Department of Environmental Engineering, St. Pigon Krosno State College Krosno, Poland.
Department of Sustainable Development, Environmental Science and Engineering, Royal Institute of Technology (KTH), Stockholm, Sweden.
Environ Technol. 2021 Jul;42(18):2823-2835. doi: 10.1080/09593330.2020.1714747. Epub 2020 Jan 23.
Optimization of a single-stage, partial nitritation/anammox (PN/A) process for a reject water treatment in a continuous-flow, moving bed biofilm reactor (MBBR) was presented. Response surface method (RSM) was combined with simulation experiments conducted with the validated mathematical model of PN/A in MBBR. The total inorganic nitrogen (TIN) removal efficiency was the response parameter. Eight independent variables were taken into consideration: reject water flow rate (), inflow concentrations of the total ammonium nitrogen (TAN), chemical oxygen demand (COD), alkalinity (ALK), pH, temperature (), dissolved oxygen concentration in the bulk liquid (DO) and aeration time within 60 min intermittent aeration cycle (AERON). Eleven interactions between independent variables were found as significant (< 0.05). The interaction of AERON*DO had the highest impact on the PN/A process. Optimal values of the controlled variables were found for two cases of MBBR operation. Verification of the optimization was done by the simulation and comparison with the data from the empirical experiments. Under the conditions of the fixed hydraulic retention time of about 38 h, volumetric nitrogen loading rate of 0.48 kgN/md, of 22.5°C, TAN of 750 gN/m and optimized values of DO = 3.0 gO/m, AERON = 0.54 h, pH = 7.5, ALK = 80 molHCO/m, COD = 775 gO/m, the predicted TINrem was 78% which is consistent with PN/A performance observed in the technical-scale MBBR systems.
在连续流移动床生物膜反应器(MBBR)中,提出了一种优化单级部分亚硝化/厌氧氨氧化(PN/A)工艺的方法,用于处理废水。响应面法(RSM)与经过验证的 MBBR 中 PN/A 数学模型的模拟实验相结合。总无机氮(TIN)去除效率是响应参数。考虑了 8 个独立变量:废水流量()、进水总氨氮(TAN)浓度、化学需氧量(COD)、碱度(ALK)、pH 值、温度()、液体主体中溶解氧浓度(DO)和 60min 间歇曝气循环(AERON)中的曝气时间。发现 11 个独立变量之间的相互作用具有显著性(<0.05)。AERON*DO 的相互作用对 PN/A 过程的影响最大。对于两种 MBBR 操作情况,找到了受控变量的最佳值。通过模拟和与经验实验数据的比较对优化进行了验证。在固定水力停留时间约 38h、体积氮负荷 0.48kgN/md、温度 22.5°C、TAN 为 750gN/m 和优化后的 DO=3.0gO/m、AERON=0.54h、pH=7.5、ALK=80molHCO/m、COD=775gO/m 的条件下,预测的 TINrem 为 78%,与技术规模 MBBR 系统中观察到的 PN/A 性能一致。