School of Environmental Science and Engineering, Taiyuan University of Technology, Taiyuan, Shanxi 030024, China.
Bioresour Technol. 2024 Jun;402:130773. doi: 10.1016/j.biortech.2024.130773. Epub 2024 May 1.
This study explored the use of biochar to accelerate the establishment of anaerobic ammonium oxidation (anammox) reactors operating at 15 ± 1℃. Incorporating 10 g/L bamboo charcoal in S1 accelerated the start-up of anammox in 87 days, which was significantly shorter than 103 days in S0 (without biochar). After 140 days, S1 exhibited a 10.9 % increase in nitrogen removal efficiency due to a 28.9 % elevation in extracellular polymeric substances, bolstering anammox bacterial resilience. Predominant anammox bacteria (Cadidatus Brocadia and Cadidatus Jettenia) showed relative abundances of 3.19 % and 0.38 % in S1, respectively, which were significantly higher than 0.40 % and 0.05 % in S0. Biochar provides favorable habitats for the enrichment of anammox bacteria and accelerates the establishment of anammox at low temperatures. This finding holds promise for enhancing the efficiency of anammox in cold climates and advancing sustainable wastewater nitrogen removal.
本研究探索了生物炭在加速 15±1℃ 下运行的厌氧氨氧化(anammox)反应器中的应用。在 S1 中添加 10g/L 的竹炭可在 87 天内加速 anammox 的启动,明显短于 S0(无生物炭)的 103 天。在 140 天后,由于胞外聚合物物质提高了 28.9%,S1 的氮去除效率提高了 10.9%,增强了 anammox 细菌的恢复能力。优势 anammox 菌(Cadidatus Brocadia 和 Cadidatus Jettenia)在 S1 中的相对丰度分别为 3.19%和 0.38%,明显高于 S0 中的 0.40%和 0.05%。生物炭为 anammox 菌的富集提供了有利的栖息地,并加速了 anammox 在低温下的建立。这一发现有望提高寒冷气候下 anammox 的效率,推进可持续的废水脱氮。