Geochemical composition of apatite from the Zhuxi tungsten granite and the Zhenzhushan granite porphyry in the Jiangnan porphyry-skarn tungsten belt, China

IF 2.6 3区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS Chemie Der Erde-Geochemistry Pub Date : 2023-11-01 DOI:10.1016/j.chemer.2023.126010
Xia-Nan Zhang , Jia-Yong Pan , Bernd Lehmann , Jin-Xiang Li , Shuo Yin , Yong-Peng Ouyang , Yong Zhang , Fu-Jun Zhong , Jia-Li Fu , Bin Wu
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引用次数: 1

Abstract

Apatite is increasingly used as a tracer for petrogenetic and metallogenic processes. We present the cathodoluminescence (CL) texture, and composition of igneous apatite from the tungsten-bearing Zhuxi biotite granite and the nearby Zhenzhushan granite porphyry in the Late Mesozoic Jiangnan porphyry-skarn tungsten belt in South China. Most apatite grains show homogeneous CL-dark texture, but some apatite grains have CL-dark cores and CL-bright rims, or CL dark-bright-dark-bright (from core to rim) growth zoning bands. The CL-bright bands are Mn depleted. Apatite from the Zhuxi biotite granite has elevated W contents (mean: 0.16 ppm; n = 75) compared to the Zhenzhushan granite porphyry (mean: ≤0.02 ppm; n = 32). The CL-bright rims of apatite from Zhuxi have more W than the CL-dark cores, i.e. average 0.58 ppm W versus average 0.07 ppm W, respectively, implying that the late-stage magmatic system was enriched in W. The chondritic Y/Ho ratios (22−33) of Zhuxi apatite, and the similar or even slightly more elevated REE contents of the CL-bright rims, compared to the cores, rule out hydrothermal effects. The Zhuxi apatite samples have distinctly negative δEu, F-rich and sulfur-depleted features, which are interpreted as signature of igneous apatite from magmatically evolved granitic intrusions associated with W deposits, while the inverse trend applies to apatite from Cu porphyry systems. In-situ microanalysis of apatite may be a useful exploration tool.

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中国江南斑岩-矽卡岩钨矿带竹溪钨花岗岩和真竹山花岗斑岩磷灰石的地球化学组成
磷灰石越来越多地被用作岩石成因和金属成因过程的示踪剂。我们介绍了华南中生代晚期江南斑岩-矽卡岩钨矿带中竹溪含钨生物花岗岩和附近真珠山花岗斑岩中的火成磷灰石的阴极发光(CL)质地和成分。大多数磷灰石晶粒显示出均匀的CL-暗纹理,但有些磷灰石晶粒具有CL-暗核和CL-亮边,或CL-暗-亮-暗-亮(从核到边)生长带。CL-亮带是缺锰的。与真竹山花岗斑岩(平均值:≤0.02 ppm;n = 32)相比,竹溪生物花岗岩中的磷灰石的 W 含量较高(平均值:0.16 ppm;n = 75)。竹溪磷灰石CL-亮边的W含量高于CL-暗核,分别为平均0.58ppm W和平均0.07ppm W,这意味着晚期岩浆系统富含W。竹溪磷灰石的软玉Y/Ho比(22-33),以及CL-亮边的REE含量与核相似甚至略高于核,排除了热液效应。竹溪磷灰石样品具有明显的负δEu、富F和贫硫特征,这被解释为与W矿床相关的岩浆演化花岗岩侵入体中火成岩磷灰石的特征,而铜斑岩系统中的磷灰石则呈相反趋势。磷灰石的原位显微分析可能是一种有用的勘探工具。
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来源期刊
Chemie Der Erde-Geochemistry
Chemie Der Erde-Geochemistry 地学-地球化学与地球物理
CiteScore
7.10
自引率
0.00%
发文量
40
审稿时长
3.0 months
期刊介绍: GEOCHEMISTRY was founded as Chemie der Erde 1914 in Jena, and, hence, is one of the oldest journals for geochemistry-related topics. GEOCHEMISTRY (formerly Chemie der Erde / Geochemistry) publishes original research papers, short communications, reviews of selected topics, and high-class invited review articles addressed at broad geosciences audience. Publications dealing with interdisciplinary questions are particularly welcome. Young scientists are especially encouraged to submit their work. Contributions will be published exclusively in English. The journal, through very personalized consultation and its worldwide distribution, offers entry into the world of international scientific communication, and promotes interdisciplinary discussion on chemical problems in a broad spectrum of geosciences. The following topics are covered by the expertise of the members of the editorial board (see below): -cosmochemistry, meteoritics- igneous, metamorphic, and sedimentary petrology- volcanology- low & high temperature geochemistry- experimental - theoretical - field related studies- mineralogy - crystallography- environmental geosciences- archaeometry
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