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首页> 外文期刊>Biochemical Engineering Journal >Novel one-stage reactor configuration for deammonification process: Hydrodynamic evaluation and fast start-up of NITRAMMOX (R) reactor
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Novel one-stage reactor configuration for deammonification process: Hydrodynamic evaluation and fast start-up of NITRAMMOX (R) reactor

机译:用于Deammonification过程的新型单级反应器配置:氮毒剂(R)反应器的流体动力学评估和快速启动

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摘要

This study brings an alternative to treat high ammonium-containing wastewater, presenting a new approach exclusively developed to operate one-stage deammonification process called NITRAMMOX (R). The reactor was developed to reduce costs and simplify the operation, promising to be favorable to ANAMMOX and AOB. The correlation between reactor configuration and process efficiency were evaluated using the hydrodynamic characterization, flow anomalies identification, oxygen mass transfer efficiency and reactor start-up. NITRAMMOX (R) quickly acclimated bacteria after inoculation, presenting a 12-day start-up using 6 h-theta, 25 degrees C. The hydrodynamic results obtained at different superficial gas velocity (0.40 to 31.8 cm min(-1)) showed a quick oxygen mass transfer and movement, due to the adequate geometric proportion and reactor design. Deviations from ideality do not compromise the ability of the tracer distribution throughout the NITRAMMOX (R), indicating great fluid longitudinal dispersion with no dead zones (theta(r)>=theta(t)), no short circuits (Psi <= 0.3) and good hydraulic efficiency (lambda > 0.75), approaching the behavior of a complete mixing reactor. The treatment concept by NITRAMMOX (R) was shown to be suitable for biomass retention and to establish and favor ANAMMOX bacteria, which can achieve high nitrogen removal rates. The reactor can be applied as a new technology for field application in wastewater treatment systems with low C/N ratio.
机译:该研究制作了一种替代方法来治疗含高铵的废水,提出了一种新的方法,该方法专门开发,以操作称为氮毒素(R)的一级脱甘油化过程。制定了反应器以降低成本并简化操作,有希望对Anammox和Aob有利。使用流体动力学表征评估反应器配置和工艺效率之间的相关性,流动异常识别,氧气传质效率和反应堆初创。氮毒毒毒素(R)接种后快速驯化的细菌,使用6 H-Theta,25℃呈现为12天的启动。在不同浅表气体速度(0.40至31.8cmmin(-1))下获得的流体动力学结果显示出A.由于足够的几何比例和反应堆设计,快速氧气传输和运动。来自理想性的偏差不会损害跟踪器分布在整个氮毒剂(R)中的能力,表明没有死区的较大的流体纵向分散(θ(r)> =θ(t)),没有短路(psi <= 0.3)良好的液压效率(Lambda> 0.75),接近完全混合反应器的行为。通过氮毒剂(R)的治疗概念被证明适用于生物质保留,并建立和有利于厌氧菌细菌,这可以实现高氮去除率。反应器可作为具有低C / N比的废水处理系统中的现场应用的新技术。

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