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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Hydrogen sulfide formation control and microbial competition in batch anaerobic digestion of slaughterhouse wastewater sludge: Effect of initial sludge pH
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Hydrogen sulfide formation control and microbial competition in batch anaerobic digestion of slaughterhouse wastewater sludge: Effect of initial sludge pH

机译:屠宰厌氧废水污泥分批厌氧消化中的硫化氢形成对照和微生物竞争:初始污泥pH的影响

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High sulfur content in excess sludge impacts the production of biomethane during anaerobic digestion, meanwhile leads to hydrogen sulfide (H2S) formation in biogas. Effect of initial sludge pH on H2S formation during batch mesophilic anaerobic digestion of slaughterhouse wastewater sludge was studied in this paper. The results demonstrated that when the initial sludge pH increased from 6.5 to 8.0, the biogas production increased by 10.1%, the methane production increased by 64.1%, while the H2S content in biogas decreased by 44.7%. The higher initial sludge pH inhibited the competition of sulfate-reducing bacteria with methane-producing bacteria, and thus benefitted the growth of methanogens. Positive correlation was found between the relative abundance of Desulfomicrobium and H2S production, as well as the relative abundance of Methanosarcina and methane production. More sulfates and organic sulfur were transferred to solid and liquid rather than H2S formation at a high initial pH.
机译:过量污泥中的高硫含量会影响厌氧消化过程中生物甲烷的产生,同时导致沼气中的硫化氢(H2S)形成。 本文研究了初始污泥pH对H2S形成期间H2S形成的影响。 结果表明,当初始污泥pH从6.5增加到8.0时,沼气产量增加10.1%,甲烷产量增加64.1%,而沼气中的H2S含量下降44.7%。 较高的初始污泥pH值抑制硫酸盐减少细菌的培养基,从而受益于甲烷的生长。 在脱硫和H2S生产的相对丰度和H2S生产中的相对丰度以及相对丰度之间的阳性相关性。 将更多的硫酸盐和有机硫以高初始pH转移至固体和液体而不是H 2 S形成。

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