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The impact of reduced phosphorus levels on microbial floc properties during biological treatment of pulp and paper wastewaters

机译:纸浆和造纸废水生物处理过程中磷含量降低对微生物絮凝特性的影响

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The effect of limiting P in activated sludge was investigated in laboratory scale sequencing batch reactors (SBRs) fed effluent from a container board mill. Floc characterization included measurement of hydrophobicity, surface charge, and analysis of extracellular polymeric substances (EPS). Reactor performance was assessed by monitoring COD and inorganic P removal, MLSS, and sludge settleability (SVI and batch settling flux) over a period of eight months. Control reactors (BOD:N:P of 100:5:1) were compared to reactors run under P-limited conditions (100:5:0.3; 100:5:0.1). Reactor performance at lower temperatures (14 °C; control =26 °C) was also studied to assess the impact of P-limitation. Changes in floc structure and the composition of EPS occurred within 1 to 3 days following a reduction in P levels. There was an insignificant increase in SVI; however, gravitational settling velocity and batch settling flux values for low P floc were consistently higher than for floc generated under control conditions. Lower temperatures (14 °C) resulted in a deterioration in floc settling properties at a BOD:N:P of 100:5:1. This impact on settling was significantly reduced at a BOD:P of 100:0.1. Reducing P concentrations in the wastewater treatment system has the potential to improve sludge settleability and reduce final P discharges.
机译:在实验室规模的分批反应器(SBR)中,从集装箱板磨机进料,研究了限制P在活性污泥中的作用。絮凝的表征包括疏水性,表面电荷的测量以及细胞外聚合物质(EPS)的分析。通过监测八个月内的COD和无机P去除率,MLSS和污泥沉降性(SVI和批量沉降通量)来评估反应器性能。将对照反应器(BOD:N:P为100:5:1)与在P限制条件下运行的反应器(100:5:0.3; 100:5:0.1)进行比较。还研究了在较低温度(14°C;对照= 26°C)下的反应堆性能,以评估P限制的影响。磷含量降低后的1至3天内,絮体结构和EPS组成发生了变化。 SVI的增加微不足道;但是,低磷絮凝物的重力沉降速度和间歇沉降通量值始终高于对照条件下产生的絮凝物。在BOD:N:P为100:5:1时,较低的温度(14°C)导致絮凝沉降性能下降。 BOD:P为100:0.1时,对沉降的影响显着降低。降低废水处理系统中的P浓度具有改善污泥沉降性和减少最终P排放的潜力。

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