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Absorption of SO2 with recyclable melamine slurry

机译:用可回收的三聚氰胺浆料吸收SO2

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SO2 emissions have caused severe acid rain and smog. For coping with this terrible problem, melamine (MN) was used in this study as an absorbent for SO2 removal from simulated flue gas. To better understand the desulfurization process, its possible products, melamine sulfite (MN-H2SO3) and melamine sulfate (MN-H2SO4), were first synthesized and then characterized by XRD, FTIR, SEM, Raman spectrum and TG-MS. The results showed that MN-H2SO4 cannot be regenerated, so its formation should be prevented during absorption. Furthermore, the effects of various process factors, such as the concentration of MN slurry, reaction temperature and SO2 concentration, were systematically investigated. The optimal parameters were determined as 4 wt% MN slurry at 40 degrees C with a liquid to gas volume ratio of 1:10. In those conditions, the duration for efficient desulfurization reached 140 min with a breakthrough sulfur capacity of 0.3 g/g. Unfortunately, the desulfurization products were a mixture of MN-H2SO3 and MN-H2SO4, reducing the regeneration efficiency. To prevent the oxidation of MN-H2SO3, various antioxidants were compared. Among them, 0.1 wt% hydroquinone exhibited the best antioxidative performance, with only 7% of MN-H2SO3 being oxidized to MN-H2SO4; MN can thus be recycled. Compared with liquid organic amine, the presented solid melamine can avoid volatilization and reduce energy consumption during regeneration, indicating promise in industrial applications.
机译:SO2排放引起了严重的酸雨和烟雾。为了应对这种可怕的问题,将三聚氰胺(Mn)用于本研究中,作为SO2从模拟烟道气中去除的吸收剂。为了更好地理解脱硫过程,首先合成其可能的产品,三聚氰胺亚硫酸盐(Mn-H 2 SO 3)和三聚氰胺硫酸盐(Mn-H 2 SO 4),然后通过XRD,FTIR,SEM,拉曼光谱和TG-MS为特征。结果表明,Mn-H 2 SO 4不能再生,因此在吸收期间应防止其形成。此外,系统地研究了各种过程因子的影响,例如Mn浆料,反应温度和SO2浓度的浓度。最佳参数以40℃的4wt%Mn浆料确定为40℃,液体与气体体积比为1:10。在这些条件下,有效脱硫的持续时间达到140分钟,抗硫磺容量为0.3g / g。不幸的是,脱硫产物是Mn-H 2 SO 3和Mn-H 2 SO 4的混合物,降低了再生效率。为了防止Mn-H 2 SO 3的氧化,比较各种抗氧化剂。其中,0.1wt%的氢醌表现出最佳的抗氧化性能,只有7%的Mn-H 2 SO 3被氧化成Mn-H 2 SO 4;因此可以再循环Mn。与液体有机胺相比,所呈现的固体三聚氰胺可以避免在再生过程中挥发并降低能量消耗,表明工业应用中的承诺。

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