A sample study on nitrogen removal from polluted streams by using hybrid natural wastewater treatment systems

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引用次数: 2

Abstract

The ecological structure and function of the water reservoirs deteriorate dramatically because of streams fed by the excess nitrogen-containing wastewater. To protect the water reservoirs from polluted streams, structures such as natural wastewater treatment (NWT) systems to be created inside or outside streams may be a most suitable and economical solution method to overcoming the problem. In this study, a hybrid NWT system was installed to remove nitrogenous pollutants in Karasu creek (Nigde city, Turkey) in 2014. The system built near the creek consisted of feeding basin (FB), settlement basin (SB), free water surface-constructed wetland (FWS-CW), and overland flow (OF) system respectively. Despite quite high nitrogen loading rates, the system managed to reduce NH4+-N from average 29 mg/L to 12 mg/L and TN from 44 mg/L to 19 mg/L with an average removal efficiency of 57 %. Results revealed that hydraulic and nitrogen loading rate, temperature and seasonal variation, BOD/TKN ratio, hydraulic residence time (HRT), and the use of the filter material were effective on nitrogen removal. The results suggest that the hybrid NWT systems can be used as a low-cost wastewater treatment alternative to improve water quality in streams contaminated by nitrogenous pollutants in the similar areas.
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混合自然污水处理系统去除污水中氮的样本研究
过量含氮废水的流入使水库的生态结构和功能急剧恶化。为了保护水库不受河流污染,在河流内部或外部建造天然污水处理系统可能是最合适和最经济的解决方法。在这项研究中,2014年在卡拉苏河(土耳其尼德市)安装了一个混合NWT系统来去除含氮污染物。在溪旁建造的系统分别由饲养池(FB)、沉降池(SB)、自由水面人工湿地(FWS-CW)和坡面流(of)系统组成。尽管氮负荷率很高,但该系统仍能将NH4+-N从平均29 mg/L降至12 mg/L,将TN从44 mg/L降至19 mg/L,平均去除率为57%。结果表明,水力和氮负荷速率、温度和季节变化、BOD/TKN比、水力停留时间(HRT)和滤料的使用对氮的去除有影响。结果表明,混合NWT系统可以作为一种低成本的污水处理替代方案,用于改善类似地区含氮污染物污染的溪流的水质。
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