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The comparison of different mathematical methods to determine the BOD parameters, a new developed method and impacts of these parameters variations on the design of WWTPs

机译:确定BOD参数的不同数学方法的比较,一种新开发的方法以及这些参数变化对污水处理厂设计的影响

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One of the most common tests for the determination of strength and organic content of wastewater is the biochemical oxygen demand (BOD). This test is widely applied to define organic water pollution and to control the performance of wastewater treatment plants. Generally, BOD is standardized by the measurement of oxygen consumption in 5 days (BOD_5). But, determination of the ultimate biochemical oxygen demand (BOD_U), which is taken 28 days and the reaction rate constant (k) are necessary to understand the organic strength of the wastewater. In this study, the different mathematical methods in order to determine the BOD parameters (BOD_U, k) and two different BOD test method (respirom-eter and dilution method) are investigated comparatively. Also, a new method based on cubic spline method to estimate ultimate BOD values is developed. Moreover, the impacts of BOD parameters on the design of an activated sludge and aerated lagoon systems are analyzed by using a written user-friend program, which is developed for designing WWTPs by the mean of C++ programming language. Analytical results show that there is a satisfactory linear relationship between respiro-metric and dilution BOD values. Also, the mathematical methods, including new developed method generally provide consistent results with high correlation coefficients. On the other hand, it is found that LOG differences method for respirometric test and the new developed method for dilution test do not give good correlation coefficients. Moreover, activated sludge and aerated lagoons systems' sizes show significant changing depending on the variations of the BOD parameters. Consequently, BOD parameters show significant changes depending on the different test and mathematical methods. Therefore, the changing of these parameters impact a lot of situation such as ultimate BOD estimation, the wastewater treatment plants design, the dimensions of the plants and cost of the plants.
机译:用于确定废水的强度和有机含量的最常见测试之一是生化需氧量(BOD)。该测试被广泛应用于定义有机水污染并控制废水处理厂的性能。通常,BOD通过测量5天的氧气消耗量(BOD_5)进行标准化。但是,确定最终的生化需氧量(BOD_U)(需要28天)和反应速率常数(k)才能确定废水的有机强度。在这项研究中,为了确定BOD参数(BOD_U,k)的不同数学方法和两种不同的BOD测试方法(respirometer和稀释法)进行了比较研究。此外,还开发了一种基于三次样条方法的最终BOD估计值的新方法。此外,使用书面用户友好程序分析了BOD参数对活性污泥和充气泻湖系统设计的影响,该程序是通过C ++编程语言开发的,用于设计污水处理厂。分析结果表明,呼吸测定和稀释BOD值之间存在令人满意的线性关系。而且,包括新开发的方法在内的数学方法通常提供具有高相关系数的一致结果。另一方面,发现用于呼吸测试的LOG差值法和用于稀释测试的新开发方法没有给出良好的相关系数。此外,活性污泥和充气泻湖系统的尺寸根据BOD参数的变化显示出显着变化。因此,根据不同的测试和数学方法,BOD参数显示出显着变化。因此,这些参数的变化会影响很多情况,例如最终的BOD估算,废水处理厂的设计,工厂的规模和工厂的成本。

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