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1.
金矿开采导致严重的水体和沉积物重金属污染。采用电感耦合等离子体质谱仪(ICP/MS)分析了金矿开采区河道32个采样点的水体和表层沉积物样品,研究了水样的溶解态及颗粒态重金属(As、Pb、Cd、Cr、Cu、Zn)组成;通过分步化学提取法研究了各重金属在沉积物中的地球化学形态组成,利用地累积指数法和潜在生态风险指数法评价了河流沉积物中重金属污染状况。结果表明:水体中Cu、Zn、As主要以溶解态存在,Pb、Cr、Cd以颗粒态为主。水体中重金属元素形态分布主要受点源污染排放影响。沉积物中,Cd浓度较低;As、Zn主要以氧化物结合态、有机物结合态和残渣态存在;Pb、Cr、Cu以有机物结合态和残渣态为主。结合地累积指数和潜在生态风险指数分析表明,Cd和Cu为主要的风险元素。  相似文献   

2.
对浙江南部近岸海域表层沉积物中重金属Cu、Pb、Zn、Cd、Cr、Hg、As的浓度进行了分析,25%的采样点Cu浓度超出了《海洋沉积物质量》(GB 18668—2002)的第一类标准限值,其余6种重金属的浓度均未超过GB 18668—2002的第一类标准限值。相关性分析表明,有机质是影响沉积物中重金属分布的重要因素,Cu、Zn、Cr、Cd、Pb、As表现出同源性。采用单因子指数法和潜在生态风险指数法评价沉积物中重金属污染现状及其潜在生态风险,结果表明,重金属污染现状和潜在生态风险均处于较低水平,Hg为首要潜在生态风险因子。  相似文献   

3.
巢湖表层沉积物中重金属的分布特征及其污染评价   总被引:14,自引:1,他引:13  
以巢湖表层沉积物为研究对象,利用BCR连续提取法研究了沉积物中Cr、Co、Ni、Cu、Cd、Zn、V和Pb等8种重金属元素的分布特征,同时运用潜在风险指数法和地累积指数法综合评价了巢湖沉积物中重金属的生态风险。结果表明,巢湖沉积物中的重金属含量在空间上表现出东西高、中间低的分布特征。巢湖表层沉积物中Cr、Co、Ni、V和Cu 5种重金属都主要以残渣态为主,Zn和Cd主要以弱酸提取态为主,Pb以可还原态为主,同时,Co和Cu 2种元素的可交换态及可还原态含量占有较高比例,具有潜在危害性。相关性分析显示,Cr、Cu、Pb、Ni、Zn和Cd 6种重金属元素的来源和分布可能具有相似性,Co和V 2种重金属元素具有相似的地球化学行为且其主要来源可能与其他几种重金属不同。潜在生态风险指数评价结果表明,巢湖表层沉积物中8种重金属元素构成的生态危害顺序为:Cd>Pb>Co>Cu>Ni>Zn>V>Cr,Cd具有高的生态危害等级,其他7种重金属元素均为低生态危害等级。地累积指数法评价结果表明:巢湖沉积物重金属元素的富集程度为Cd>Zn>Pb>Co>Cu>V>Ni>Cr,Cr属于清洁级别,Co、Cu、V和Ni处于轻度污染水平,Zn和Pb处于偏中度污染,Cd达到了重污染水平。  相似文献   

4.
为了解大辽河水环境中重金属污染来源及其污染程度,对大辽河上游来水以及主要排污口的表层水体和表层沉积物主要重金属(Cr、Co、Cd、Mn、Zn、Ni、Cu、Pb、As)浓度进行了研究,并分别采用综合污染指数评价法和地累积指数评价法对表层水体和表层沉积物污染程度进行了评价。结果表明,大辽河上游来水中Cr、Cd、Zn、Cu、As、Pb元素浓度均低于《地表水环境质量标准》(GB 3838—2002)Ⅰ类标准规定的限值;太子河中Cr、Co、Ni、Cu、Zn、Cd、Pb元素浓度较高,海城河Mn、As元素浓度较高;主要排污口水体中Cr、Cu、As、Cd、Pb元素浓度均低于GB 3838—2002的Ⅰ类标准规定的限值,其中纱厂潮沟、港监潮沟排污口水体重金属浓度较高。大辽河沉积物重金属浓度表现出自上游向下游递减的特征,西潮沟、港监潮沟排污口沉积物重金属浓度高于其他排污口。综合污染指数评价法表明,大辽河水质情况较好,太子河存在较高的潜在污染风险;而地累积指数评价法表明,大辽河主要汇入河流和主要污染源沉积物重金属污染程度大多为清洁,只有西潮沟排污口沉积物中As处于轻度污染,需要引起注意。  相似文献   

5.
选取滦河干流为研究对象,采集表层沉积物并分析其粒径分布、营养元素(N、P、C、S)及重金属(Cd、Ni、Cu、Zn、Cr和Pb)含量分布特征,对重金属采用富集系数法进行源解析,并利用地积累指数法、污染指数法和潜在生态危害指数法进行系统性的生态风险评价。结果表明:沉积物营养元素TN、TP、TC、TS均值为1 047.6、1 427.4、20 060.9和1 564.2 mg·kg~(-1),且分布存在空间差异性;粒径分布特征为粉砂或砂占比重大,黏土占比重小;重金属Cd、Cu、Ni、Zn、Cr和Pb含量均值分别为0.28、40.48、31.48、88.67、16.45和21.5 mg·kg-1,Cd、Cu、Ni、Zn超过河北省土壤背景值;Cd富集系数均值为2.31,其污染主要源是人为输入,其余重金属未见明显富集现象;相关性分析和主成分分析表明Cd与Cr、Cu、Ni、Zn呈显著正相关,Cr与Cu、Ni、Zn呈显著正相关,Pb与Fe、TP呈显著正相关,Cu与Ni、Zn呈显著正相关,Ni与Zn呈显著正相关;基于地累积指数法得Cd为重金属首要污染物;单项生态危害指数均值大小顺序为Cd(94.39)Cu(9.28)Ni(5.11)Pb(2.16)Zn(1.13)Cr(0.48);沉积物风险指数(SPI)相应等级为低风险级别(SPI=2.755),且整体潜在生态风险指数(RI)相应的亦为低生态风险(RI=112.561150)。  相似文献   

6.
天津市典型河网区沉积物中重金属分布及生态风险评价   总被引:3,自引:0,他引:3  
选择天津市典型河网区为研究对象,分析了沉积物中6种重金属(Cr、Cu、Mn、Ni、Pb和Zn)的分布特征,并采用富集系数法和潜在生态危害指数法分析了重金属的来源,进而评价了其生态风险。结果表明,表层沉积物中Cr、Cu、Mn、Ni、Pb和Zn的平均含量分别是58.18、23.52、524.60、22.93、25.24和49.51 mg/kg,其中Cr、Mn和Ni含量均低于天津市土壤背景值,而Cu、Pb和Zn含量在部分样点高于背景值;在垂直分布上,沉积物中Cr和Ni的含量相对稳定,而Cu、Mn、Pb和Zn的含量从底层到表层均先增加后降低。重金属富集系数(EF)分析显示,河网区表层沉积物中Cu和Zn在个别样点以及Pb在近一半样点存在人为输入过程(EF1.5),与接纳上游及区域的生活污水、农田退水有关,而Cr、Mn和Ni均来自自然源。重金属综合潜在生态危害指数(RI)评价表明,整个河网区表层沉积物为轻微生态危害水平,对区域的水环境质量不构成威胁。  相似文献   

7.
为明确长荡湖重金属污染特征及生态风险,于2018年9月至2019年8月采集长荡湖入湖河流、湖泊水体及表层沉积物样品,分析8种重金属(Cr、Ni、Cu、Zn、As、Cd、Pb和Hg)含量,采用正定矩阵因子(PMF)模型和主成分分析多元线性回归(PCA-MLR)模型对湖泊重金属污染来源进行解析,评估长荡湖沉积物重金属污染程度及风险等级。结果表明,8种重金属有7种超出江苏省土壤环境本底值,秋季长荡湖沉积物中重金属含量普遍较低。Cr、Cd、Zn和Ni的分配系数较高,现阶段不易从沉积物中释放到水体中,但由于Cd多为可交换态且在沉积物中含量较大,因此仍具有从沉积物中释放到水体中的潜力;Cu、As和Hg的分配系数较低,具有从沉积物中释放到水体中的潜力。Hg、Cd、As和Cu污染来源中农业生产占比最高,Pb和Zn交通污染占比最高,Ni自然来源占比最高,Cr工业活动占比最高。长荡湖春季和夏季受重金属污染程度更高,Cd和Hg的生态风险较高,需重点关注。  相似文献   

8.
安徽铜陵新桥河的沉积物样中,重金属浓度为Cu〉Zn〉Pb〉Cr,按国家土壤环境二级质量标准评价,Cu、Zn含量已超标。其新桥河的沉积物样中,Cu、Zn的污染参数很高,含量为高风险或极高风险;Pb污染参数较高,含量为一般风险或高风险。同时新桥河的沉积物样中,Cu具有很高的潜在生态风险。  相似文献   

9.
为了解污泥中重金属污染状况,分析了合肥市5家污水处理厂污泥中As、Cd、Cr、Cu、Pb和Zn的总量、形态特征与生物毒性,并采用内梅罗指数法和潜在生态危害指数法对污泥中重金属生态风险进行了评价。结果表明,污泥中各重金属元素总量为Zn(639.00~2 094.50mg/kg)Cu(107.22~415.86mg/kg)Cr(48.06~388.24mg/kg)Pb(4.50~35.40mg/kg)As(11.72~47.51mg/kg)Cd(2.02~16.68mg/kg)。形态分布特征分析结果显示,Cr、Cu和Pb较稳定,As的稳定性相对较差,Zn在污泥中稳定性最差,而Cd在不同污泥样品中的形态分布差异较大;水平振荡法和毒性特征沥滤方法对污泥中重金属浸出浓度较低,未超过相应限值。内梅罗综合污染指数法和潜在生态危害指数法对污泥中重金属总量评价结果表明,5家污水处理厂(分别命名为WT、WXY、JKQ、ZZJ、CTP)污泥样品表现为CTPJKQWXYZZJWT,各重金属元素污染顺序为CdCu(Zn)AsCrPb。  相似文献   

10.
为有效保护鄱阳湖流域水环境质量和水生态系统健康,对鄱阳湖19个采样点的表层沉积物样品及其孔隙水中的4种典型重金属(Cu、Pb、Zn、Cd)含量及赋存形态进行了测定,利用相平衡分配法(EqPA)初步探讨了沉积物重金属质量基准,并以此为评价标准,采用潜在生态风险指数法对鄱阳湖沉积物重金属生态风险进行评估。基于物种敏感度分布(SSD)法确立的重金属水质基准,建立沉积物重金属质量基准低值(SQC-L,Cu、Pb、Zn、Cd的SQC-L分别为57.37、49.40、98.51、2.74mg/kg)和高值(SQC-H,Cu、Pb、Zn、Cd的SQC-H分别为140.86、710.45、189.06、47.20mg/kg),经过对比分析,推荐采用SQC-H和SQC-L为鄱阳湖流域沉积物重金属质量基准。以SQC-L为评价标准,采用潜在生态风险指数法,对鄱阳湖19个采样点的生态风险进行评估,发现鄱阳湖流域受到了一定程度重金属污染,主要集中在南部湖区,具有一定的生态风险。  相似文献   

11.
The concentrations of heavy metals (Cr, Cd, Hg, Cu, Zn, Pb and As) in the water, sediment, and fish were investigated in the middle and lower reaches of the Yangtze River, China. Potential ecological risk analysis of sediment heavy metal concentrations indicated that six sites in the middle reach, half of the sites in the lower reach, and two sites in lakes, posed moderate or considerable ecological risk. Health risk analysis of individual heavy metals in fish tissue indicated safe levels for the general population and for fisherman but, in combination, there was a possible risk in terms of total target hazard quotients. Correlation analysis and PCA found that heavy metals (Hg, Cd, Pb, Cr, Cu, and Zn) may be mainly derived from metal processing, electroplating industries, industrial wastewater, and domestic sewage. Hg may also originate from coal combustion. Significant positive correlations between TN and As were observed.  相似文献   

12.
We investigated the occurrence of cadmium (Cd), copper (Cu), chromium (Cr), nickel (Ni), lead (Pb), Znic (Zn), iron (Fe), manganese (Mn), and magnesium (Mg) in sediments, as well as in related soils and aquatic plants in the Liangtan River, a typical secondary anabranch of the Yangtze River in the Three Gorges Reservoir Region (TGRR) of China. We found that sediments accumulated more metals than soils and aquatic plants. Concentrations of the nine metals in sediments and soils followed the same sequence, while their concentrations in aquatic plants followed a different sequence. Potential adverse effects of contaminated sediments on benthic fauna were evaluated, and the results showed that the toxic effect on benthic organisms followed the sequence Zn?>?Ni?>?Cr?>?Cu?>?Cd?>?Pb. The potential ecological risk index analysis indicated that Cd in sediments had considerable ecological risk, whereas Cr, Cu, Zn, Ni, and Pb had low ecological risk. The potential ecological risk index (RI) of the heavy metals in sediments of the Liangtan River was 174.9, indicating moderate ecological risk. The transfer factor trend of metals for aquatic plants showed that Cd and Ni had the most and least accumulation, respectively. For Cu, Cd, Mg, Pb, and Cr, a significant positive correlation of the metal concentrations was observed between sediments and soils, but no correlations (excluding Cr) were detected between sediments and aquatic plants. Our study indicated that anthropogenic input may be the primary source of metal contamination in the Liangtan River, and that Zn and Cd pollution in the Liangtan River should be further explored.  相似文献   

13.
Yu GB  Liu Y  Yu S  Wu SC  Leung AO  Luo XS  Xu B  Li HB  Wong MH 《Chemosphere》2011,85(6):1080-1087
Numerous indices have been developed to assess environmental risk of heavy metals in surface sediments, including the total content based geoaccumulation index (Igeo), exchangeable fraction based risk assessment code (RAC), and biological toxicity test based sediment quality guidelines (SQGs). In this study, the three indices were applied to freshwater surface sediments from 10 sections along an urbanization gradient of the Grand Canal, China to assess the environmental risks of heavy metals (Cu, Pb, Zn, Cd, and Cr) and to understand discrepancies of risk assessment indices and urbanization effects regarding heavy metal contamination. Results showed that Cd, Zn, and Pb were the most enriched metals in urban sections assessed by Igeo and over 95% of the samples exceeded the Zn and Pb thresholds of the effect range low (ERL) of SQGs. According to RAC, Cu, Zn, Cd, and Cr had high risks of adversely affecting the water quality of the Grand Canal due to their remarkable portions of exchangeable fraction in surface sediment. However, Pb showed a relative low risk, and was largely bounded to Fe/Mn oxides in the urban surface sediments. Obviously, the three assessment indices were not consistent with each other in terms of predicting environmental risks attributed to heavy metals in the freshwater surface sediments of this study. It is recommended that risk assessment by SQGs should be revised according to availability and site specificity. However, the combination of the three indices gave us a comprehensive understanding of heavy metal risks in the urban surface sediments of the Grand Canal.  相似文献   

14.
Acid volatile sulfide (AVS), simultaneously extracted metals (SEMs), and total concentrations of trace elements (Cu, Cd, Pb, Zn, Ni, Hg, As, and Cr) were studied in sediment cores from Baihua Lake in southwest China. The molar ratios of SEMs to AVS for all samples were lower than 1.0 except for the 25- to 30-cm layer of the sample collected at location YPZ, indicating that the heavy metals were currently not significantly bioavailable as a whole to benthic organisms. Based on the sediment quality guidelines and the potential ecological risk assessment, Hg presented a high ecological risk for the water body.  相似文献   

15.
Surface and core sediment samples were collected from Lake Ayg?r, Turkey, to determine heavy metal distribution, probable sources and potential ecological and toxic risks for the lake. Heavy metals, total sulfur, total phosphate, total organic carbon, chlorophyll degradation products, and CaCO3 content were established. The enrichment factor, PLI, potential ecological risk index, and toxic risk index were calculated. Zn was determined to have the highest accumulation in surface sediment, followed by Cr, Pb, and Cd, respectively. Cd was the only element that exceeded the critical value of 40 and posed a moderate potential ecological risk. According to TRI, no ecotoxic risk was found. It is thought that local fossil fuel consumption is responsible for the accumulation of heavy metals since there is a lack of urbanization, industrialization, and agricultural activities around the lake.  相似文献   

16.
The concentrations of heavy metals (Cd, Cr, Cu, Ni, Pb, and Zn) and organic carbon in surface sediments, collected from the southern Bohai Bay, were determined to assess the potential contamination and determine the environmental risks associated with heavy metals. Results showed that heavy metal concentrations in the sediments generally met the China Marine Sediment Quality criteria. Both the ecotoxicological index and the potential ecological risk index suggest that the combined ecological risk of the six studied metals may be low, with the highest ecotoxicological potential zones located in the offshore area. The methods of enrichment factor and geoaccumulation index suggested that elevated concentrations of Cd, Cr, and Ni are presented in the region. Multivariate analysis also indicated that the lithogenic factor dominates the distribution of most part of the considered metals in the study area, whereas Cd and Cr are clearly influenced by anthropogenic inputs. The results of this study are likely to be a useful tool to authorities in charge of sustainable marine management.  相似文献   

17.
Heavy metals in coastal wetland sediments of the Pearl River Estuary, China   总被引:12,自引:0,他引:12  
Sediment quality in coastal wetlands of the Pearl River Estuary was concerned since the wetlands were used for land reclamation, aquaculture and wildlife protection, and meanwhile served as one of the main ultimate sinks for large amount of heavy metals discharged from the rapidly developing Pearl River Delta. Total concentrations of heavy metal, such as Zn, Ni, Cr, Cu, Pb, and Cd, and their chemical speciation were investigated. Results showed that the sediments were significantly contaminated by Cd, Zn and Ni with concentration ranges of 2.79-4.65, 239.4-345.7 and 24.8-122.1mg/kg, respectively. A major portion (34.6-46.8%) of Pb, Cd, and Zn was strongly associated with exchangeable fractions, while Cu, Ni and Cr were predominantly associated with organic fractions, residual, and Fe-Mn oxide. Cd and Zn would be the main potential risk and the sediment quality is no longer meeting the demand of the current wetland utilization strategies.  相似文献   

18.
Superficial and cored sediment samples from the Moulay Bousselham lagoon and sub-watershed were analyzed for Al, Fe, Cu, Zn, Pb, Mn, Ni, Cr, As, Hg, and Cd. The temporal and spatial distributions of the main contamination sources of heavy metals were identified and described using chemometric and geographic information system (GIS) methods. Sediments from coastal lagoons near urban and agricultural areas are commonly contaminated with heavy metals, and the concentrations found in surface sediments are significantly higher than those from 50–100 years ago. The concentrations of these elements decrease sharply with depth in the sediment column, and the elements are preferentially enriched in the <2-μm-sized fraction of the sediment. The zones of enhanced risk of heavy metals were detected by means of GIS-based geostatistical modeling. According to sediment pollution indices and statistical analysis, heavy metals (Pb, Cu, Ni, Zn, Cr, and Hg) that pose a risk have become largely enriched in the lagoon sediments during the recent period of agricultural intensification.  相似文献   

19.
乌梁素海表层沉积物重金属分布特征及生态风险评价   总被引:4,自引:1,他引:3  
采样分析了内蒙古乌梁素海表层沉积物中Cu、Zn、Pb、Cr、Cd、Hg和As的含量、分布特征和富集状况,分别以现代工业化前正常颗粒沉积物中重金属含量的最高背景值和河套地区土壤中重金属含量背景值为参照,采用瑞典科学家Lars Hakanson的潜在生态危害指数法对7种重金属的富集系数和生态危害系数以及各采样点的生态危害指数进行了评价。结果表明,乌梁素海表层沉积物中As和Pb的空间变异性较大;以2种背景值为参比得出的重金属污染水平顺序相近,Hg和As为对乌梁素海生态环境具有潜在影响的主要重金属元素;同时表明,以河套地区土壤重金属背景值为参照更能直观地反映出乌梁素海表层沉积物中重金属的污染程度。  相似文献   

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