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首页> 外文期刊>Geology of Ore Deposits: A Journal of Theoretical and Applied Papers on All Aspects of Ore Genesis >Fluid Transfer of Gold, Palladium, and Rare Earth Elements and Genesis of Ore Occurrences in the Subpolar Urals
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Fluid Transfer of Gold, Palladium, and Rare Earth Elements and Genesis of Ore Occurrences in the Subpolar Urals

机译:金,钯和稀土元素的流体转移及亚极乌拉尔的矿石成因

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摘要

To estimate the behavior of Au, Pd, REE, and Yin magmatic and postmagmatic processes, a series of experimental studies on the solubility of noble metals and REE in magma, magmatic fluid, and hydrothermal solutions has been performed in wide temperature and pressure ranges (300-400°C, 860- 1350°C; 1-14 kbar). The coefficients of Au and Pd partitioning (D~(F/F)) between fluid and tholeiitic melt have been determined. Depending on P, T, and the composition of the system, they vary from 1 to 11 for Au and 0.02 to 1 for Pd. The phase solubility technique was used to determine Au and Pd solubility in hydrothermal fluid. The effects of temperature, composition, and fluid acidity on Au and Pd solubility have been estimated. The high solubility of these metals in aqueous chloride solutions has been established for both Au (28-803 mg/kg at T= 300°C, 305-1123 mg/kg at T= 350°C, and 330-1400 mg/kg at T= 400°C) and Pd (40-126 mg/kg at T= 300°C, 62-152 mg/kg at T= 350°C, and 20-210 mg/kg at T= 400°C). The coefficients of REE and Ypar-titioning (D~(F/L)) between fluid and tholeiitic or alkaline melts have been determined. They vary from 0.00n to 2 depending on P, T, and fluid composition. The experimental data on Au and Pd solubility in solutions and magmatic fluids and the wide variation of REE D~(F/L) between fluid and melt show that magmatic and hydro-thermal fluids are efficient agents of Au, Pd, and REE transfer and fractionation. The obtained experimental data were used for elucidating sources of fluids and their role in the genesis of Au-Pd-REE occurrences in the Subpolar Urals.
机译:为了估计金,钯,稀土元素和银的岩浆和后岩浆过程的行为,在宽温度和压力范围内进行了一系列有关贵金属和稀土元素在岩浆,岩浆流体和热液中的溶解度的实验研究( 300-400°C,860-1350°C; 1-14 kbar)。确定了Au和Pd在熔体和熔融熔体之间的分配系数(D〜(F / F))。根据P,T和系统组成的不同,Au在1到11之间,Pd在0.02到1之间变化。相溶解度技术用于确定Au和Pd在热液中的溶解度。估计了温度,组成和流体酸度对Au和Pd溶解度的影响。对于Au(在T = 300°C时为28-803 mg / kg,在T = 350°C时为305-1123 mg / kg和330-1400 mg / kg)都已确定这些金属在氯化物水溶液中的高溶解度在T = 400°C时)和Pd(在T = 300°C时为40-126 mg / kg,在T = 350°C时为62-152 mg / kg,在T = 400°C时为20-210 mg / kg) 。确定了熔融态和熔融态或碱性熔融态之间的稀土元素和Y分配系数(D〜(F / L))。它们在0.00n到2之间变化,具体取决于P,T和流体成分。关于Au和Pd在溶液和岩浆流体中的溶解度的实验数据以及流体与熔体之间的REE D〜(F / L)的广泛变化表明,岩浆和热液流体是Au,Pd和REE转移的有效媒介,分馏。获得的实验数据用于阐明流体来源及其在亚极性乌拉尔金-钯-稀土元素发生中的作用。

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