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1.
科学合理地布设水质监测断面是全面准确获取水环境质量监测数据的前提条件。利用研究区域现有断面2014年的监测数据,结合水资源调度方式和水环境功能区划要求,划分为五大片区并采用聚类分析方法进行断面优化,通过F检验和t检验表明优化前后断面无显著差异。同时,提出了一种综合的水环境质量考核办法——区域水环境综合评价考核指标,该指标包括骨干河道、乡村河道两类考核断面,采用综合水质评价与单因子评价相结合的方法,设置适当的权重系数,评价结果较为全面、客观地反映区域水环境质量状况,基本满足对区域水环境质量考核评价的管理需求。  相似文献   

2.
2005年10月,14个控制断面中有9个断面达到Ⅲ类水质标准,达标率为64.3%。5个未达标断面中扬州三垛西大桥和徐州沙庄桥断面水质为V类,其余断面水质为Ⅳ类;主要超标污染指标有溶解氧、五日生化需氧量、高锰酸盐指数、石油类和氨氮。与上月相比,南水北调东线江苏段总体水质基本持平,14个断面中,8个断面水质无明显变化,1个断面水质显著好转,1个断面水质好转,3个断面水质恶化,1个断面水质显著恶化。与2004年同期相比,14个断面中,9个断面水质无明显变化,2个断面水质显著好转,1个断面水质好转,2个断面水质恶化。  相似文献   

3.
淮河还清 前景有望   总被引:2,自引:0,他引:2  
2000年12月31日是淮河水质还清达标的最后期限。将淮河流域断面划分为有生态保护功能和生态保护功能两大类及按重要断面,一般控制断面,监管断面确定水质控制指标值。  相似文献   

4.
在物元分析的基础上,引入各监测断面到其所在类别的重心距离,构建了一种定量的监测断面优化方法。以2009年1月—2010年12月辽河干流水环境监测数据为基础,对辽河干流水质监测断面进行优化,并采用T检验、F检验和相邻断面监测数据相关性对优化结果验证。结果表明,使用改进的物元分析法优化后,辽河干流监测断面减少为6个,监测效率提高了25%。在优化后的监测断面与在原监测断面监测获得的数据均值无显著差异、方差齐,而且经过优化后的断面重复布设情况得到显著改善,水质监测断面合理性显著增强。  相似文献   

5.
基于大连市登沙河监测断面的水质数据,采用系统聚类法、模糊聚类法和物元分析法进行优化,筛选代表性断面。结果表明,优化后的监测断面个数减少了40%,相关性较高的相邻断面个数由优化前的71%减少为54%,优化前、后的样本方差齐且均值无显著性差异。优化后的监测断面在显著提高效率的同时也确保了数据的代表性,使得断面重复布设情况得到明显改善。  相似文献   

6.
为确保南水北调东线输水干线江苏段水质达标,以高邮市北澄子河三垛西大桥断面为示范断面,通过对三垛西大桥断面水质及北澄子河沿程水质变化趋势进行分析,结合对污染来源的剖析,提出应设置风险预警监控断面,制定达标治理措施,加强对三垛西大桥断面水质的风险预警监控.  相似文献   

7.
基于2011—2015年茹河彭阳水质监测断面的水质数据,采用物元分析法对其断面水质进行评价;建立适用于该监测断面的马尔可夫预测模型对断面水质类别进行预测;同时依据平稳分布对各类水质的重现期作了分析。结果表明:彭阳水质监测断面水质为Ⅲ类;对马尔可夫链预测模型进行验证,满足预测精度;2015年9月和11月的水质类别预测结果均为Ⅲ类,且Ⅲ类水质出现的周期最短,属河流水质常态,其重现期为4.9个月,整体水质较好。  相似文献   

8.
为全面掌握汉江襄阳城区段沿程水质变化情况,合理制定相应保护措施,基于2018—2022年汉江襄阳城区段出入境断面及支流水质监测数据,对汉江襄阳城区段水环境质量、变化趋势和相关特征开展综合分析评价。结果表明,2018—2022年汉江襄阳城区段入境与出境断面水质状况总体为优,但出境断面氨氮、总磷、总氮的质量浓度较入境断面均有明显增高,主要支流唐白河、清河及南渠的汇入对出境断面水质影响较大。2018—2021年汉江襄阳城区段出入境断面主要监测指标质量浓度分布表现为丰水期>枯水期,2022年表现为枯水期>丰水期。汉江襄阳城区段水质氮污染贡献明显高于磷污染,仍以氮污染为主,水质中氮主要以游离氨和铵盐以外的形式存在。相关性分析结果表明,入境断面与出境断面中氨氮、总氮与各指标相关性差别较大,总磷、溶解氧与各参数间的相关性基本一致。研究结果可为制定汉江水环境改善及污染防治措施提供科学依据。  相似文献   

9.
海州湾潮间带大型底栖动物多样性研究   总被引:3,自引:0,他引:3       下载免费PDF全文
2015年10月和11月调查了海州湾潮间带A、B 2个断面的大型底栖动物,共发现大型底栖动物29种,其中A断面发现19种,B断面23种;潮间带大型底栖动物的总平均丰度为1 790 m~(-2),总平均生物量185.11 g/m~2。A、B 2断面的丰度生物量差异较大,主要是由于2个断面底质类型不同造成的。潮间带Shannon-Wiener多样性指数平均值为2.90,波动为2.44~3.45,其沉积物环境存在轻度有机质污染。  相似文献   

10.
2005年8月,14个控制断面中有9个断面达到Ⅲ类水质标准,达标率为64·3%。符合Ⅳ、Ⅴ类水质标准的断面分别为4个、1个,分别占28·6%和7·1%。与上月相比,总体水质基本持平,其中10个断面水质持平,3个断面水质好转,1个断面水质下降。与2004年同期相比,14个断面中有9个断面水质持平,5个断面水质好转。摘自江苏省环境监测中心《环境监测工作通讯》2005年第8期南水北调东线江苏段2005年8月水质状况  相似文献   

11.
This research evaluates the lifetime cancer risks from trihalomethanes in Tehran's drinking water. The Trihalomethanes were measured in seven different water districts. Sixty-three samples were taken from tap water across the city for 7 months. The samples were analyzed for trihalomethanes using US EPA method 524.2. The average concentration of total trihalomethanes in different districts were between 0.81 and 9.0 μg/L, and the highest concentrations were detected in district 2 at 19.5 μg/L. Total lifetime cancer risks assessment from exposure to trihalomethanes in drinking water (ingestion, inhalation, and skin routes) were performed for people living in different districts in Tehran. The lifetime cancer risk was 7.19 × 10(-5) in district 2 (a more affluent neighborhood) where mostly surface water sources is used to supply drinking water and 9.38 × 10(-6) in district 7 (a less affluent neighborhood) which is mainly supplied with well water sources. Based on the population data, the total expected lifetime cancer cases from exposure to trihalomethanes are 104, 108, 81, 81, 41, 27, and three for districts 1 through 7, respectively. The average lifetime cancer risk was 4.33 × 10(-5) which means a total of 606 lifetime cancer cases for the entire province of Tehran. The highest risk from THMs seems to be from the inhalation route followed by ingestion and dermal contacts.  相似文献   

12.
Drinking water samples collected from rural areas of three districts of Haryana during pre-monsoon and post-monsoon periods were analysed for the presence of organochlorine pesticide residues. The main source of drinking water in rural areas, i.e. groundwater in Ambala and Gurgaon districts and surface water supply in Hisar district, was found to be contaminated with isomers of HCH and endosulfan and metabolites of DDT, whereas dieldrin remained below detection limits. During the study period, the mean values observed for total HCH, DDT and endosulfan were 87.6, 848.2, and 27.4 ng/L and 99.8, 275.3 and 164.2 ng/L, respectively, for Ambala and Gurgaon districts. In the case of Hisar district, the values were 78.5, 115.9, and 53.0 ng/L, respectively. During the study period, 37% of the samples exceeded the total pesticide level of 500 ng/L indicated in the EECD directive for drinking water. Seasonal variations of pesticide residues were also observed during the study period.  相似文献   

13.
The present study was aimed at characterizing the soil-water resource degradation in the rural areas of Gurgaon and Mewat districts, the two economically contrasting areas in policy zones-II and III of the National Capital Region (NCR), and assessing the impact of the study area's local conditions on the type and extent of resource degradation. This involved generation of detailed spatial information on the land use, cropping pattern, farming practices, soils and surface/ground waters of Gurgaon and Mewat districts through actual resource surveys, standard laboratory methods and GIS/remote sensing techniques. The study showed that in contrast to just 2.54% (in rabi season) to 4.87% (in kharif season) of agricultural lands in Gurgaon district, about 11.77% (in rabi season) to 24.23% (in kharif season) of agricultural lands in Mewat district were irrigated with saline to marginally saline canal water. Further, about 10.69% of agricultural lands in the Gurgaon district and 42.15% of agricultural lands in the Mewat district were drain water irrigated. A large part of this surface water irrigated area, particularly in Nuh (48.7%), Nagina (33.5%), and Punhana (24.1%) blocks of Mewat district, was either waterlogged (7.4% area with 0.05 ppm). In fact, sub-surface drinking waters of some areas around battery and automobile manufacturing units in Gurgaon and Pataudi blocks were associated with exceptionally high (>0.1 ppm) Ni concentrations. In general, the ground waters of waterlogged or potentially waterlogged areas in the rural areas of Mewat were more contaminated than the ground waters in the rural areas of Gurgaon district with deeper (>5 m) water depths.Though Cr concentrations in the surface and sub-surface irrigation waters of both Gurgaon and Mewat districts were far above the maximum permissible limit of 1 ppm, their bio-available soil-Cr concentrations were well within permissible limit. Even bio-available Ni concentrations in agricultural lands of Gurgaon district associated with Ni contaminated sub-surface irrigations were well within desirable limit of 0.20 ppm. This was primarily attributed to the calcareous nature of the soils of the study area. About 35% of Gurgaon district and 59% of Mewat district irrigated with poor quality waters were salt-affected. These waterlogged/potentially waterlogged calcareous-salt affected soils of Mewat district were having acute zinc (Zn) deficiency (<0.6 ppm). Some areas with extremely high iron (Fe: 20-25 ppm) and Mn (10-25 ppm) concentrations were also noticed in the Gurgaon, Nuh and Punhana blocks. Generation of reduced conditions owing to paddy cultivation in areas with 3-3.5 m water depths appeared to be the main cause of such point contaminations. Extensive cadmium (Cd) contamination was also noticed in the waterlogged sodic agricultural lands of Nagina village in Mewat district associated with a large scale scrap automobile and battery business. The study could document the processes and provide spatially accurate information to the managers (e.g., National Capital Region Planning Board) and the concerned citizen groups. It could, in fact, clearly point out that dumping of industrial and domestic wastewaters especially from NCT-Delhi into river Yamuna and, to some extent, from NCT-Delhi re-located hazardous industrial units into Najafgarh drain tributaries at Delhi-Gurgaon boundary, and poor "off-farm" water management practices were the main reasons for extensive (point/non-point source) land-water degradation in Gurgaon and Mewat districts of NCR.  相似文献   

14.
Water quality survey was undertaken to study the current status of water quality of some lentic habitats of Dharwad, Haveri and Uttar Kannada districts, to provide a baseline data, comprising study of their main physical and chemical characteristics and also to evaluate the recent limnological changes those have occurred over a time period in some lentic habitats. Trophic status was also analysed. Present study reveals that Unkal lake, and B.K. Shigigatti tank of Dharwad district, Timmapur, Hosalli, and Krishnapur tanks of Haveri district are fast progressing towards hypereutrophication. Of the other tanks, Galgi tank of Dharwad district, Gudgur, Hanamapur, Medleri, and Kadkol tanks of Haveri district have reached the eutrophic stage. The anthropogenic activities, sewage and fertilizers used in agricultural fields appear to be the major causes of the eutrophication in these tanks. If the habitats have to be preserved for their intended use, sustainable and holistic management measures for the remediation of the tanks are an immediate necessity.  相似文献   

15.
2004年夏季在广州四个不同区域采集大气颗粒物样品,参照美国环保局(US EPA)标准方法测定其中二噁的含量,采用热分解光学分析法测定元素碳和有机碳的含量。结果表明,花都、荔湾、天河、黄埔大气颗粒物中二噁浓度(毒性当量)平均值分别为3815fg/m3(104.6fg I-TEQ/m3)、12777fg/m3(430.5fg I-TEQ/m3)、6963fg/m3(163.7fg I-TEQ/m3)、10953fg/m3(769.3fg I-TEQ/m3)。简单地分析了广州大气颗粒物中二噁的含量特征,以及与元素碳、有机碳之间的相关性。  相似文献   

16.
Drinking water quality assessment in Southern Sindh (Pakistan)   总被引:1,自引:0,他引:1  
The southern Sindh province of Pakistan adjoins the Arabian Sea coast where drinking water quality is deteriorating due to dumping of industrial and urban waste and use of agrochemicals and yet has limited fresh water resources. The study assessed the drinking water quality of canal, shallow pumps, dug wells, and water supply schemes from the administrative districts of Thatta, Badin, and Thar by measuring physical, chemical, and biological (total coliform) quality parameters. All four water bodies (dug wells, shallow pumps canal water, and water supply schemes) exceeded WHO MPL for turbidity (24%, 28%, 96%, 69%), coliform (96%, 77%, 92%, 81%), and electrical conductivity (100%, 99%, 44%, 63%), respectively. However, the turbidity was lower in underground water, i.e., 24% and 28% in dug wells and shallow pumps as compared to open water, i.e., 96% and 69% in canal and water supply schemes, respectively. In dug wells and shallow pumps, limits for TDS, alkalinity, hardness, and sodium exceeded, respectively, by 63% and 33%; 59% and 70%, 40% and 27%, and 78% and 26%. Sodium was major problem in dug wells and shallow pumps of district Thar and considerable percent in shallow pumps of Badin. Iron was major problem in all water bodies of district Badin ranging from 50% to 69% and to some extent in open waters of Thatta. Other parameters as pH, copper, manganese, zinc, and phosphorus were within standard permissible limits of World Health Organization. Some common diseases found in the study area were gastroenteritis, diarrhea and vomiting, kidney, and skin problems.  相似文献   

17.
Chemistry of groundwater in Gulbarga district, Karnataka, India   总被引:1,自引:0,他引:1  
Groundwater quality of Gulbarga District is extensively monitored for two years of study period from October 1999 to September 2001. Twenty-five different sampling stations were selected for the study purpose in the city and five selected villages in the district. Gulbarga districts lies in the northern plains of Karnataka State, covers an area of 16,244 km2 and lies between 16°-11′ and 17°-19′N latitude and 76°-54′E longitude The study revealed that the water sources in the area are heavily polluted. The major water quality parameters exceeding the permissible limits during all the seasons are total hardness, calcium hardness, magnesium hardness, alkalinity and MPN (Bacterial count) and other parameters have shown distinctive variation in different stations and season. Most of these parameters are correlated with one another. Statistical analysis of the data is presented.  相似文献   

18.
杭州地区农业土壤中重金属的分布特征及其环境意义   总被引:1,自引:0,他引:1  
为了分析杭州地区农业土壤重金属的分布特征及其环境意义,通过现场采样和室内分析检测的方法,对杭州市各区县不同作物农业土壤表层土中的Hg、As、Cu、Pb、Cr、Cd 6种重金属元素进行检测,并对其分布特征进行了分析。结果表明,杭州地区农业土壤中除As外,其他5种重金属的平均含量均低于且接近浙江省土壤背景值,个别采样点的重金属含量超过了土壤环境质量国家二级标准。总体上,杭州地区农业土壤处于安全水平。通过重金属的区域分布特征分析表明,余杭区和富阳市农业土壤中重金属平均含量普遍高于其他区域。萧山区和建德市部分农业土壤则存在Cu和Hg含量较高的情况,而淳安县农业土壤中重金属含量差异较大,土壤中出现了As、Cr和Cd含量最大值。不同作物的农业土壤重金属含量存在一定的差异,但不明显。水稻田和蔬菜地的土壤中,重金属含量较其他作物种植类型的土壤中含量高;叶菜类(蔬菜、茶叶)作物土壤中的Cd含量要比根茎类(水稻)、茄果类(水果)及其他作物种植类型的土壤中的含量低。目前杭州地区土壤中6种重金属含量均对作物的直接危害不大,但由于萧山区个别采样点Cu含量严重超标,淳安县土壤中Cd受外源性来源影响也已较明显,需要相关部门加大监管力度,防止污染事件发生。同时,为防止农业土壤中重金属含量进一步升高,需要加大大气降尘监测与治理、废气污染监管与控制治理。  相似文献   

19.
青岛市环境空气臭氧污染特征分析   总被引:1,自引:0,他引:1  
冯静  董君  陶红蕾 《干旱环境监测》2013,(4):150-153,173
青岛市是国家环保部确定的臭氧试点监测城市之一。文章结合青岛市市南区东部和四方区空气子站2008—2011年的试点监测数据,从区域差异、时间变化等方面分析了青岛市的臭氧污染特征,结果表明:①二区域臭氧浓度的日分布均呈现“单峰型”,12:00~15:00是一天中臭氧污染最严重的时段;②每月监测累积值市南区东部呈现“双峰型”,四方区呈现“单峰型”;③二区域臭氧污染最突出的月份均为5月;④二区域臭氧平均浓度从高到低季节排序略有差异;⑤2009年二区域臭氧污染最严重,该年四季中春季臭氧污染最为突出。  相似文献   

20.
以2014年为基准年,以常州市行政边界为研究区域,利用卫星遥感解译的土地利用类型和裸土面积信息,并通过国土、气象等部门提供的土壤类型、气象因子等相关资料获取本地化因子和参数,估算常州市行政区域内裸露地面土壤扬尘中颗粒物的年排放量。结果表明:常州市裸露地面主要分布在金坛市、溧阳市和武进区,市中心区域最少,裸露土地利用类型主要为农田、滩涂、裸露山体、荒地及未硬化或未绿化的空地等;2014年常州市行政区域内裸露地面风蚀扬尘中TSP、PM 10、PM 2.5的年排放量分别为62.66 t、5.63 t、0.24 t,其中,金坛市土壤起尘量最大,其次为武进区,再次为新北区、溧阳市,市中心区域土壤扬尘最少。  相似文献   

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