磷的行为特征及微泡浮选控制海底沉积物磷释放的封盖作用

IF 2.4 4区 环境科学与生态学 Q2 WATER RESOURCES
Yong-Ho Choi, Yong-Hoon Jeong, M. Jang, D. Kwak
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引用次数: 0

摘要

在富营养化湖泊中,应用微气泡对底栖沉积物表面的磷进行了去除,改善了水体环境条件。在实验室规模的实验装置中,使用微气泡浮选(MF)从海底沉积物和上覆流场样品中去除磷。基于质量平衡确定的MF处理的P示踪观测结果表明,悬浮浮渣中的P积累浓度高于沉积污泥中的P。此外,虽然分离出的可溶性磷含量不多,但悬浮浮渣中可溶性磷的去除效率高于总磷。此外,注入微气泡抑制了磷的释放,减少了厌氧作用,改善了湖泊上覆水中的环境条件。我们还证实,浮选分离后沉淀的污泥引起了封盖,通过在沉积物表面形成一层来抑制磷的释放。直接P浮选分离、注入微气泡提供氧气以及再沉积污泥的封盖效果是MF的优点,我们的研究结果表明,有必要进行现场应用研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Behavior characteristics of phosphorus and capping effect of microbubble flotation to control phosphorus release in the benthic sediment
Microbubbles were applied to remove phosphorus (P) and improve environmental water conditions on the surface of the benthic sediment in a eutrophic lake. Microbubble flotation (MF) was used to remove P in a laboratory-scale experiment device from the benthic sediment and overlying water field samples. The results of P tracing observation for MF treatment, which were identified based on the mass balance, showed P accumulated at a higher concentration in the floated scum than in the deposited sludge. Furthermore, while the amount of soluble P separated was insignificant, the removal efficiency of soluble P in the floated scum was higher than total P. As an additional effect, P release was suppressed by the injection of microbubbles, which reduced anaerobicization and improved environmental conditions in the overlying water of the lake. We also confirmed that the sludge that settled after flotation separation caused capping, which restrained P release by forming a layer on the surface of the sediment. The direct P flotation separation, provision of oxygen by injected microbubbles, and capping effect of re-deposited sludge are advantages associated with MF, and our results show that field application studies are warranted.
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CiteScore
4.50
自引率
8.70%
发文量
0
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