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Impact of reactive settler models on simulated WWTP performance

机译:反应式沉降器模型对模拟污水处理厂性能的影响

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Including a reactive settler model in a wastewater treatment plant model allows representation of the biological reactions taking place in the sludge blanket in the settler, something that is neglected in many simulation studies. The idea of including a reactive settler model is investigated for an ASM1 case study. Simulations with a whole plant model including the non-reactive Takacs settler model are used as a reference, and are compared to simulation results considering two reactive settler models. The first is a return sludge model block removing oxygen and a user-defined fraction of nitrate, combined with a non-reactive Takacs settler. The second is a fully reactive ASM1 Takacs settler model. Simulations with the ASM1 reactive settler model predicted a 15.3% and 7.4% improvement of the simulated N removal performance, for constant (steady-state) and dynamic influent conditions respectively. The oxygenitrate return sludge model block predicts a 10% improvement of N removal performance under dynamic conditions, and might be the better modelling option for ASM1 plants: it is computationally more efficient and it will not overrate the importance of decay processes in the settler.
机译:在废水处理厂模型中包括反应沉降器模型,可以表示沉降器中污泥层中发生的生物反应,这在许多模拟研究中都被忽略了。对于ASM1案例研究,研究了包括反应式沉降器模型的想法。以包括非反应性塔卡奇沉降器模型的整个工厂模型的模拟作为参考,并与考虑两个反应性沉降器模型的模拟结果进行比较。首先是回流污泥模型模块,该模块去除了氧气和用户定义的硝酸盐部分,并结合了非反应性的塔卡奇沉降器。第二个是完全反应性的ASM1塔卡奇定居者模型。使用ASM1反应沉降器模型进行的模拟预测,在恒定(稳态)和动态进水条件下,模拟的N去除性能分别提高了15.3%和7.4%。氧气/硝酸盐回流污泥模型模块预测动态条件下的氮去除性能将提高10%,对于ASM1工厂而言可能是更好的建模选择:计算效率更高,并且不会高估沉降器中腐烂过程的重要性。

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