首页> 美国卫生研究院文献>Journal of Analytical Methods in Chemistry >Effects of pH, Temperature, Dissolved Oxygen, and Flow Rate on Phosphorus Release Processes at the Sediment and Water Interface in Storm Sewer
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Effects of pH, Temperature, Dissolved Oxygen, and Flow Rate on Phosphorus Release Processes at the Sediment and Water Interface in Storm Sewer

机译:pH,温度,溶解氧和流速对雨水管道沉积物和水界面磷释放过程的影响

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摘要

The effects of pH, temperature, dissolved oxygen (DO), and flow rate on the phosphorus (P) release processes at the sediment and water interface in rainwater pipes were investigated. The sampling was conducted in a residential storm sewer of North Li Shi Road in Xi Cheng District of Beijing on August 3, 2011. The release rate of P increased with the increase of pH from 8 to 10. High temperature is favorable for the release of P. The concentration of total phosphorus (TP) in the overlying water increased as the concentration of DO decreased. With the increase of flow rate from 0.7 m s−1 to 1.1 m s−1, the concentration of TP in the overlying water increased and then tends to be stable. Among all the factors examined in the present study, the flow rate is the primary influence factor on P release. The cumulative amount of P release increased with the process of pipeline runoff in the rainfall events with high intensities and shorter durations. Feasible measures such as best management practices and low-impact development can be conducted to control the P release on urban sediments by slowing down the flow rate.
机译:研究了pH,温度,溶解氧(DO)和流速对雨水管道沉积物和水界面处磷(P)释放过程的影响。采样是在2011年8月3日在北京西城区李石北路的住宅雨水管道中进行的。随着pH值从8增加到10,P的释放速率增加。 P.上层水中总磷(TP)的浓度随DO浓度的降低而增加。随着流量从0.7μms -1 增加到1.1μms -1 ,上覆水中TP的浓度先增加后趋于稳定。在本研究中检查的所有因素中,流速是影响P释放的主要因素。在强度大,持续时间短的降雨事件中,磷的累积释放量随着管道径流过程的增加而增加。可以采取可行的措施,例如最佳管理做法和低影响的开发,以通过减缓流速来控制城市沉积物中的磷释放。

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