y. and Bohot,B.F.,1982,Origin and distribution of tonsteins in Late Permian Coal fields of southwestern China. Int. J. Coal Geol.,2:P 49-77.
    [13] Zhou, Y., Burger, K. and Tang, D.,1987,A study on tonsteins in Late Permian Coal fields of southwest China. 11th Int. Congr. Strat. Geol. Carbon.,Abstr. pap.,I;p. 273.
    [14] Zhou,Y.,Ren,Y. and Tang,D.,1992. Characteristics of Zircons from volcanic ashderived tonsteins Late Permian Coal fields of eastern Yunnan,China.
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  • Published:  1994-06-10

Element Geochemistry of Volcanic Ash Derived Tonsteins in Late-Permian Coal-Bearing Formation of Eastern Yunnan and Western Guizhou,China

Abstract: Over 30 trace elements(with concentration lower than l%o) from 46 samples have been determined during the study by various techniques,including INAA and ICP. These samples were collected from the synsedimentary volcanic ash derived tonsteins, non-cineritic claystones, and the coal seams within the coal-bearing formation of the eastern Yunnan and western Guizhou Provinces. The analytical results demonstrate the fact that the concentrations of various trace elements source materials. The terrigenous non-cineritic claystones are characterized by their high contents in V,Ti,Sc,Cr,Co, and Ni,medium contents in Nb, Ta, Hf, Zr and REE,and low in The U and Th/U ratio,with an indistinct negative anomaly of SEu(0. 63-0. 93),which is, in overall, consistent with the properties of the basalt from the erosional region. On the other hand,tonsteins are low in V,Ti,Sc,Cr,Co, and Ni, contents, medium to high in REE,Nb,Ta,Hf,Zr, Th and U, and high in Th/U ratio, with a distinct bEu anomaly (normally in the range of 0. 2-0. 4 ). The characteristics of tonstein geochemistry of trace elements can be distinguished from those of the non-cineritic claystones, as indicative of their unique volcanic ash-fall origin. As far as the tonsteins are concerned,those from the lower section (P2.1) of the coal-bearing formation are high in Li,13e, Ti, Zr, Hf, Nb, Ta and REE contents, as compared to those from the middle and upper sections (P2.2+3). As shown on the plots of correlations between Hf-Ta,Ti-Ta,Ti-V,Hf-Sc, Lu-Hf and Lu-Th,tonsteins from P2.1.1horizon always fall in an isolated distribution area,separating from the tonsteins of P2.2+3 horizon. These results suggest that from the tonsteins from the two different horizons were probably derived comparison of the concentration and assemblage of trace elements between various magmatic rocks, the source materials of tonsteins from Pz.1horizon were mostly compased of alkalene volcanic ash,whereas those from Pz.z+a were apparently acidic. Based on a convergence of evidence obtained from different approaches,including the analytical results of the distribution and assemblage of trace elements in tonsteins, it is discovered that the tonsteins from different horizons are ofter characterized by their unique properties,which remain quite consistent over a great lateral extent. An integrated and customized use of these properties makes possible the establishment of tonstein stratigtaphy, thus facilitating the more precise and reliable coal seam correlation.

Zhou Yiping, Ren Youliang. Element Geochemistry of Volcanic Ash Derived Tonsteins in Late-Permian Coal-Bearing Formation of Eastern Yunnan and Western Guizhou,China[J]. Acta Sedimentologica Sinica, 1994, 12(2): 123-132.
Citation: Zhou Yiping, Ren Youliang. Element Geochemistry of Volcanic Ash Derived Tonsteins in Late-Permian Coal-Bearing Formation of Eastern Yunnan and Western Guizhou,China[J]. Acta Sedimentologica Sinica, 1994, 12(2): 123-132.
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