Implementing a completely autotrophic nitrogen removal over nitrite process using a novel umbrella basalt fiber carrier

Shan-Wei Li, Wei Xu, Yu-Jie Xie, Liang Fu, Qi Gao, Xiao-Chun Wang, Yan Li, Zhiqiang Wu
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Abstract

The completely autotrophic nitrogen removal over nitrite (CANON) process is significantly hindered by prolonged start-up periods and unstable nitrogen removal efficiency. In this study, a novel umbrella basalt fiber (BF) carrier with good biological affinity and adsorption performance was used to initiate the CANON process. The CANON process was initiated on day 64 in a sequencing batch reactor equipped with umbrella BF carriers. During this period, the influent NH4+-N concentration gradually increased from 100 to 200 mg·L−1, and the dissolved oxygen was controlled below 0.8 mg L−1. Consequently, an average ammonia nitrogen removal efficiency (ARE) and total nitrogen removal efficiency (TNRE) of ∼90 and 80% were achieved, respectively. After 130 days, ARE and TNRE remained stable at 92 and 81.1%, respectively. This indicates a reliable method for achieving rapid start-up and stable operation of the CANON process. Moreover, Candidatus Kuenenia and Candidatus Brocadia were identified as dominant anammox genera on the carrier. Nitrosomonas was the predominant genus among ammonia-oxidizing bacteria. Spatial differences were observed in the microbial population of umbrella BF carriers. This arrangement facilitated autotrophic nitrogen removal in a single reactor. This study indicates that the novel umbrella BF carrier is a highly suitable biocarrier for the CANON process.
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利用新型伞状玄武岩纤维载体实现完全自养的亚硝酸盐脱氮过程
完全自养的亚硝酸盐脱氮(CANON)工艺因启动期长和脱氮效率不稳定而受到严重阻碍。本研究采用了一种具有良好生物亲和性和吸附性能的新型伞状玄武岩纤维(BF)载体来启动 CANON 工艺。在一个配备了伞状玄武岩纤维载体的序批式反应器中,CANON 工艺于第 64 天启动。在此期间,进水 NH4+-N 浓度从 100 mg-L-1 逐渐增加到 200 mg-L-1,溶解氧控制在 0.8 mg L-1 以下。因此,平均氨氮去除率(ARE)和总氮去除率(TNRE)分别达到了 90% 和 80%。130 天后,氨氮去除率和总氮去除率分别稳定在 92% 和 81.1%。这表明有一种可靠的方法可以实现 CANON 工艺的快速启动和稳定运行。此外,Kuenenia 菌和 Brocadia 菌被确定为载体上的优势厌氧菌属。亚硝基单胞菌是氨氧化细菌中的优势菌属。在伞状 BF 载体的微生物群中观察到了空间差异。这种排列方式有利于在单个反应器中进行自养脱氮。这项研究表明,新型伞状生物燃料载体是一种非常适合 CANON 工艺的生物载体。
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