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Removal of Sulfur from Copper Smelting Slag by CO_2

机译:CO 2脱除铜冶炼渣中硫的研究

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In the process of extracting iron from copper slag, the iron obtained by reduction is difficult to use because of the high content of copper and sulfur. In this paper, the thermodynamics of CO_2 desulphurization of slag is simulated using FactSage 7.1. In tube furnace, the desulfurization of copper slag was investigated by changing the temperature and flow rate of CO_2. Thermodynamic simulation using FactSage 7.1 shows that increasing temperature and flow rate of CO_2 can promote the removal of sulfur, and the desulfurization rate can reach up to 54.97%. The experiment shows that the removal trend of sulfur in the slag is the same as that of the thermodynamic calculation, and the maximum removal rate is 56.64%. The utilization rate of CO_2 increased with the increase of temperature, but decreased with the increase of CO_2 flow rate. Compared with air, CO_2 is not easy to cause slag peroxidation.
机译:在从铜渣中提取铁的过程中,由于铜和硫的含量较高,通过还原获得的铁很难使用。本文利用FactSage 7.1对炉渣CO_2脱硫的热力学进行了模拟。在管式炉中,通过改变CO 2的温度和流量,对铜渣的脱硫进行了研究。利用FactSage 7.1进行的热力学模拟表明,提高CO_2的温度和流量可以促进脱硫,脱硫率可达54.97%。实验表明,炉渣中硫的去除趋势与热力学计算一致,最大去除率为56.64%。co2的利用率随温度的升高而增加,随co2流量的增加而降低。与空气相比,CO2不易引起炉渣过氧化。

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