Fe/Al-SiO2复合金属氧化物用于燃煤烟气中汞的脱除

Removal of elemental mercury from flue gas by Fe/Al-SiO2 complex

  • 摘要: 采用不同方法制备了Fe/Al-SiO2复合金属氧化物以模拟赤泥成分,模拟烟气条件下考察其脱汞性能。结果表明,采用溶胶-凝胶法得到的复合金属氧化物在300-450 ℃具有优异的脱汞性能,其中,在350 ℃、3 h内平均脱汞率可达到94.8%。Fe2O3为Hg0的氧化提供了晶格氧和化学吸附氧;SiO2形成的硅溶胶则有利于活性组分Fe2O3的分散,增强了Hg0与活性位的接触。基本模拟烟气中存在微量HCl和NO时,Hg0脱除率接近100%;当烟气中存在0.2 mL/min、0.4 mL/min的SO2时,吸附剂的平均脱汞率分别降至90.7%、53.4%,这主要是由于SO2与Fe2O3反应生成Fe2(SO43,导致了Fe2O3的失活并抑制汞的脱除。

     

    Abstract: The Fe/Al-SiO2 composite metal oxides were prepared by various methods to simulate the composition of red mud. A series of experiments were carried out to study the mercury removal performance from simulated flue gas. The results show that the composite metal oxide obtained by sol-gel method has an excellent mercury removal performance in a temperature range of 300-450 ℃. Among them, average mercury removal efficiency can reach 94.8% within 3 h at 350 ℃. Fe2O3 provides lattice oxygen and chemical adsorbed oxygen for the oxidation of Hg0, and SiO2 is conducive to the dispersion of the active component Fe2O3, which enhances the contact between Hg0 and the active sites. In the presence of trace HCl and NO in flue gas, the removal efficiency of Hg0 is close to 100%. However, the average mercury removal efficiency reduces to 90.7% and 53.4% respectively after adding 0.2 mL/min and 0.4 mL/min SO2, since the reaction of SO2 and Fe2O3 produces Fe2(SO4)3, leading to the deactivation of Fe2O3.

     

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