Research on Ammonium Removal from Wastewater by Adsorption and Ozonation Processes

Ján Derco, Nikola Šoltýsová, Ronald Zakhar, Jakub Jurík
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Abstract

With the ongoing amendment of the European Union legislation on the treatment of municipal wastewater, stricter requirements for the removal of pollutants are expected, which calls for the need for innovative wastewater treatment technologies. Our research was focused on the removal of ammonium nitrogen from municipal wastewater by nontraditional processes based on the use of adsorption processes on zeolite (ZEO) and ozone. Adsorption, adsorption-regeneration, and adsorptive ozonation processes were applied. All processes were carried out in a completely stirred reactor (CSR) and a jet-loop reactor (JLR) with external recirculation of the reaction mixture. Experimental measurements were carried out with real municipal wastewater after mechanical treatment. The best results were achieved in the adsorption-regeneration process, which was implemented in a current loop reactor. An average ammonium nitrogen removal efficiency of 53.1% was obtained by adjusting the pH value to 10.0. Average values of 46.2% and 49.2% for chemical oxygen demand (COD) and total organic carbon (TOC) removal efficiencies are an added value of the process. The values of ammonium nitrogen, COD, and TOC removal efficiencies in individual cycles confirm the high stability of the process.
利用吸附和臭氧工艺去除废水中氨的研究
随着欧盟对城市污水处理立法的不断修订,预计将对污染物的去除提出更严格的要求,这就需要创新的污水处理技术。我们的研究重点是利用沸石(ZEO)吸附工艺和臭氧等非传统工艺去除城市污水中的铵态氮。研究采用了吸附、吸附-再生和吸附臭氧工艺。所有过程都是在完全搅拌反应器(CSR)和反应混合物外部再循环的喷射回路反应器(JLR)中进行的。实验测量采用了机械处理后的真实城市污水。在电流循环反应器中实施的吸附-再生工艺取得了最佳效果。将 pH 值调至 10.0 时,铵态氮的平均去除率为 53.1%。化学需氧量(COD)和总有机碳(TOC)的平均去除率分别为 46.2% 和 49.2%,这是该工艺的附加值。单个循环中的铵态氮、化学需氧量和总有机碳去除率值证实了该工艺的高度稳定性。
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