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Thermodynamic Analysis of Pyrolusite for Dry Flue Gas Desulfurization

机译:硫铁矿干烟气脱硫的热力学分析

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Various approaches to flue gas desulfurization by low-grade manganese and high efficiency desulfurization in sintering enterprises were investigated, and the predominance areas of the Mn/Fe-S-O system were constructed in this paper. Additionally, the areas in different temperatures were established based on the thermodynamic properties achieved from manuals. From the view of thermodynamics, manganese oxides were suitable and feasible for desulfurization at an appropriate temperature range from 393 K to 453 K (120 °C to 180 °C), which means that the SO 2 of sintering flue gas could be removed directly without further cooling or heating. The analysis often showed that there was an overlap area of the Mn-S-O and Fe-S-O system, indicating that it would be a coexistence stability region of MnSO 4 and Fe 2 O 3 , which provided a possibility of desulfurization by selective salvation without the sulfate and sulfide of iron forming. More importantly, the predominance areas of Mn/Fe-S-O would offer an attractive way of determining optimum experimental conditions for dry desulfurization by low-grade manganese resources.
机译:研究了烧结企业中低品位锰烟气脱硫和高效脱硫的各种方法,并建立了Mn / Fe-S-O体系的优势区域。另外,根据手册获得的热力学性质,建立了不同温度下的面积。从热力学的角度来看,氧化锰在393 K至453 K(120°C至180°C)的合适温度范围内适合脱硫是可行的,这意味着可以直接去除烧结烟气中的SO 2而不用进一步冷却或加热。分析经常表明,Mn-SO和Fe-SO系统存在重叠区域,表明它将是MnSO 4和Fe 2 O 3的共存稳定区域,这提供了通过选择性拯救而无需进行脱硫的可能性。硫酸盐和硫化物形成铁。更重要的是,Mn / Fe-S-O的优势区域将为确定低品位锰资源进行干法脱硫的最佳实验条件提供有吸引力的方法。

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