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171.
Murakami M  Nakajima F  Furumai H 《Chemosphere》2008,70(11):2099-2109
Infiltration facilities are designed for both the retention of non-point pollutants and the replenishment of groundwater in urban areas. In this study, sorption tests were conducted to evaluate the speciation of heavy metals and their behaviour in infiltration facilities receiving urban road runoff containing high DOC concentrations and stable heavy metal organic complexes. Road dust and three soakaway sediments were collected from heavy traffic areas and a residential area with an infiltration-type sewerage system in Tokyo, Japan. Sequential multiple batch tests were conducted by adding prepared road dust leachate (artificial road runoff) or deionised water to soakaway sediment to obtain soakaway sediment leachate (artificial percolating water from soakaway sediment), which mimicked the sorption by sediments in soakaways receiving urban road runoff. Heavy metal speciation was assessed by means of a combination of anion-exchange resin measurements and MINTEQA2 model calculations, and further validated by chelating resin measurements. In road dust leachates and soakaway sediment leachates, Cu predominantly existed as organic complexes and carbonates, whereas most Mn, Zn and Cd were found to exist in the form of free ions and carbonate complexes. Stable organic complexes of Cu in road dust leachates were strongly adsorbed by soakaway sediments despite the limited adsorption of DOC. On the other hand, desorption of free Mn, Zn and Cd ions from the sediment receiving road dust leachates was observed, indicating that heavy metals such as Mn, Zn and Cd may ultimately reach groundwater as free ions.  相似文献   
172.
Spectroscopic characteristics of dissolved organic matter (DOM) in a large dam reservoir were determined using ultraviolet absorbance and fluorescence spectroscopy to investigate spatial distribution of DOM composition after turbid storm runoff. Water samples were collected along a longitudinal axis of the reservoir at three to four depths after a severe storm runoff. Vertical profiles of turbidity data showed that a turbid water layer was located at a middle depth of the entire reservoir. The spectroscopic characteristics of DOM samples in the turbid water layer were similar to those of terrestrial DOM, as demonstrated by the higher specific UV absorbance (SUVA) and the lower fluorescence emission intensity ratio (F 450/F 500) compared to other surrounding DOM samples in the reservoir. Synchronous fluorescence spectroscopy revealed that higher content of humic-like DOM composition was contained in the turbid water. Fluorescence excitation–emission matrix (EEM) showed that lower content of protein-like aromatic amino acids was present in the turbid water DOM. The highest protein-like fluorescence was typically observed at a bottom layer of each sampling location. The bottom water DOM exhibited extremely high protein-like florescence near the dam site. The particular observation was attributed to the low water temperature and the isolation of the local bottom water due to the upper location of the withdrawal outlet near the dam. Our results suggest that the distribution of DOM composition in a dam reservoir is strongly influenced by the outflow operation, such as selective withdrawal, as well as terrestrial-origin DOM inputs from storm runoff.  相似文献   
173.
密云县密云水库流域坡耕地养分流失特征   总被引:1,自引:1,他引:0  
于2005年和2006年连续2 a对密云水库流域坡耕地进行水土流失小区试验,并完全按照当地农民习惯进行农事管理.试验结果表明:(1)降雨后坡耕地产生的地表径流量、泥沙量随坡度增大而增加,并与坡度正弦值呈一定的线性关系;(2)坡度对雨后地表径流和泥沙中养分含量影响不明显,但对泥沙养分流失量有明显影响;(3)养分流失以泥沙携带为主要途径,且通过泥沙携带途径流失的养分量占流失养分总量的比例随坡度增加而增加;(4)水库周边区域内坡耕地流失养分的主要来源为施用于坡耕地的化学肥料.(5)调整水库流域内坡耕地的种植结构、对坡耕地实施改造以截留或减少泥沙流失和控制化学肥料投入等措施对于治理流域内农业非点源污染、保护水源地水质显得尤为迫切.  相似文献   
174.
喀斯特坡地地表径流系数监测初报   总被引:38,自引:11,他引:27  
通过对喀斯特坡地6种不同土地利用条件下径流小区的地表径流和植被穿透雨量以及地下水出口水位变化进行野外定点连续观测研究,结果表明,6个径流小区地表径流系数均非常小,介于0.01%~12.81%。显然,喀斯特坡地的地表径流易于入渗转化为地下径流。受人为活动影响较大的径流小区,地表径流系数随降雨量的变化呈指数函数型变化特征,容易产生地表径流系数的突变式增长。  相似文献   
175.
176.
The Storm Water Management Model was used to simulate runoff and nutrient export from a low impact development (LID) watershed and a watershed using traditional runoff controls. Predictions were compared to observed values. Uncalibrated simulations underpredicted weekly runoff volume and average peak flow rates from the multiple subcatchment LID watershed by over 80%; the single subcatchment traditional watershed had better predictions. Saturated hydraulic conductivity, Manning's n for swales, and initial soil moisture deficit were sensitive parameters. After calibration, prediction of total weekly runoff volume for the LID and traditional watersheds improved to within 12 and 5% of observed values, respectively. For the validation period, predicted total weekly runoff volumes for the LID and traditional watersheds were within 6 and 2% of observed values, respectively. Water quality simulation was less successful, Nash–Sutcliffe coefficients >0.5 for both calibration and validation periods were only achieved for prediction of total nitrogen export from the LID watershed. Simulation of a 100‐year, 24‐h storm resulted in a runoff coefficient of 0.46 for the LID watershed and 0.59 for the traditional watershed. Results suggest either calibration is needed to improve predictions for LID watersheds or expanded look‐up tables for Green–Ampt infiltration parameter values that account for compaction of urban soil and antecedent conditions are needed.  相似文献   
177.
High variability in precipitation and streamflow in the semiarid northern Great Plains causes large uncertainty in water availability. This uncertainty is compounded by potential effects of future climate change. We examined historical variability in annual and growing season precipitation, temperature, and streamflow within the Little Missouri River Basin and identified differences in the runoff response to precipitation for the period 1976‐2012 compared to 1939‐1975 (n = 37 years in both cases). Computed mean values for the second half of the record showed little change (<5%) in annual or growing season precipitation, but average annual runoff at the basin outlet decreased by 22%, with 66% of the reduction in flow occurring during the growing season. Our results show a statistically significant (< 0.10) 27% decrease in the annual runoff response to precipitation (runoff ratio). Surface‐water withdrawals for various uses appear to account for <12% of the reduction in average annual flow volume, and we found no published or reported evidence of substantial flow reduction caused by groundwater pumping in this basin. Results of our analysis suggest that increases in monthly average maximum and minimum temperatures, including >1°C increases in January through March, are the dominant driver of the observed decrease in runoff response to precipitation in the Little Missouri River Basin.  相似文献   
178.
西南地区水资源及其评价   总被引:3,自引:0,他引:3  
西南是我国水资源最丰富的地区,但供需矛盾十分突出:旱灾频繁不少城市供水不足中小河流污染较重径流式电站出力显著下降内河航运不断萎缩。分析其原因,与水资源的特点和演变规律分不开。① 来水与用水不协调:坝区地多水少、山区水多地少城市和工业集中区水量偏小、偏僻地区来水偏大用水季节来水少、非用水季节来水多岩溶分布广泛,水资源利用困难。② 枯季径流不断减少:西南水资源70%以上分布在雨季。旱季水很少,且在不断下降。如不改变径流的分配方式,用水危机将会到来。③ 水质不断恶化:西南水质是好的。随着城市化的发展,农药化肥的大量使用,水质变差。重视保护、防止污染是重要的战略措施。④ 水资源的开发必须因地制宜,重视蓄水和跨流域调水的作用。  相似文献   
179.
暴雨径流对非常规水源补给城市河流水质冲击研究   总被引:2,自引:2,他引:2  
选择北运河流域典型非常规水源补给城市河流(凉水河)为研究对象,阐述暴雨径流对非常规水源补给城市河流水体物理化学特征的影响.结果表明,非暴雨期间,凉水河水体p H和DO平均值分别为7.67和3.88 mg·L-1;耗氧物质COD和氨氮(NH+4-N)平均质量浓度分别为47.41 mg·L-1和8.39 mg·L-1;富营养化元素总氮(TN)和总磷(TP)平均质量浓度分别为16.34 mg·L-1和1.45 mg·L-1.暴雨期间,雨水径流汇入收纳水体后,COD、NH+4-N、TP平均质量浓度明显上升,最高值分别达到108、14.24、3.02 mg·L-1.在空间分布上,COD、NH+4-N、TN和TP质量浓度变化趋势随土地利用类型变化特征趋于一致,从城镇区至农村区,均呈逐渐上升趋势.  相似文献   
180.
北京城市典型下垫面降雨径流污染初始冲刷效应分析   总被引:17,自引:8,他引:17  
城市硬化地表的迅速增加使得降雨径流量增加,屋面和路面等下垫面上污染物的大量累积并随径流进入城市排水系统,对城市水环境造成威胁.为了解径流污染过程和给径流污染控制提供科学依据,于2004~2006年选取典型屋面和路面对径流污染过程进行了监测和分析,计算了两种径流的次降雨平均浓度(EMC)水平,发现两类径流的COD和TN污染较为严重;屋面径流的化学需氧量(COD)、总氮(TN)分别超标(地表水环境质量标准GB 3838-2002 V类)3.64和4.80倍;路面径流的COD、TN分别超标3.73和1.07倍.利用M(V)曲线,判断径流量同径流污染负荷的关系,发现屋面径流污染物总悬浮颗粒物(TSS)、COD、TN和总磷(TP)发生了不同程度的初始冲刷现象;路面初始冲刷现象主要表现为TSS和TP,总体上初始冲刷效应不明显.汇水面性质、降雨强度、污染物累积状况等都是影响屋面和路面径流污染物排放特征的重要影响因素.  相似文献   
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