Vavilin V A, Vasil'ev V B, Abramov A V, Karpukhin V F, Iakubova A R
Antibiot Med Biotekhnol. 1987 Mar;32(3):214-8.
The main kinetic relationships of the process of biological oxidation of antibiotic production sewage were studied in laboratory models of mixer aerotanks. A relationship between the specific rates of BOD (biological oxygen demand) decreasing and BOD concentration in aerotanks was developed on the basis of the results relating to treatment of 8 types of the sewage within the ranges of the pure water BOD equal to 18-220 mg/l and the loads of 0.18-3.85 g BOD/g X day. To describe this relationship the following models were tested for their adequacy: Michaelis-Menten and Mozer models, a general model and a model of the first order reaction equation. The Mozer model with the relative root-mean-square deviation of 18.3 per cent proved to be the best in description of wide ranges of pure water BOD changing. The first order model with deviation of 12 per cent was the best in describing the process with low loads.
在混合曝气池的实验室模型中研究了抗生素生产污水生物氧化过程的主要动力学关系。基于处理8种类型污水的结果,得出了曝气池中生化需氧量(BOD)降低的比速率与BOD浓度之间的关系,这些污水的纯水BOD范围为18 - 220 mg/l,负荷为0.18 - 3.85 g BOD/g X天。为描述这种关系,测试了以下模型的适用性:米氏模型、莫泽模型、通用模型和一级反应方程模型。相对均方根偏差为18.3%的莫泽模型被证明最能描述纯水BOD变化的广泛范围。偏差为12%的一级模型在描述低负荷过程时表现最佳。