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Hydrogen sulfide (H2S) emission control by aerobic sulfate reduction in landfill

机译:亚硫酸盐(H2S)排放控制通过有氧硫酸盐减少垃圾填埋场

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H2S emissions from landfill sites resulting from sulfate reduction has become a serious human health and ecological safety issue. This study investigated H2S emission behavior and sulfate metabolism occurring in simulated landfills under different operating conditions. Under aerobic conditions, great attenuation of the original sulfate content (from around 6000?mg?kg(-1) dropped to below 800?mg?kg(-1)) with corresponding accumulation of sulfides and elemental sulfur were observed, indicating that sulfate reduction processes were intense under such conditions. Analysis of the bacterial community in these landfills showed great abundance (1.10%) and diversity of sulfur reducing types, confirming their active involvement in this process. In particular, the total abundance of sulfate-reducing bacteria increased nearly 30 times under aerobic conditions, leading to the transformation of sulfate to sulfide and other reduced sulfur species. Although exposure to air promoted the accumulation of sulfide, it did not lead to an increase in H2S release in these landfills.
机译:硫酸盐降低引起的垃圾填埋场的排放已成为严重的人类健康和生态安全问题。该研究在不同操作条件下研究了模拟垃圾填埋场中发生的H2S排放行为和硫酸盐代谢。在有氧条件下,原始硫酸盐含量的大量衰减(从约6000×mg?kg(-1)滴到低于800×mg?kg(-1)),观察到具有相应硫化物和元素硫的积累,表明硫酸盐在这种条件下,减少过程是强烈的。这些垃圾填埋场中的细菌群落分析表现出巨大丰富(1.10%)和硫磺减少类型的多样性,证实了它们在这一过程中的活跃参与。特别是,硫酸盐还原细菌的总丰富在有氧条件下增加了近30倍,导致硫酸盐转化为硫化物和其他还原的硫种类。虽然暴露于空气促进硫化物的积累,但它不会导致这些垃圾填埋场中H2S释放的增加。

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