负载Fe2O3对活性炭微波脱硫脱硝的影响

    Effect of Loading Fe2O3 on Microwave Desulfurization and Denitrification of Activated Carbon

    • 摘要: 【目的】为探究负载Fe2O3的活性炭在微波场下协同脱除烧结烟气中SO2和NOx的性能与机理,以降低反应温度、减少碳损耗,并为高效低成本的烟气脱硫脱硝提供理论依据。【方法】以负载Fe2O3活性炭为切入点,采用浸渍法制备负载Fe2O3活性炭(Fe2O3/AC),通过Fe2O3/AC表征检测和脱硫脱硝实验探究负载Fe2O3对活性炭微波脱硫脱硝的影响。【结果与结论】硝酸铁溶液浓度10%、温度400 ℃、保温1 h的实验条件下,Fe2O3/AC的负载效果较好,300 ℃微波单独脱硫率和单独脱硝率分别达到90.2%和81.8%,效果优于普通活性炭,在反应过程中部分Fe2O3与SO2和NO在有氧条件下反应生成相应的硫酸盐和硝酸盐。随着温度的升高,微波协同脱硫率与脱硝率呈现明显上升趋势;NO的存在有利于SO2的脱除,300 ℃时SO2较大脱除率达到95%,高于单独脱硫效果,当反应温度上升到420 ℃时,协同脱硫率接近100%;而SO2的存在会抑制NO的脱除,300 ℃时NO较大脱除率达66.5%。

       

      Abstract: Objective To explore the performance and mechanism of activated carbon loaded with Fe2O3 in the synergistic removal of SO2 and NOx from sintering flue gas under microwave field, in order to lower the reaction temperature, reduce carbon loss, and provide a theoretical basis for efficient and low-cost flue gas desulfurization and denitrification. Method Taking the loaded Fe2O3 activated carbon as the breakthrough point, Fe2O3-loaded activated carbon (Fe2O3/AC) was prepared by the impregnation method. The effect of Fe2O3 loading on microwave desulfurization and denitrification of activated carbon was investigated by Fe2O3/AC characterization detection and desulfurization and denitrification experiments. Result&Conclusion The loading effect of Fe2O3/AC was better at the experimental conditions of iron nitrate solution concentration of 10%, temperature of 400 ℃ and holding time of 1 h. The desulfurization rate and denitrification rate of microwave alone at 300 ℃ reached 90.2% and 81.8%, respectively. The effect was better than that of ordinary activated carbon. During the reaction process, some Fe2O3 reacted with SO2 and NO to form corresponding sulfate and nitrate at aerobic conditions. With the increase of temperature, the microwave synergistic desulfurization rate and denitrification rate showed a significant upward trend. The presence of NO is beneficial to the removal of SO2. The maximum removal rate of SO2 reaches 95% at 300 ℃, which is higher than that of desulfurization alone. When the reaction temperature rises to 420 ℃, the synergistic desulfurization rate is close to 100%. The presence of SO2 will inhibit the removal of NO, and the maximum removal rate of NO is 66.5% at 300 ℃.

       

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