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Type Ⅰ methanotrophs within WTTPs: Can integrate methane mitigation, biofuel production, and nitrogen removal?

机译:WTTP中的Ⅰ型甲烷营养生物:是否可以整合甲烷减排,生物燃料生产和氮去除功能?

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Anaerobic digestion (AD) process has been widely adopted by wastewater treatment plant (WWTPs) for both waste minimization and biogas production as an alternative energy source. However, multiple obstacles limit the direct energy generation of the AD driven biogas. Furthermore, biological nitrogen removal processes are hindered by carbon source depletion resulting in excessive nitrogen concentrations in the effluent. Fortunately, methanotrophs can be the remedy to valorise the anaerobic digestion driven biogas to meet the targeted nitrogen concentration in the effluent. Methanotrophs have the ability to integrate methanol recovery from methane with denitrification. In this study, the potential for integrating type I methanotrophs within WWTPs was investigated using mixed culture enriched from WWTPs sludge and employing the nitrate rich final sedimentation effluent as the growth medium.
机译:厌氧消化(AD)工艺已被废水处理厂(WWTP)广泛采用,以减少废物和生产沼气作为替代能源。但是,多重障碍限制了AD驱动沼气的直接能量产生。此外,碳源耗竭阻碍了生物脱氮过程,导致废水中氮的浓度过高。幸运的是,甲烷氧化菌可以作为使厌氧消化驱动的沼气增值以满足污水中目标氮浓度的补救方法。甲烷养生物具有将甲烷中的甲醇回收物与反硝化作用相结合的能力。在这项研究中,利用富含污水处理厂污泥的混合培养物,并使用富含硝酸盐的最终沉淀流出物作为生长培养基,研究了在污水处理厂中整合I型甲烷营养生物的潜力。

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