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Crustal fluids and ore genesis

Crustal fluids and ore genesis
地壳流体和成矿作用
批准号:
6124-2006
负责人:
WilliamsJones, Anthony
金额:
$5.88万
依托单位:
依托单位国家:
加拿大
项目类别:
Discovery Grants Program - Individual
财政年份:
2007
资助国家:
加拿大
项目状态:
已结题
起止时间:
2007-01-01 至 2008-12-31

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中文摘要
翻译
虽然我们在了解地壳流体在形成矿床中的作用方面取得了实质性进展,但由于缺乏有关金属溶解度和形态的数据,其定量建模受到限制。我的研究的主要目的是帮助收集这些数据,并利用它们来开发选择存款类型的成因模型。我将主要集中在HFSE,金,银,并在这样的研究中的一个基本假设是,成矿流体是液态水。然而,有证据表明,水蒸气和碳氢化合物也可能在金属迁移中发挥作用。因此,我的研究的另一个目标将是评估这种可能性。我的总体方法将是进行自然和实验系统的补充研究。将在摩洛哥Imiter银汞存款进行研究,以确定为什么它具有任何类型的存款中最高的汞浓度,而没有Au;在危地马拉Banderas浅成热液Au存款进行研究,以评估新发现的含铵蚀变矿物的意义;在摩洛哥Bou Azzer进行研究,以开发热液钴矿床的成因模型;在美国奎斯塔存款进行研究,以评估钼的蒸气迁移。还将在Flin Flon带进行一项研究,以了解变质作用如何影响中温Au矿床,并在印度尼西亚默拉皮火山进行一项研究,以评估蒸汽介导的金属运输的功效。将继续在Gallinas山和Strange湖研究HFSE矿床,并在Cirotan研究Au-Sn-W矿床。这些实地研究将得到正在进行的含水液体高温金属形态实验和溶解度实验的补充,以确定H2O-H2S-HCl气体的金属运输能力。最后,将进行实验,以确定Au和Pd在原油中的溶解度,以便可能应用于卡林型矿床、威特沃特斯兰德和库普费勒伊费尔。 拟议的研究有可能大大促进对金属矿床如何形成的理解,并有助于指导对这些矿床的勘探。它还可以在冶金以及解决大气和地下水污染问题方面找到重要的应用。
英文摘要
Although we have made substantial progress in understanding the role of crustal fluids in forming ore deposits, their quantitative modeling has been limited by a lack of data on metal solubility and speciation. The main objective of my research is to help gather some of these data, and use them to develop genetic models for a selection of deposit types. I will focus mainly on the HFSE, Au-Ag, and Co. A basic assumption in such studies is that the ore fluid is liquid water. However, there is evidence that aqueous vapour and hydrocarbons may also play a role in metal transport. Thus, another objective of my research will be to evaluate this possibility. My overall approach will be to carry out complementary studies of natural and experimental systems. Studies will be conducted at the Imiter Ag-Hg deposit, Morocco, to determine why it has the highest Hg concentration of any deposit of its type and no Au, the Banderas epithermal Au deposit, Guatemala, to evaluate the significance of newly discovered ammonium-bearing alteration minerals, Bou Azzer, Morocco, to develop a genetic model for hydrothermal Co deposits, and the Questa deposit, USA, to evaluate vapour transport of Mo. A study will also be conducted in the Flin Flon belt to understand how mesothermal Au deposits are affected by metamorphism, and on Merapi volcano, Indonesia, to evaluate the efficacy of vapour-mediated transport of metals. Studies of HFSE deposits will be continued at Gallinas Mountains and Strange Lake, and Au-Sn-W at Cirotan. These field-based studies will be complemented by ongoing high-temperature metal speciation experiments on aqueous liquids, and solubility experiments to determine the metal transport capabilities of H2O-H2S-HCl gases. Finally, experiments will be conducted to determine the solubility of Au and Pd in crude oil, for possible application to Carlin type deposits, the Witwatersrand and the Kupferschiefer.  The proposed research has the potential to significantly advance understanding of how metallic mineral deposits form, and help guide exploration for these deposits. It could also find important applications in metallurgy, and in addressing problems of atmospheric and groundwater pollution.
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