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Process kinetics of an activated-sludge reactor system treating poultry slaughterhouse wastewater

机译:活性污泥反应器系统处理家禽屠宰场废水的过程动力学

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The principal objective was to generate the essential kinetic parameters for model simulation and operation management of an activated-sludge reactor (ASR) system treating poultry slaughterhouse wastewater. By varying four different mean cell residence times (θ_c = 4.6-24.3 d), the ASR system (26℃) removed effectively 93.5%-97.2% of chemical oxygen demand (COD) from wastewater. If a high COD removal efficiency and a low effluent volatile suspended solids (VSS) concentration are of great concern, a θ_c of 15-24 d or a food to microorganism (F/M) ratio of 0.3-0.7 kg COD/kg VSS-d is suggested; if resource sustainability and enhanced operation of the ASR system are of great concern, a θ_c of 9 d or an F/M ratio of 0.9 kg COD/kg VSS-d is suggested. The COD residual concentrations and COD removal efficiencies calculated by using the Monod model agreed well with the experimental results. When the parameters k and K_s (△P/P) were respectively varied from-100% to +100%, the parametric sensitivity analysis showed that the COD residual concentration change (△S/S) was highly sensitive to k in the △P/P range between 0% and -40%, causing a marked increase in COD residual concentration.
机译:主要目的是为处理家禽屠宰场废水的活性污泥反应器(ASR)系统生成用于模型仿真和运行管理的基本动力学参数。通过改变四个不同的平均细胞停留时间(θ_c= 4.6-24.3 d),ASR系统(26℃)有效地去除了废水中化学需氧量(COD)的93.5%-97.2%。如果高的COD去除效率和低的废水中挥发性悬浮物(VSS)浓度受到关注,则θ_c为15-24 d或食品与微生物(F / M)之比为0.3-0.7 kg COD / kg V​​SS-建议d;如果非常关注资源可持续性和ASR系统的增强运行,则建议θ_c为9 d或F / M比为0.9 kg COD / kg V​​SS-d。使用Monod模型计算出的COD残留浓度和COD去除效率与实验结果非常吻合。当参数k和K_s(△P / P)分别从100%变为+ 100%时,参数灵敏度分析表明,COD残留浓度变化(△S / S)对△P中的k高度敏感。 / P范围在0%到-40%之间,导致COD残留浓度显着增加。

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