湘中龙山Au-Sb矿床成矿物质来源 ——来自S、Pb和Sr同位素证据

Acta Geologica Sinica(2020)

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Abstract
龙山Au-Sb矿床是湘中Au、Sb矿集区的代表性矿床,本文对其不同类型矿石、矿区围岩和区域地层进行了S、Pb、Sr同位素组成对比研究.矿石中硫化物的δ34 S值为-3.0‰~5.1‰,平均值2.3‰;矿区围岩的δ34 S值为4.0‰~5.9‰,平均值5.2‰;区域地层的δ34 S值为9.3‰~13.3‰,平均值11.3‰.矿石与矿区围岩、区域地层的硫同位素组成差别较大,矿石硫具岩浆来源特征.矿石中硫化物的206 Pb/204 Pb、207 Pb/204 Pb和208 Pb/204 Pb比值分别为16.992~18.457、15.392~15.722和37.586~38.960,矿区围岩的206 Pb/204 Pb、207 Pb/204 Pb和208 Pb/204 Pb比值分别为17.630~17.993、15.522~15.644和37.981~38.366;区域地层的206 Pb/204 Pb、207 Pb/204 Pb和208 Pb/204 Pb比值分别为17.566~18.092、15.430~15.630和37.988~38.710.矿石铅同位素组成变化较大,矿石铅的来源较复杂,赋矿地层、印支期岩浆岩和上地幔可能都为其提供了部分铅.石英流体包裹体的(87 Sr/86 Sr)i比值为0.71540~0.72309,矿区围岩的(87 Sr/86 Sr)i比值为0.71844~0.72153,区域地层的(87 Sr/86 Sr)i比值为0.71792~0.71939,矿石、矿区围岩、区域地层的初始锶同位素值均较高,主要为壳源锶,部分锶来自赋矿地层,部分来自印支期岩浆岩.龙山矿床成矿物质具壳幔混合来源特征,矿化剂硫主要来源于岩浆,成矿物质部分来自江口组地层,部分来自印支期岩浆岩.
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