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New Insights into the Decomposition Behavior of NH4HSO4 on the SiO2-Decorated SCR Catalyst and Its Enhanced SO2-Resistant Ability

机译:NH4HSO4在SiO2装饰SCR催化剂上的新见解及其增强的SO2抗性能力

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This article illustrates the detailed decomposition behavior of NH4HSO4 on the TiO2 and TiO2–SiO2 supports, along with the effect of SiO2 addition on the sulfur resistance of the corresponding V2O5-based catalysts. For TiO2 support, sulfate species selectively occupied its surface basic hydroxyl groups, while Si–OH groups functioned as the main sites for the accommodation of NH4HSO4 over the TiO2–SiO2 mixed support, enabling its surface sulfate species with higher thermal stability. Compared with NH4+ on the TiO2 surface, NH4+ on the TiO2–SiO2 mixed support was much easier to be consumed during the heating process, hence causing some variations in the decomposition behavior of NH4HSO4. Finally, adding SiO2 enhanced the SO2 tolerance properties of the catalysts to a certain extent. When exposed to the SO2-containing flue gas, the deposition of NH4HSO4 mainly caused serious deactivation of SiO2-free catalyst, while the as-accumulated SO42– also contributed to the declined activity of SiO2-added catalyst. These results ensured the potential commercialization of TiO2–SiO2-based catalysts in the typical low-temperature selective catalytic reduction systems in the short run and pointed out a strategy to design new catalysts with superior activity and enhanced SO2-tolerant ability.
机译:本文说明了在TiO 2和TiO 2 -SiO 2上的NH 4 H 4 O 4的详细分解行为,以及SiO 2的作用以及对应于基于V2O5的催化剂的硫抗性的影响。对于TiO 2的支持,硫酸盐物种选择性地占据其表面碱性羟基,而Si-OH基团用作在TiO 2-SiO 2混合载体上的NH 4 HO 4的主要部位,使其表面硫酸盐具有较高的热稳定性。与TiO 2表面上的NH 4 +相比,在加热过程中,TiO2-SiO2混合载体的NH 4 +更容易消耗,因此导致NH4HSO4的分解行为的一些变化。最后,添加SiO2在一定程度上增强了催化剂的SO2耐受性质。当暴露于含SO2烟道气时,NH4HSO4的沉积主要导致SiO 2 - 无催化剂的严重失活,而尽可能积聚的SO42-也有助于SiO 2加入催化剂的下降活性。这些结果确保了在短期内典型的低温选择性催化还原系统中TiO2-SiO2的催化剂的潜在商业化,并指出了设计具有优异活性和增强的SO2耐受性能力的新催化剂的策略。

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