Tohoku University, Aramaki, Aoba-ku, Sendai, Japan.
Chemosphere. 2011 Jan;82(4):587-91. doi: 10.1016/j.chemosphere.2010.11.020. Epub 2010 Nov 26.
Although effective treatment of acid gases such as HCl, SO(x), and NO(x) is essential for preventing air pollution, current methods pose other environmental problems such as CaCl₂ leaching, reduced landfill lifetimes, and solid waste production. Here we show that acid gases can be treated simply with a Mg-Al oxide slurry. The contribution of Mg-Al oxide to HCl and SO₂ removal increased as a function of the quantity and temperature of Mg-Al oxide. HCl was removed by the reconstruction of Mg-Al layered double hydroxide (Mg-Al LDH) intercalated with Cl⁻ dissociated from HCl in the slurry. SO₂ was oxidized into SO₃ by oxygen in the air flow, dissolved in an aqueous solution, and removed by the reconstruction of Mg-Al LDH intercalated with dissociated SO₄²⁻. Although less pronounced because of surface adsorption, NO was nonetheless removed by Mg-Al oxide. Our results suggest that simultaneous removal of HCl, SO₂, and NO using a Mg-Al oxide slurry may be possible without the concomitant problems of conventional treatment methods.
虽然有效处理 HCl、SO(x) 和 NO(x) 等酸性气体对于防止空气污染至关重要,但目前的方法存在其他环境问题,如 CaCl₂ 浸出、减少垃圾填埋场寿命和产生固体废物。在这里,我们展示了可以简单地使用 Mg-Al 氧化物浆料处理酸性气体。Mg-Al 氧化物对 HCl 和 SO₂ 的去除贡献随着 Mg-Al 氧化物的数量和温度的增加而增加。HCl 通过从浆料中解离的 HCl 重建 Mg-Al 层状双氢氧化物 (Mg-Al LDH) 而被去除。SO₂ 被气流中的氧气氧化成 SO₃,溶解在水溶液中,并通过重建插层有解离的 SO₄²⁻的 Mg-Al LDH 而被去除。尽管由于表面吸附而不那么明显,但 NO 也被 Mg-Al 氧化物去除。我们的结果表明,使用 Mg-Al 氧化物浆料同时去除 HCl、SO₂ 和 NO 可能不需要传统处理方法的伴随问题。