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增加阳极表面积对连续单室生物电化学系统中亚硝酸盐缺失的氨氧化的影响。

Influence of increasing anode surface area on nitrite-absent ammonium oxidation in a continuous single-chamber bio-electrochemical system.

机构信息

Department of Advanced Energy Engineering, Chosun University, Gwangju, 61452, Republic of Korea.

Department of Advanced Energy Engineering, Chosun University, Gwangju, 61452, Republic of Korea.

出版信息

Chemosphere. 2024 Apr;353:141579. doi: 10.1016/j.chemosphere.2024.141579. Epub 2024 Feb 29.

DOI:10.1016/j.chemosphere.2024.141579
PMID:38430944
Abstract

Reducing energy consumption in conventional nitrogen removal processes is a crucial and urgent requirement. This study proposes an efficient electrode-dependent bio-electrochemical anaerobic ammonium (NH-N) oxidation (BE-ANAMMOX) process, employing a carbon brush as the electron acceptor and voltage of 0.8 V. The applied voltage facilitated the removal of NH-N with a maximum removal efficiency of 41% and a Coulombic efficiency of 40.92%, without the addition of nitrite (NO-N). Furthermore, the NH-N removal efficiency demonstrated an increase corresponding to the increase in the anodic surface area. The bio-electrochemical NH-N removal achieved remarkable reductions, eliminating the need for O and NO-N by 100%, lowering energy consumption by 67%, and reducing CO emissions by 66% when treating 1 kg of NH-N. An analysis of the microbial community revealed an increase in nitrifiers and denitrifiers, including Exiguobacterium aestuarii, Alishewanella aestuarii, Comamonas granuli, and Acinetobacter baumannii. This intricate process involved the direct conversion of NH-N to N by ANAMMOX bacteria through extracellular electron transfer, all without NO-N. Thus, bio-electrochemical NH-N removal exhibits promising potential for effective nitrogen removal in wastewater treatment facilities.

摘要

减少传统脱氮工艺的能耗是一项关键且紧迫的需求。本研究提出了一种高效的电极依赖型生物电化学厌氧氨氧化(BE-ANAMMOX)工艺,采用碳纤维刷作为电子受体,施加 0.8 V 的电压。施加电压有助于去除 NH-N,最大去除效率达到 41%,库仑效率达到 40.92%,无需添加亚硝酸盐(NO-N)。此外,NH-N 的去除效率随着阳极表面积的增加而增加。生物电化学 NH-N 去除实现了显著的减排,处理 1 公斤 NH-N 时,可 100%去除 O 和 NO-N,能耗降低 67%,CO 排放量降低 66%。微生物群落分析显示,硝化菌和反硝化菌的数量增加,包括海洋极端杆菌(Exiguobacterium aestuarii)、港湾盐单胞菌(Alishewanella aestuarii)、颗粒ocomonas(Comamonas granuli)和鲍曼不动杆菌(Acinetobacter baumannii)。这一复杂过程涉及 ANAMMOX 细菌通过细胞外电子转移将 NH-N 直接转化为 N,整个过程均无需 NO-N。因此,生物电化学 NH-N 去除在污水处理厂中具有有效去除氮的潜力。

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