首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >The Variation Characteristic of Sulfides and VOSc in a Source Water Reservoir and Its Control Using a Water-Lifting Aerator
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The Variation Characteristic of Sulfides and VOSc in a Source Water Reservoir and Its Control Using a Water-Lifting Aerator

机译:水源水库中硫化物和VOSc的变化特征及其调水曝气控制

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摘要

Sulfides and volatile organic sulfur compounds (VOSc) in water are not only malodorous but also toxic to humans and aquatic organisms. They cause serious deterioration in the ecological environment and pollute drinking water sources. In the present study, a source water reservoir—Zhoucun Reservoir in East China—was selected as the study site. Through a combination of field monitoring and in situ release experiments of sulfides, the characteristics of seasonal variation and distribution of sulfides and VOSc in the reservoir were studied, and the cause of the sulfide pollution was explained. The results show that sulfide pollution was quite severe in August and September 2014 in the Zhoucun Reservoir, with up to 1.59 mg·L−1 of sulfides in the lower layer water. The main source of sulfides is endogenous pollution. VOSc concentration correlates very well with that of sulfides during the summer, with a peak VOSc concentration of 44.37 μg·L−1. An installed water-lifting aeration system was shown to directly oxygenate the lower layer water, as well as mix water from the lower and the upper layers. Finally, the principle and results of controlling sulfides and VOSc in reservoirs using water-lifting aerators are clarified. Information about sulfides and VOSc fluctuation and control gained in this study may be applicable to similar reservoirs, and useful in practical water quality improvement and pollution prevention.
机译:水中的硫化物和挥发性有机硫化合物(VOSc)不仅恶臭,而且对人类和水生生物有毒。它们会严重破坏生态环境并污染饮用水源。在本研究中,我们选择了源水水库-中国东部的周村水库作为研究地点。通过现场监测和硫化物原位释放实验相结合,研究了储层中硫化物和VOSc的季节变化和分布特征,并解释了硫化物污染的原因。结果表明,2014年8月和2014年9月,周村水库的硫化物污染十分严重,下层水体中的硫化物含量高达1.59 mg·L -1 。硫化物的主要来源是内源性污染。夏季的VOSc浓度与硫化物的浓度有很好的相关性,峰值VOSc浓度为44.37μg·L -1 。已显示已安装的提水曝气系统可直接充氧下层水,以及混合下层和上层的水。最后,阐明了利用提水曝气器控制储层中硫化物和VOSc的原理和结果。这项研究中获得的有关硫化物和VOSc波动和控制的信息可能适用于类似的油藏,并有助于实际的水质改善和污染预防。

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