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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Anaerobic bioaugmentation hydrolysis of selected nitrogen heterocyclic compound in coal gasification wastewater
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Anaerobic bioaugmentation hydrolysis of selected nitrogen heterocyclic compound in coal gasification wastewater

机译:煤气化废水中氮杂环化合物的厌氧生物化水解

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Anaerobic bottle experiments were conducted in parallel for 120 consecutive days to perform the bioaugmentation hydrolysis of selected nitrogen heterocyclic compounds (NHCs) in coal gasification wastewater. Due to enhancement with PAC and Fe(OH)(3)@PAC, quinoline, pyridine, and indole were hydrolyzed more effectively. The addition of PAC and Fe(OH)(3)@PAC improved the coagulation capacity of microorganisms, which laid a solid foundation for the removal of selected NHCs and the adverse environmental conditions. Anaerobic degradation of the NHCs occurred first through hydrogenation, then through the opening of the nitrogen heterocycles, followed by the release of ammonia nitrogen and finally the opening of the benzene rings. Enriched Acinetobacter, Levilinea, Comamonas, and Longilinea were the main functional groups responsible for the anaerobic biodegradation of the selected NHCs.
机译:厌氧瓶实验并行于连续120天进行,以进行煤气化废水中所选氮杂环化合物(NHC)的生物沉积水解。 由于与PAC和Fe(OH)(3)的增强(3)@PAC,喹啉,吡啶和吲哚更有效地水解。 添加PAC和Fe(OH)(3)@PAC改善了微生物的凝固能力,其为去除选定的NHC和不利的环境条件为坚实的基础。 NHC的厌氧降解首先通过氢化发生,然后通过氮杂环的开口,然后释放氨氮,最后开启苯环。 富集的传导杆菌,Levilinea,Comamonas和Longilinea是负责所选NHC的厌氧生物降解的主要官能团。

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