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1.
太湖地区西苕溪流域营养盐污染负荷结构分析   总被引:6,自引:0,他引:6  
污染负荷研究是实施污染物总量控制、保护水质的基础,由于非点源污染一直是水环境研究的一个难题,致使河流污染负荷估算缺乏合理的估算方法.本项研究针对太湖的富营养化问题,选取太湖上游西苕溪流域,采用GIS的流域分析方法,选取单一土地利用类型的小流域,分析流域土地类型与径流量及流域出口浓度的统计关系,获取不同土地利用类型营养盐污染的产出率,合理估算了西苕溪流域的非点源营养盐污染负荷,并根据西苕溪流域社会经济统计数据及已有的污染产出率研究成果,估算了西苕溪的点源营养盐污染负荷,在此基础上估算了西苕溪流域的营养盐污染总负荷量,分析了不同污染源在总负荷量的比例.最后通过比较估算的总负荷量与实测负荷量,计算了西苕溪流域河网体系对营养盐的降解能力.研究得出, 林地产出径流浓度总氮0.715mg/L、总磷0.039mg/L,耕地产出径流浓度总氮为2.092mg/L, 总磷0.166mg/L,西苕溪流域总氮负荷量为3143.43t/a,非点源污染负荷量为1589.52t/a;总磷负荷量为226.32t/a,非点源为108.36t/a,西苕溪流域河网体系对总氮、总磷的年降解率分别为 35.39%、21.48%.  相似文献   

2.
太湖上游流域经济发展对废水排放及入湖总磷的影响   总被引:5,自引:3,他引:2  
吴攀  秦伯强  于革  周健  周莉 《湖泊科学》2015,27(6):1107-1114
为探索太湖流域水环境质量随经济发展的变化趋势,利用环境库兹涅茨曲线模型模拟1978-2012年太湖上游流域人均GDP与废水排放量、入湖总磷负荷的关系.结果表明:以1978年为计算基期,太湖上游流域人均GDP年均增速为10.3%~11.8%;1990-2012年,太湖上游流域年均工业废水排放量和废水排放总量分别为64799×104、93707×104t,与人均GDP均呈倒U型关系,从2006-2007年、2008-2009年呈下降趋势;入湖总磷负荷与太湖上游流域废水排放总量呈显著正相关,且与人均GDP呈倒U型关系,从2007-2008年呈下降趋势,在1990s以前为850~1200 t/a,1990s以后为1300~2000 t/a.该研究为从经济学角度评估太湖上游流域废水排放、入湖总磷负荷及其变化趋势提供科学依据.  相似文献   

3.
太湖流域宜溧河地区水体水质状况及营养状态评价   总被引:17,自引:5,他引:17  
宜溧河流域是太湖的主要集水流域,流域水体的水质状况及营养状态与太湖的水质状况与营养状态密切相关,本研究根据2000年12月14-15日以及2001年4月18-19日两次大规模的水质同步监测结果,对流域平原河网地区水体的水质状况及营养状态进行了系统综合的评价,评价结果表明:不管是平水期还是枯水期,河网水体的水质状况都较差,营养水平较高;在枯水期间,受多种因素的综合影响,水体的水质状况呈现恶化趋势,营养盐含量也有所升高。  相似文献   

4.
以流经四川绵阳市安县河流茶坪河为研究对象,在对该河流水污染负荷、水环境现状及水环境功能充分调查的基础上,结合该河流的水文特征和排水规划以及四川省绵阳市环境监测站2005年实测的数据,采用二维浅水水动力学—水质模型方程组对茶坪河的各监测断面CODCr和NH3-N的浓度场进行了计算模拟和对比,并用一维水环境容量计算模型计算了该河流的水环境容量,提出了具体的总量控制措施.结果表明:用二维浅水水动力学—水质模型方程组计算各监测断面的CODCr和NH3-N与实测值相差不大;茶坪河水环境容量CODCr为123.96t/a,NH3-N为42.95t/a,所排放的CODCr量、NH3-N量已经超过该流域容量,出水水质已超过水质保护目标Ⅲ类标准.  相似文献   

5.
太湖上游流域农业土地的氮剩余及其对湖泊富营养化的影响   总被引:12,自引:2,他引:12  
太湖上游流域农业土地中氮的剩余对太湖的富营养化具有至关重要的影响.利用2002年各乡镇的农业统计资料,对上游流域农业土地中氮的剩余量进行计算.计算结果表明,上游流域农业土地中氮的剩余总量为134.8×103t/a,单位农业土地面积的剩余量为178.9 kg/(hm2·a).从单位面积氮剩余量的空间变化看,东、西苕溪流域的剩余量较低,而其它流域的剩余量相对较高.借助典型区域氮剩余的长系列计算数据,对上游地区氮剩余的长期变化规律进行分析.并在此基础上,探讨太湖的富营养化演变趋势与氮剩余长期变化的关系.  相似文献   

6.
2022年我国长江流域经历了长期的高温干旱,对湖泊水生态环境和湖内藻情态势产生了深远影响。但目前关于干旱环境下湖泊水华的响应特征研究较少。以太湖为例,基于2005—2022年湖体营养盐与叶绿素a浓度的长期监测数据,结合卫星遥感影像反演的蓝藻水华面积变化,探讨了2022年高温干旱对太湖蓝藻的影响特征及驱动机制。结果表明,2022年蓝藻水华高发季节(5—9月),太湖蓝藻水华的平均面积和最大面积均明显下降,其中5月的水华面积仅为近5年同期平均面积的20%;水样采集分析获得的水体叶绿素a浓度和微囊藻生物量在春季也明显下降。营养盐方面,2022年太湖的总氮和总磷均值分别为1.41和0.084 mg/L,较近5年均值分别下降了30.6%和27.3%,均为2005年以来的最低值。氮磷浓度空间分布的克里金插值显示,除西北湖区(竺山湾)受河流入湖影响外,大部分湖区的溶解态氮磷也都处于较低状态,冬季溶解性总磷浓度小于0.02 mg/L的水域面积占全湖面积的79%。随机森林分析表明,总磷、水温和风速是影响春季微囊藻和藻类生物量的关键因子。冬季湖体磷水平低,加上春季外源负荷较少,致使2022年春季太湖大范围湖...  相似文献   

7.
珠江流域氮、磷营养盐入河量估算及预测   总被引:2,自引:2,他引:0       下载免费PDF全文
徐鹏  林永红  杨顺顺  栾胜基 《湖泊科学》2017,29(6):1359-1371
针对日益严重的流域营养盐污染问题,以珠江流域为例,采用系统动力学模型与多主体农户和农村环境管理模型耦合构建反映农户生产决策实际污染过程的流域氮、磷营养盐排放仿真系统,模拟2000—2030年不同污染源的营养盐产生、排放和进入河流的污染过程,分析其污染特征、影响因素和演变趋势.结果表明:在基准情境下,珠江流域总氮(TN)入河量从2000年的5.79×10~5t增加到2030年9.45×10~5t,在2027年达到峰值(9.53×10~5t);总磷(TP)入河量逐年递增,年均增长率为2.0%,从2000年的7.9×10~4t增加到2030年1.4×10~5t.在TN入河量中,种植业贡献最多,其次是城镇污水、养殖业和农村污水,2000—2030年期间年均贡献率相应为43.5%、32.5%、19.2%和4.9%.在TP入河量中,2000—2030年种植业、养殖业、城镇污水和农村污水的年均贡献比例分别为35.6%、28.8%、21.5%和14.1%;2000—2010年,养殖业为第一污染源,其次是种植业、城镇污水和农村污水;2011年种植业的贡献比例(31.6%)开始超过养殖业(30.8%)成为首要污染.研究显示,流域营养盐排放仿真系统可为营养盐控制提供技术支持和理论依据.  相似文献   

8.
新安江对千岛湖外源输入总量的贡献分析(2006-2016年)   总被引:2,自引:0,他引:2  
运用新安江模型,计算了千岛湖25条主要入湖河流在2006-2016年间的入湖流量,结合同时期入湖河道的逐月水质监测数据,分析了最大入流新安江的营养盐——总氮(TN)、总磷(TP)、氨氮(NH3-N)和高锰酸盐指数(CODMn)总量输入在该时段内的年际变化和季节变化规律,研究了新安江营养盐输入总量变化与新安江水质水量、黄山市人口、GDP和土地利用的关系,探讨了影响新安江营养盐总量的关键影响因素及其对千岛湖水质的影响.结果表明,研究时段内新安江多年平均年入湖水量占千岛湖多年平均年入湖水量的51.4%,占25条主要河流年总入流量的67.3%,新安江CODMn、TP、TN、NH3-N多年平均的输入总量分别为11458.4、214.9、7649.2和756.5 t/a,分别占千岛湖年总负荷的50.7%、34.3%、63.7%和48.4%.各指标的年入湖总量在统计期间均呈上升趋势,且春、夏两季高于秋、冬两季.相关性分析表明,黄山市GDP与新安江CODMn、TN和TP入湖总量呈显著正相关关系,农业面源污染对新安江TN输入总量有显著影响.作为千岛湖最大的入湖河流,新安江营养盐(TP、TN、NH3-N)的输入能显著影响千岛湖的生态系统健康.  相似文献   

9.
2005-2017年北部太湖水体叶绿素a和营养盐变化及影响因素   总被引:7,自引:0,他引:7  
利用国家生态观测网络太湖湖泊生态系统研究站对北部太湖14个监测点2005-2017年的营养盐和叶绿素a浓度逐月监测数据,分析了北部太湖2005年以来水体营养盐和叶绿素a变化特征,探讨了叶绿素变化的影响因素.结果表明,2015年以来,北部太湖水体叶绿素a浓度呈现显著增高特征,特别是5-7月的蓝藻水华灾害关键期,水体叶绿素a浓度增幅更加明显;营养盐方面,氮、磷对治理的响应完全不同:水体总氮、溶解性总氮、氨氮的降幅很明显,甚至在春末夏初的蓝藻生长旺盛期出现了供给不足的征兆;但水体总磷降幅却不明显,加之蓝藻水华的磷"泵吸作用",近3 a来水体总磷浓度反而有升高趋势,溶解性总磷浓度也无明显下降趋势.不同湖区的营养盐变化也不相同:西北湖区溶解性总氮、溶解性总磷浓度显著高于梅梁湾、贡湖湾和湖心区,而且后3个湖区的水质呈现均一化趋势.统计分析表明,北部太湖水体叶绿素a浓度与颗粒氮、颗粒磷、总磷、高锰酸盐指数均呈显著正相关,与溶解态氮呈负相关;5-7月水华关键期北部太湖水体叶绿素a浓度与上半年(1-6月)逐日水温积温、总降雨量、年平均水位均呈显著正相关关系.从研究结果可以看出,近年来北部太湖水体叶绿素a浓度的波动很大程度上受水文气象因子的影响;2007年以来太湖流域一系列生态修复工程的实施,虽然明显降低了湖泊氮浓度,但由于流域和湖体的氮磷本底较高,磷的缓冲能力大,致使水体营养盐水平仍未降到能显著抑制蓝藻生长的水平,年际之间的水文气象条件差异成为蓝藻水华暴发强度差异的主控因素.为此,仍需加大对太湖流域氮、磷负荷的削减,使湖体氮、磷浓度降低到能显著影响蓝藻生长的水平,才能摆脱水文气象条件对蓝藻水华情势的决定作用.  相似文献   

10.
洱海主要污染物允许排放总量的控制分配   总被引:1,自引:0,他引:1  
基于环境流体动力学模型EFDC(Environmental Fluid Dynamic Code),建立了洱海湖泊及湖湾的三维水动力水质模型.利用洱海2001 2011年连续11年的水动力水质监测数据对模型进行了率定和验证,模拟结果与实测资料吻合度较好,表明水动力水质模型计算结果较为合理.在考虑水质环境背景浓度的前提下,通过水质模型量化各个入湖排污口对水质控制点的贡献率,并对各水质控制点和入湖排污口的浓度进行约束限制,最终利用单纯形法求解得到各入湖排污口的允许排污量.计算结果表明,北区三条河流弥苴河、永安江、罗时江本身流量相对较大,所以允许排放总量也较大,总氮、总磷和CODMn的允许排放总量分别占到整个洱海允许排放量的47%、53%和49%.洱海主要污染物允许排放总量的控制分配研究对于洱海流域的环境综合整治具有十分重要的意义.  相似文献   

11.
Abstract

Human activities have created high nutrient surpluses in agricultural lands due to the increasing rate of chemical fertilizer application and the increase in livestock production. To analyse the nutrient characteristics and estimate the nutrient load in streams, we conducted extensive field survey and water quality experiments from 2007 to 2008 in Koise River, a major river of the Lake Kasumigaura watershed, Japan. Water quality indicators of total nitrogen (TN), total phosphorus (TP) and total organic carbon (TOC) were investigated. The nutrient loads of TN, TP and TOC, as well as dissolved total nitrogen, dissolved inorganic nitrogen, dissolved organic nitrogen, particle organic nitrogen, dissolved total phosphorus, dissolved organic carbon and particle organic carbon were also estimated for the Koise River. Seasonal variation of the nutrient concentration from 2007 to 2008 was analysed considering the river discharge variation and agricultural activities. The results showed that the irrigation water from Lake Kasumigaura has the potential ability to decrease the TN concentration and increase the TOC concentration in the Koise River. Significant correlation coefficients between nutrient load and river discharge were found. The monthly pollution loads from different sources were then evaluated based on land cover classification generated from high-resolution Quick Bird remote sensing imagery. This study presents a useful interpretation of water quality data sets with a view to obtaining better information about water quality for more effective management of water resources in river basins.

Editor Z.W. Kundzewicz

Citation He, B., Oki, K., Wang, Y., Oki, T., Yamashiki, Y., Takara, K., Miura, S., Imai, A., Komatsu, K. and Kawasaki, N., 2012. Analysis of stream water quality and estimation of nutrient load with the aid of Quick Bird remote sensing imagery. Hydrological Sciences Journal, 57 (5), 850–860.  相似文献   

12.
With the Taihu Basin as a study area, using the spatially distributed and mechanism-based SWAT model, preliminary simulations of nutrient transport in the Taihu Basin during the period of 1995-2002 has been carried out. The topography, soil, meteorology and land use with industrial point pollution discharge, the loss of agricultural fertilizers, urban sewerage, and livestock drainages were all considered in the boundary conditions of the simulations. The model was calibrated and validated against water quality monitoring data from 2001 to 2002. The results show that the annual total productions of nitrogen (TN) and phosphorus (TP) into Lake Taihu are 40000t and 2000t respectively. Nutrient from the Huxi Region is a major resource for Lake Taihu. The non-point source (surface source) pollution is the main form of catchment sources of nutrients into Lake Taihu, occupied TN 53% and TP 56% respectively. TN and TP nutrients from industrial point pollution discharge are 30% and 16%, and sewerage in both forms of point source and non-point source are TN 31 % and TP 47%. Both the loss of agricultural fertilizers and livestock drainages from the catchment should be paid more attention as an important nutrient source. The results also show that SWAT is an effective model for the simulation of temporally and spatially nutrient changes and for the assessment of the trends in a catchment scale.  相似文献   

13.
With the Taihu Basin as a study area, using the spatially distributed and mechanism-based SWAT model, preliminary simulations of nutrient transport in the Taihu Basin during the period of 1995:_2002 has been carried out. The topography, soil, meteorology and land use with industrial point pollution discharge, the loss of agricultural fertilizers, urban sewerage, and livestock drainages were all considered in the boundary conditions of the simulations. The model was calibrated and validated against water quality monitoring data from 2001 to 2002. The results show that the annual total productions of nitrogen (TN) and phosphorus (TP) into Lake Taihu are 40000t and 2000t respectively. Nutrient from the Huxi Region is a major resource for Lake Taihu. The non-point source (surface source) pollution is the main form of catchment sources of nutrients into Lake Taihu, occupied TN 53% and TP 56% respectively. TN and TP nutrients from industrial point pollution discharge are 30% and 16%, and sewerage in both forms of point source and non-point source are TN 31% and TP 47%. Both the loss of agricultural fertilizers and livestock drainages from the catchment should be paid more attention as an important nutrient source. The results also show that SWAT is an effective model for the simulation of temporally and spatially nutrient changes and for the assessment of the trends in a catchment scale.  相似文献   

14.
Human activity has resulted in increased nutrient levels in rivers and coastal seas all over Europe. Models that can describe nutrient fluxes from pollution sources to river outlets may help policy makers to select the most effective source control measures to achieve a reduction of nutrient levels in rivers and coastal seas. Part I of this paper describes the development of such a model: PolFlow. PolFlow was specially designed for operation at the river basin scale and is here applied to model 5‐year average nitrogen and phosphorus fluxes in two European river basins (Rhine and Elbe) covering the period 1970–1995. Part II reports an error analysis and model evaluation, and compares PolFlow to simpler alternative models. Copyright © 2001 John Wiley & Sons, Ltd.  相似文献   

15.
《国际泥沙研究》2021,36(6):747-755
The magnitude and variation of the sediment loads transported by rivers have important implications for the functioning of river systems and changes in the sediment loads of rivers are driven by numerous factors. In this paper, the key drivers of changes in the sediment loads of the major rivers of China are identified by reviewing recent studies of changes in their sediment loads. Except for the Songhua River, which presents no clear tendency of change in runoff or sediment load, nearly all the major rivers of China are characterized by an apparent decline in annual sediment load. The total annual sediment load of major Chinese rivers transported to the coast decreased from 2.03 billion t/yr during the period 1955–1968 to 0.50 billion t/yr during the period 1997–2010. The primary drivers of changes in the sediment loads of the rivers are dam construction, implementation of soil and water conservation measures, catchment disturbance, agricultural practices, sand mining and climate change. Examples drawn from Chinese rivers are used to demonstrate the importance of these drivers. Construction of a large number of reservoirs in the Yangtze River basin represents the primary driver for the reduced sediment load of the Yangtze River. The implementation of soil and water conservation programmes is one of the key drivers for the sharp decline in the sediment load of the Yellow River. Catchment disturbance explains why the reduction of the sediment load of the Lancang-Mekong River at the Chiang Saen gauging station was much less than that at the Gajiu gauging station upstream. A reduction in sediment load resulting from the expansion of agricultural production may be the main driver for the reduced sediment load of the Huaihe River. The decrease in the sediment load of the Pearl River has been influenced by sand mining activities. Climate change is one of the key drivers responsible for the greatly reduced sediment load of the rivers in the Haihe River Basin.  相似文献   

16.
Sources and fate of nutrients in a subtropical reservoir   总被引:1,自引:0,他引:1  
This study examined the sources and fate of nutrient inputs from two principal tributaries to the eutrophic subtropical Wivenhoe reservoir: an unregulated river and a dammed river with regular releases, during a period of declining reservoir water levels. Nutrient budgets were constructed over a period of 6 years, and combined with short-term data on nutrient concentrations and forms, and δ15N stable isotope data. Our study found that over a 6 year period, there was net retention of phosphorus (P) in the reservoir, with 60% of inputs retained. Most of the P input load came from the unregulated river, with an agricultural catchment, during periods of high flow. During one event half of the total TP load from the unregulated river in the study period was delivered in only 12 days. Much of the P was dissolved inorganic P (DIP) and was derived from high P concentrations in soils and sediments. This highlights the importance of appropriate catchment management practices to reduce P losses from terrestrial systems because retention of P in reservoir sediments reduces the availability of this nutrient for agricultural production. In contrast, there was negligible retention of nitrogen (N). The unregulated river was an important source of N derived from N fixation in the river and adjacent soils, while the source from the dammed river was mostly reprocessed N. The high retention of P relative to N is consistent with relatively higher accumulation of P in sediments.  相似文献   

17.
Trichonis Lake is the largest natural freshwater body in Greece with a surface area of 97 km2. It receives pollutants from numerous anthropogenic activities, especially from intensive agricultural practices, urban sewages, stock grazing land and small industries. In this study, hydrologic and chemical parameters are assessed during two periods (1990–1991) and (2001–2002) to evaluate the effects of the climatic changes on phosphorous trends and consequently on the trophic status of Trichonis Lake. Even though large quantities of fertilizers are applied in the lake's catchment, phosphorus loads are still in the permissible level as estimated according to Vollenweider's relationship based on total phosphorus concentration. Due to relatively higher rainfall precipitation during the last years, an increased amount of the phosphorus entering into the lake system is flushed out, thus keeping the trophic status of the lake in oligotrophic levels. In contrast, lower rainfall rates during the first period (1990–1991) have led to the decrease in phosphorus flush out and its detainment into the lake water and sediment resulting to mesotrophic conditions. As the trophic status of the lake is mainly hydrologically dependent and thus unpredictable, effective management plans targeting the elimination of nutrient pollution loadings are necessary.  相似文献   

18.
In contrast with biological processes in lacustrine environments, the physical characteristics of river waters greatly complicate the relationship between nutrient input and primary productivity. In this paper a new approach to quantify this relationship is developed, linking land use within the watershed to the bioavailability of nutrients in the receiving waters. It estimates by two different ways an enrichment index derived from N/P ratios. A load model links land-use within the watershed area to nutrient export, and allows the estimation of the potential enrichment index from the ratio of calculated annual exports of nitrogen and phosphorus. This index value correlates well with the real enrichment index representing the annual mean value of the corresponding measured ratios in running waters. The latter index can then be related to nutrient availability expressed by chl-a and the algal growth potential. This model, established from 7 sampling stations on the Yamaska-North river, allowed assessment of nutrient bioavailability in the river water as a function of hydrological (low or high water flow) as well as of seasonal (summer or winter) events.  相似文献   

19.
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