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The removal of hydrogen sulfide from gas streams using an aqueous metal sulfate absorbent:Part II. the regeneration of copper sulfide to copper oxide - An experimental study

机译:使用含水金属硫酸盐吸收剂从气流中去除硫化氢:第二部分。硫化铜再生为氧化铜的实验研究

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摘要

Aim of this study was to investigate the possibilities for a selective and efficient method to convert copper(II) sulfide (CuS) into copper(II) oxide (CuO). The oxidation of copper sulfide has been studied experimentally using a thermogravimetric analyzer (TGA) at temperatures ranging from 450 to 750 °C and oxygen concentrations of 5 and 10 vol.%. It appeared that the products formed upon the oxidation of copper sulfide depend on the reaction temperature. However, in all cases the conversion time using the powdered samples was much shorter than expected based on literature results (typically 3 min versus 1-3 h as mentioned in literature). The first reaction step in the oxidation of copper sulfide always was the fast decomposition of CuS into Cu2S and gaseous sulfur, which immediately was oxidized further to SO2. Subsequently, Cu2S was then oxidized, the route depending on the reaction conditions. Oxidation experiments carried out at various temperatures showed that Cu2S was oxidized selectively to CuO at temperatures above 650 °C, while at temperatures below 650 °C (basic) copper sulfate was also formed. The oxidation from Cu2S to CuO appeared to be the result of two consecutive reactions. Cu2S is first converted into Cu2O, which is subsequently oxidized to CuO. The experimental results allowed for the determination of the intrinsic kinetic rate expression and (Arrhenius) relation for the reaction rate constant of the conversion of Cu 2S to Cu2O between 650 and 750 °C and oxygen concentrations between 5 and 10 vol.%.
机译:这项研究的目的是研究将硫化铜(II)转化为氧化铜(II)的选择性和有效方法的可能性。硫化铜的氧化已使用热重分析仪(TGA)在450至750°C的温度和5至10 vol。%的氧气浓度下进行了实验研究。看来硫化铜的氧化形成的产物取决于反应温度。但是,在所有情况下,使用粉末状样品的转化时间都比根据文献结果所预期的要短得多(通常为3分钟,而文献中为1-3小时)。硫化铜氧化的第一步反应始终是将CuS快速分解为Cu2S和气态硫,然后立即将其进一步氧化为SO2。随后,然后将Cu 2 S氧化,其路线取决于反应条件。在各种温度下进行的氧化实验表明,Cu2S在高于650°C的温度下被选择性氧化为CuO,而在低于650°C的温度下(碱性)也形成了硫酸铜。从Cu2S氧化为CuO似乎是两个连续反应的结果。首先将Cu2S转化为Cu2O,然后将其氧化为CuO。实验结果允许确定固有动力学速率表达和(Arrhenius)关系的650和750°C之间的Cu 2S到Cu2O的转化和氧浓度在5和10 vol。%之间的反应速率常数。

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