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Phase Relations and Activity of Arsenic in Cu-Fe-S-As System at 1473 K

机译:Cu-Fe-S-As体系中1473 K时砷的相关系和活度

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摘要

To analyze the arsenic behavior in the copper smelting process, the phase relations and the arsenic activity in the miscibility gap of Cu-Fe-S-As system with arsenic as a minor element have been determined at 1473 K by the quenching method and the double Knudsen cell-mass spectrometric method, respectively. The experiments have been conducted for the charges in the miscibility gap with mass percent Fe/mass percent Cu ratios of 0, 0.023, 0.059, 0.098 and 0.131 with varying arsenic content. The activity measurements indicate that the arsenic activities in both the metal and matte phases show extremely negative deviation from the ideal behavior. The Raoultian activity coefficients at infinite dilution in the metal and matte phases are found to be almost constant against the charges in the miscibility gap and they are 4.3 X 10~(-3) and 5.5 X 10~(-2) for the metal and matte phases, respectively. The vapor pressures of predominant As, As_2 and AsS species in the gas phase equilibrated with the immiscible solutions have been calculated on the basis of the determined activity coefficients and they are very small at less than 1 Pa even when the arsenic content in the metal phase is increased up to 10 mass percent.
机译:为了分析铜熔炼过程中的砷行为,通过猝灭法和双重法测定了以砷为微量元素的Cu-Fe-S-As体系的相关系和砷活度中的砷活度。克努森细胞质谱法分别。已经针对具有不同的砷含量的Fe质量百分比/ Cu质量百分比的比为0、0.023、0.059、0.098和0.131的混溶间隙中的电荷进行了实验。活度测量结果表明,金属相和亚光相中的砷活度均与理想行为表现出极大的负偏差。发现在金属和亚光相中无限稀释的拉乌尔斯蒂活度系数几乎与溶混间隙中的电荷保持恒定,对于金属和亚非金属,分别为4.3 X 10〜(-3)和5.5 X 10〜(-2)。哑光相。在确定的活度系数的基础上,计算了用不混溶溶液平衡的气相中主要的As,As_2和AsS物质的蒸气压,即使在金属相中的砷含量不超过1 Pa时,它们的蒸气压也很小。增加到10质量%。

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