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Updating a model of pulp and paper wastewater treatment in a partial-mix aerated stabilization basin system

机译:在部分混合充气稳定盆系统中更新纸浆和造纸废水处理的模型

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A relatively simple set of calculations was presented in 1994 to evaluate the effectiveness of each ASB cell as reactor, clarifier, and digester. The steady-state model, which incorporated estimates of solids settling and benthal feedback of BOD_5 and nutrients, has been a reasonable diagnostic tool for municipal and industrial applications. Results have aided in understanding normal system function, the nature of chronic inefficiencies of individual systems, and appropriate modifications to meet changes in discharge requirements. For applications in the pulp and paper industry, several changes have been incorporated recently. Nitrogen limitation is not needed in modeling pulp and paper ASB reactions. Slowly biodegradable material is modeled as a contributor to soluble BOD_5, and this contribution becomes a significant factor in the latter segments of an ASB. Phosphorus availability is modeled as a stoichiometric control of soluble BOD_5 uptake. Anoxic microorganisms are assumed to be responsible for a portion of the soluble BOD_5 consumption in the first ASB aeration zone. Finally, the long-term nutrient capture in ASBs is modeled as 3% for nitrogen and 28% for phosphorus.
机译:1994年提出了一组相对简单的计算方法,以评估每个ASB电池作为反应器,澄清池和消化池的有效性。稳态模型结合了BOD_5和养分的固体沉降和底栖生物反馈估计值,已成为市政和工业应用的合理诊断工具。结果有助于理解正常的系统功能,单个系统长期效率低下的性质以及进行适当修改以满足排放要求的变化。对于制浆和造纸工业中的应用,最近已进行了一些更改。对纸浆和纸张ASB反应的建模不需要氮限制。将可缓慢生物降解的材料建模为可溶BOD_5的贡献者,这种贡献成为ASB后期的重要因素。磷的有效性被建模为可溶性BOD_5吸收的化学计量控制。假定缺氧微生物是第一ASB曝气区中一部分可溶性BOD_5消耗的原因。最后,ASBs中长期养分捕获的模型为氮3%,磷28%。

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