首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Removal of High Concentrations of Ammonium from Groundwater in a Pilot-Scale System through Aeration at the Bottom Layer of a Chemical Catalytic Oxidation Filter
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Removal of High Concentrations of Ammonium from Groundwater in a Pilot-Scale System through Aeration at the Bottom Layer of a Chemical Catalytic Oxidation Filter

机译:通过化学催化氧化过滤器底层的曝气从中试系统中的地下水中去除高浓度的铵

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摘要

To remove high concentrations of ammonium from groundwater, pure oxygen and compressed air were fed into a chemical catalytic filter and the ammonium removal efficiency was investigated. The experimental results showed that the oxygen content is the critical limiting factor for ammonium removal. Aeration with 40 mL/min pure oxygen or 100 mL/min compressed air from the bottom of the filter supplied adequate oxygen and approximately 4.2 mg/L of ammonium was removed in this process. Moreover, when the aeration device was moved to 1/3 of the height of the filter bed, the required flow rates of pure oxygen and compressed air decreased further and the turbidity removal was improved. Pouring ozone gas into the filter system, which can inactivate bacteria effectively, can also obtain the remarkable ammonium removal, indicating that ammonium removal was mainly due to the chemical catalytic oxidation in this process rather than the biodegradation. This study provides a novel method for removing high concentrations of ammonium from groundwater.
机译:为了从地下水中去除高浓度的铵,将纯氧和压缩空气送入化学催化过滤器中,并研究了去除铵的效率。实验结果表明,氧含量是去除铵的关键限制因素。从过滤器底部以40 mL / min的纯氧或100 mL / min的压缩空气充气,可提供足够的氧气,在此过程中除去了约4.2 mg / L的铵。此外,当曝气装置移动至滤床高度的1/3时,所需的纯氧和压缩空气流量进一步降低,混浊度提高。将臭氧气体倒入过滤器系统中,可以有效地灭活细菌,也可以实现显着的铵去除,这表明铵去除主要是由于此过程中的化学催化氧化而不是生物降解。这项研究提供了一种从地下水中去除高浓度铵的新方法。

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