School of Mechanical Engineering and Automation, Northeastern University, 3-11, Wenhua Road, Heping District, Shenyang 110819, China.
School of Mechanical Engineering and Automation, Northeastern University, 3-11, Wenhua Road, Heping District, Shenyang 110819, China.
Bioresour Technol. 2020 Sep;311:123576. doi: 10.1016/j.biortech.2020.123576. Epub 2020 May 25.
The potential of the system, a hybrid anaerobic baffled reactor (HABR) coupled with a multi-stage active biological process (MSABP) reactor, for simulated dairy wastewater at various temperature, hydraulic retention time (HRT), and pH was investigated. Percentage removals of chemical oxygen demand (COD) and NH were optimized using response surface methodology. Under optimized conditions (temperature, 33 °C; HRT, 24 h; pH, 7.35), the removal efficiencies of COD and NH were 99.89% and 97.83%, respectively. Miseq sequencing analysis exhibited that the anaerobic segment of the system was dominated by fermentation and acetogenic bacteria, and in the aerobic segment, microorganisms involved in the nitrogen cycle were significantly enriched. Meanwhile, it could be found that the excess sludge production of the process was much lower than that of other bio-processes. The average excess sludge production rate was 0.025-0.05 g SS/g COD removed under different organic loadings.
该系统(混合厌氧折流板反应器(HABR)与多级活性生物工艺(MSABP)反应器的组合)具有处理模拟乳制品废水的潜力,研究了不同温度、水力停留时间(HRT)和 pH 值下的性能。采用响应面法对化学需氧量(COD)和 NH 的去除率进行了优化。在优化条件下(温度 33°C;HRT 24 小时;pH 值 7.35),COD 和 NH 的去除效率分别达到 99.89%和 97.83%。Miseq 测序分析表明,系统的厌氧段主要由发酵和产乙酸菌主导,而在好氧段,参与氮循环的微生物得到了显著富集。同时,可以发现该工艺的剩余污泥产量明显低于其他生物工艺。在不同有机负荷下,该工艺的平均剩余污泥产率为 0.025-0.05 g SS/g COD 去除。