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福建省层控铅锌矿床地质地球化学特征
引用本文:周乐生 郑开旗. 福建省层控铅锌矿床地质地球化学特征[J]. 现代地质, 1990, 4(1): 90-100
作者姓名:周乐生 郑开旗
作者单位:福州大学(周乐生),福州大学(郑开旗)
摘    要:作者按照涂光炽教授的分类将福建省层控铅锌矿床划分为4种类型。本文对它们的地质特征、微量元素和硫、铅同位素组成的特征作了较详细的阐述,对矿床的矿质来源作了初步的探讨。

关 键 词:层控矿床  地质特征  同位素  微量元素  福建省

THE GEOLOGICAL AND GEOCHEMICAL FEATURES OF STRATABOUND LEAD-ZINC DEPOSITS IN FUJIAN PROVINCE
Zhou Lesheng Zhen Kaiqi. THE GEOLOGICAL AND GEOCHEMICAL FEATURES OF STRATABOUND LEAD-ZINC DEPOSITS IN FUJIAN PROVINCE[J]. Geoscience of Geosciences, 1990, 4(1): 90-100
Authors:Zhou Lesheng Zhen Kaiqi
Affiliation:Fuzhou University
Abstract:According to the Tu Guangchi classification, the authors grouped strataboundlead-zinc deposits in Fujian province into four genetic types, namely: sedimentary-metamorphic, sedimentary-transformed, sedimentary-late hydatopneumatic su-perimposed, and epigenetic ore deposits.The ore-control stratigraphic horizons of sedimentary-metamorphic depositsare calcic rocks in Daling Formation and Mayuan Formation of Precambrianblende-galena-pyrrhotite. Sedimentary-transformed and epigenetic deposits havepyrite chalcopyrite and magnetite beside the association. There occasionallyare, in addition to those minerals, dalarnite and cassiterite in sedimentary-latehydatopneumatic superityposed deposits.Composition of trace elements in all the four types of deposits is characterisedby enriching of Ag, Bi and Cd. Ore minerals for four types of deposits differin composition of trace elements. Ag, Bi and Se contents, Bi/Ag and Se/S×10-4 ratios in blende increase withsedimetary-metamorphic→sedimentary-transformed→epigenetic→sedimentary-latehydatopneumatic superimposed type. Change of Ag, Bi and Se contents in sedimentary-metamorphic deposits is smallest among the four types. Chang of Ag, Bi andSe contents in the three other types is greater than the sedimentary-metamorphictype by a factor of 2.Results of R cluster analysis show that grouping of elements for sedimentary-metamorphic and sedimentary-transformed ores generally accords well withgrouping of elements for ore-bearing strata, but grouping of elements for sedimen-tary-late hydatopneumatic superimposed ore only partially accords with groupingof elements for ore-bearing strata.The origin of sulphur in the four types of deposits are different from eachother. Because of homogenisation sulphur isotopic composition in sedimentary-metamorphic deposits is stable and equal, and δ34S values are always smallpositive numbers. The δ34S values in epigenetic deposits change widely betweenlarger positive number and smaller negative number. The sulphur in the two abovementioned types of deposits is of normal sedimentary origin. δ34S values insedimentary-transformed and sedimentary-late hydatopneumatic superimposeddeposits are zero, a little larger or smaller than zero. The sulphur might originatedfrom the deep crust.Lead isotoopi composition in sedimentary-metamorphic and sedimentary trans-formed deposits are stable and equal. The lead belongs to the normal commonlead. Lead isotopic model age of the two types of deposits accord well with theage of ore-perserving strata. The lead is of crustal origin, Lead isotopic composi-tion in sedimetary-late hydatopneumatic superimposed deposits is characterized bymixed lead, partly originating from the ore-preserving strata, partly from thestrata under the deposits. Lead isotopic composition in epigenetic deposits ischaracterized by U-and Th-rich abnormal lead. The lead belongs to the lead ori-ginated from the residual crust.
Keywords:: stratabound deposit   geological feature   isotope   trace element  Fujian provinec
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