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An experimental study of the stability of copper chloride complexes in water vapor at elevated temperatures and pressures

机译:高温高压下氯化铜配合物在水蒸气中稳定性的实验研究

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The solubility of copper chloride in liquid-undersaturated HCl-bearing water vapor was investigated experimentally at temperatures of 280 to 320degreesC and pressures up to 103 bars. Results of these experiments show that the solubility of copper in the vapor phase is significant and increases with increasing fH(2)O but is retrograde with respect to temperature. This solubility is attributed to the formation of hydrated copper-chloride gas species, interpreted to have a copper-chlorine ratio of 1:1 (e.g.. CuCl, Cu,Cl,, etc.) and a hydration number varying from 7.6 at 320degreesC, to 6.0 at 300degreesC, and 6.1 at 280degreesC. Complex formation is proposed to have occurred through the reaction: 3 CuClsolid + nH(2)O(gas) reversible arrow Cu3Cl3.(H2O)(n)(gas) (A1) Log K values determined for this reaction are -21.46 +/- 0.05 at 280degreesC (n = 7.6), -19.03 +/- 0.10 at 300degreesC (n = 6.0), and -19.45 +/- 0.12 at 320degreesC (n = 6.1) if it is assumed that the vapor species is the trimer, Cu3Cl3(H2O)(6-8). Calculations based on the above data indicate that at 300degreesC and HCl fluxes encountered in passively degassing volcanic systems, the vapor phase could transport copper in concentrations as high as 280 ppm. Theoretically, this vapor could form an economic copper deposit (e.g., 50 million tonnes of 0.5% Cu) in as little as similar to20,500 yr. Copyright (C) 2002 Elsevier Science Ltd. [References: 56]
机译:在280至320℃的温度和最高103 bar的压力下,通过实验研究了氯化铜在液态不饱和HCl水溶液中的溶解度。这些实验的结果表明,铜在气相中的溶解度很显着,并且随着fH(2)O的增加而增加,但是相对于温度而言却是逆行的。这种溶解性归因于水合氯化铜气体物质的形成,解释为铜氯比率为1:1(例如CuCl,Cu,Cl等),并且在320℃时水合值从7.6变化,在300摄氏度下达到6.0,在280摄氏度下达到6.1。提议通过该反应发生复合物形成:3 CuClsolid + nH(2)O(gas)可逆箭头Cu3Cl3。(H2O)(n)(gas)(A1)此反应确定的Log K值为-21.46 + / -如果假设蒸气物质是三聚体,则在280摄氏度下为0.05(n = 7.6),在300摄氏度下(n = 6.0)为-19.03 +/- 0.10,在320摄氏度下(n = 6.1)为-19.45 +/- 0.12, Cu 3 Cl 3(H 2 O)(6-8)。根据上述数据进行的计算表明,在被动给火山系统除气的过程中,在300°C和HCl助熔剂的作用下,气相可以输送浓度高达280 ppm的铜。从理论上讲,这种蒸气可以在短短的20,500年内形成经济的铜矿床(例如,5,000万吨的0.5%Cu)。版权所有(C)2002 Elsevier Science Ltd. [参考:56]

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