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Integrated Determination of Chemical Oxygen Demand and Biochemical Oxygen Demand

机译:综合测定化学需氧量和生物化学需氧量

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摘要

Chemical oxygen demand (COD) and biochemical oxygen demand (BOD) with irreplaceable significance are comprehensive indicators for evaluating water quality. Effective control of water pollution depends on the rapid determination of these indicators. In the study, the rapid determination of BOD was carried out by activated sludge aeration degradation method. The BOD quantification was achieved by measuring the COD change before and after microbial degradation (BOD.COD). Single-factor experiment was employed to investigate the effect of operating parameters on the determination of BOD. In addition, the interactions of main variables were evaluated by Box-Behnken Design, and the results showed that the interaction term of reaction time and initial pH value had a significant effect. The optimum conditions for determination of BOD were reaction time of 273.68 min, dosage of activated sludge of 8.72 mL, and pH of 7.18. Under the optimal conditions, the correlation experiment showed that BOD.COD and BOD 5 exhibited a good linear relationship in the concentration range of 0-500 mg/L, and the correlation coefficient R-2 was 0.996. It indicated that the method realized not only the rapid determination of BOD, but also the integrated determination of COD and BOD.
机译:具有不可替代意义的化学需氧量(COD)和生物化学需氧量(BOD)是评估水质的综合指标。有效控制水污染取决于这些指标的快速测定。在该研究中,通过活性污泥通气降解方法进行BOD的快速测定。通过测量微生物降解之前和之后的COD变化(BOD.COD)来实现BOD定量。单因素实验用于研究操作参数对BOD的测定的影响。此外,通过Box-Behnken设计评估主要变量的相互作用,结果表明,反应时间和初始pH值的相互作用项具有显着效果。测定BOD的最佳条件是273.68min的反应时间,活性污泥的剂量为8.72ml,pH为7.18。在最佳条件下,相关实验表明BOD.COD和BOD 5在0-500mg / L的浓度范围内表现出良好的线性关系,并且相关系数R-2为0.996。它表明该方法不仅实现了BOD的快速测定,还实现了COD和BOD的综合测定。

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