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An ecological vegetation-activated sludge process (V-ASP) for decentralized wastewater treatment: system development, treatment performance, and mathematical modeling

机译:用于分散废水处理的生态植被活化污泥工艺(V-ASP):系统开发,处理性能和数学建模

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摘要

An environment-friendly decentralized wastewater treatment process that is comprised of activated sludge process (ASP) and wetland vegetation, named as vegetation-activated sludge process (V-ASP), was developed for decentralized wastewater treatment. The long-term experimental results evidenced that the vegetation sequencing batch reactor (V-SBR) process had consistently stable higher removal efficiencies of organic substances and nutrients from domestic wastewater compared with traditional sequencing batch reactor (SBR). The vegetation allocated into V-SBR system could not only remove nutrients through its vegetation transpiration ratio but also provide great surface area for microorganism activity enhancement. This high vegetation transpiration ratio enhanced nutrients removal effectiveness from wastewater mainly by flux enhancement, oxygen and substrate transportation acceleration, and vegetation respiration stimulation. A mathematical model based on ASM2d was successfully established by involving the specific function of vegetation to simulate system performance. The simulation results on the influence of operational parameters on V-ASP treatment effectiveness demonstrated that V-SBR had a high resistance to seasonal temperature fluctuations and influent loading shocking.
机译:开发了由活性污泥法(ASP)和湿地植被组成的环保型分散废水处理工艺,被称为植被活化污泥工艺(V-ASP),用于分散废水处理。长期的实验结果表明,与传统的顺序分批反应器(SBR)相比,植物顺序分批反应器(V-SBR)工艺始终稳定地提高了生活污水中有机物和养分的去除效率。分配到V-SBR系统中的植被不仅可以通过其植被蒸腾比去除养分,而且可以为微生物活性增强提供很大的表面积。较高的植被蒸腾比主要通过通量增强,氧气和底物运输加速以及植被呼吸刺激来提高废水中的养分去除效率。通过包含植被的特定功能来模拟系统性能,成功建立了基于ASM2d的数学模型。对操作参数对V-ASP处理效果的影响的仿真结果表明,V-SBR对季节性温度波动和进水负荷冲击具有很高的抵抗力。

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