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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Exploring the linkage between free nitrous acid accumulation and nitrous oxide emissions in a novel static/oxic/anoxic process
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Exploring the linkage between free nitrous acid accumulation and nitrous oxide emissions in a novel static/oxic/anoxic process

机译:一种新型静态/氧化过程中含硝酸蓄积和氧化亚氮排放的联系

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摘要

In this work, four batch tests were conducted to comprehensively explore the effects of free nitrous acid (FNA) accumulation on nitrous oxide (N2O) emissions in a novel energy-saving and N2O-reducing static/oxic/anoxic (SOA) process. With the accumulation of FNA, the N2O emission factor increased from 1.51% to 4.32%, and the N2O emission ratio contributed by ammonia-oxidizing bacteria (AOB) increased from 74.0% to 78.6%, accordingly. Mechanism studies show that produced FNA and weakened aerobic metabolism bring synergy to competition between reductases. Aeration conditions and FNA cytotoxicity exert a greater impact on nitrite-oxidizing bacteria than on AOB, thus enhancing the potential for nitrite accumulation. Considering the removal of nitrogen and phosphorus and the reduction of N2O emissions in the SOA process, it is feasible to keep the average dissolved oxygen above 2.0 mg/L under the premise of nitrite accumulation.
机译:在这项工作中,进行了四种批次测试以全面地探索自由亚硝酸(FNA)积聚对新型节能和N2O降低静态/氧氧/氧基/氧基/氧基/氧基/氧基(SOA)过程中的氧化亚氮(N2O)排放的影响。 随着FNA的积累,N2O排放因子增加到5.51%至4.32%,氨氧化细菌(AOB)贡献的N2O排放比率相应地增加至78.6%。 机制研究表明,产生的FNA和有氧代谢弱化使协同作用在还原酶之间进行竞争。 曝气条件和FNA细胞毒性对硝酸盐氧化细菌产生更大的影响而不是AOB,从而增强亚硝酸盐积聚的可能性。 考虑到氮气和磷的去除以及SOA过程中的N2O排放的降低,在亚硝酸盐积累的前提下将平均溶解氧保持在2.0mg / L以上的平均溶解氧是可行的。

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