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Bioaugmentation with Mixed Hydrogen-Producing Acetogen Cultures Enhances Methane Production in Molasses Wastewater Treatment

机译:用混合氢生产乙基因植物的生物沉积增强熔岩废水处理中的甲烷生产

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摘要

Hydrogen-producing acetogens (HPA) have a transitional role in anaerobic wastewater treatment. Thus, bioaugmentation with HPA cultures can enhance the chemical oxygen demand (COD) removal efficiency and CH4 yield of anaerobic wastewater treatment. Cultures with high degradation capacities for propionic acid and butyric acid were obtained through continuous subculture in enrichment medium and were designated as Z08 and Z12. Bioaugmentation with Z08 and Z12 increased CH4 production by glucose removal to 1.58. Bioaugmentation with Z08 and Z12 increased the COD removal rate in molasses wastewater from 71.60% to 85.84%. The specific H2 and CH4 yields from COD removal increased by factors of 1.54 and 1.63, respectively. Results show that bioaugmentation with HPA-dominated cultures can improve CH4 production from COD removal. Furthermore, hydrogen-producing acetogenesis was identified as the rate-limiting step in anaerobic wastewater treatment.
机译:产生氢气产生醋Etgens(HPA)在厌氧废水处理中具有过渡作用。因此,具有HPA培养物的生物沉积可以增强化学需氧量(COD)去除效率和厌氧废水处理的CH 4产率。通过在富集培养基中的连续脱培培获得具有高降解能力和丁酸和丁酸的培养物,并指定为Z08和Z12。用Z08和Z12的生物沉积通过葡萄糖去除至1.58来增加CH 4生产。具有Z08和Z12的生物沉积增加了糖蜜废水中的COD去除率,从71.60%到85.84%。特定的H 2和CH 4从COD去除产生的产量分别增加了1.54和1.63的因素。结果表明,具有HPA主导培养物的生物沉积可以改善COD去除的CH4生产。此外,将产生氢气产生的乙酰氨基作为厌氧废水处理中的速率限制步骤。

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