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Impact of influent wastewater quality on nitrogen removal rates in multistage treatment wetlands

机译:进水废水质量对多级处理湿地脱氮率的影响

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摘要

Nitrogen removal in treatment wetlands is influenced by many factors, and the presence of electron donors (biodegradable organic matter) and electron acceptors (nitrate ions) is the main limiting one; for obtaining these conditions, multistage treatment wetlands (MTWs) are required, where an extensive nitrification can be obtained in the first stages under aerobic conditions leaving then to the following anoxic/anaerobic stages the duty of the denitrification. Most of the biodegradable organic matter is however oxidised in the first stages, and therefore, the inlet to the denitrification beds is usually poor of easily degradable carbon sources. This study is comparing the long-term performances obtained at several MTWs operating in Europe (North and South) and North Africa in order to understand if there is a significant avail in making use of the influent chemical oxygen demand (COD)/N ratio during the design phase for ensuring proper performances in terms of N overall removal. The statistic analysis performed in this study have shown that MTWs are capable to ensure sufficient removal of both organic and nutrients even in unfavourable proportions of macronutrients (C and N). The usual assumptions for conventional biological treatment systems concerning adequate C/N ratios seem to be dubious in case of wastewater treatment in MTWs.
机译:处理湿地中的氮去除受到许多因素的影响,电子给体(可生物降解的有机物)和电子受体(硝酸根离子)的存在是主要的限制因素。为了获得这些条件,需要多级处理湿地(MTW),其中在有氧条件下的第一阶段可以实现广泛的硝化作用,然后再进行后续的缺氧/厌氧阶段的反硝化作用。然而,大多数可生物降解的有机物在第一阶段被氧化,因此,反硝化床的进口通常缺乏易于降解的碳源。这项研究正在比较在欧洲(北部和南部)和北非的数个MTW处获得的长期性能,以了解在此期间利用进水化学需氧量(COD)/ N比率是否有重大利用在设计阶段,以确保N整体去除方面的适当性能。在这项研究中进行的统计分析表明,即使在不利比例的大量营养素(碳和氮)中,MTW也能够确保有机和营养素的充分去除。对于常规生物处理系统,有关适当的C / N比的通常假设对于MTW中的废水处理似乎是可疑的。

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