The Institute of Municipal Engineering, College of Civil Engineering and Architecture, Zhejiang University, Hangzhou, 312058, Zhejiang, People's Republic of China.
Department of Civil and Environmental Engineering, University of Wisconsin, Milwaukee, WI, 53211, USA.
Environ Sci Pollut Res Int. 2017 Oct;24(29):23133-23143. doi: 10.1007/s11356-017-9882-8. Epub 2017 Aug 21.
Sewer sediments and their associated contaminant released along with wet-weather discharges pose potential pollution risks to environment. This paper presents total characteristics of sediments collected from Jiaxing, China. Size distribution and concentrations of volatile solids (VS) and four metals (Pb, Cu, Zn, Cr) of sediment samples from seven land use categories were analyzed. Then, the sediment samples were graded five fractions according to its settling velocity through the custom-built settling velocity-grading device. Sediment mass and pollution load distribution based on settling velocity were also assessed. The results show that there are relatively high level of heavy metal load in the sediment of separated storm drainage systems in Jiaxing, especially for the catchment of residential area (RA), road of developed area (RDA), and industrial area (IA). Although grain size follows a trend of increasing along with settling velocity, the methods of settling velocity grading are meaningful for stormwater treatment facilities with precipitation. For all land use categories, the pollution concentrations of the three lower settling velocity-fractionated sediment are relatively consistent and higher than others. Combined with mass distribution, the pollution percentage of fraction with different velocities for seven land use categories were also evaluated. Based on it, the statistical conclusion of design target settling velocity to different pollution load removal rates are drawn, which is helpful to guide design of on-site precipitation separation facilities.
污水沉积物及其随雨水排放而释放的污染物,对环境构成了潜在的污染风险。本文介绍了中国嘉兴市采集的沉积物的综合特征。分析了来自七个土地利用类别的沉积物样本的挥发性固体(VS)和四种金属(Pb、Cu、Zn、Cr)的粒径分布和浓度。然后,根据自制的沉降速度分级装置,将沉积物样本按沉降速度分为五个分数级。还评估了基于沉降速度的沉积物质量和污染负荷分布。结果表明,嘉兴市分流雨水排水系统的沉积物中重金属负荷水平相对较高,特别是居民区(RA)、发达地区道路(RDA)和工业区(IA)的集水区。尽管粒度随着沉降速度的增加而呈增加趋势,但沉降速度分级方法对具有降水的雨水处理设施是有意义的。对于所有土地利用类别,三个较低沉降速度分级的沉积物的污染浓度相对一致,高于其他沉积物。结合质量分布,还评估了七个土地利用类别的不同速度分级的污染百分比。在此基础上,得出了不同设计目标沉降速度与不同污染负荷去除率的统计结论,有助于指导现场降水分离设施的设计。