首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 109 毫秒
1.
雷州半岛土壤重金属分布特征及其污染评价   总被引:5,自引:1,他引:5  
在雷州半岛采集了106个土壤表层样品,分析了其中8种重金属元素(Cu、Pb、Zn、Cr、Ni、Cd、Hg和As)的全量.结果表明,雷州半岛土壤重金属污染由高到低排序为Ni>Cr>Hg>Cu>Zn>Cd>As>Pb,Zn、Cd、As和Pb质量浓度均没有超标,Hg和Cu质量浓度超标率亦不高,但Ni和Cr平均质量浓度达49.81、87.13 mg/kg,高于国内外其他对照区域,超标率分别为25.47%和24.53%;重金属元素在雷州半岛各土壤利用类型中分布规律不明显,按4种主要土壤利用类型受重金属污染程度大小排序为甘蔗地>果园土>水田>菜地;雷州半岛土壤综合污染指数总平均为0.970,土壤总体上尚清洁,重金属污染处于警戒水平;雷州半岛各区域中,徐闻、雷州两地土壤重金属质量浓度明显高于其他地区,其主要原因是徐闻、雷州两地成土母质主要为玄武岩,造成土壤Cr、Ni及其他重金属背景值较高.  相似文献   

2.
典型农业活动区土壤重金属污染特征及生态风险评价   总被引:7,自引:0,他引:7  
联合野外采样和室内分析,以典型农田土壤为研究对象,分析土壤中重金属Cr、Ni、Cu、Zn、Cd、Pb、As和Hg的含量及污染特征,并采用单因子污染指数法、内梅罗污染指数法及潜在生态危害指数法,对农田土壤进行生态风险评价,同时利用主成分因子分析法,提取出3主因子,分析土壤重金属可能来源。结果表明,研究区农田土壤各重金属含量均高于背景值,表层污染程度高于底层;各重金属单因子污染指数对应污染等级均为清洁,内梅罗污染指数为0.46,污染等级为安全。潜在生态风险评估结果显示,研究区土壤重金属污染的潜在生态风险危害程度为中等,各重金属的潜在生态危害程度依次为CdHgAsCuPbNiCrZn。主成分因子分析显示,研究区土壤中Hg、As和Cr主要由工业污染源贡献,土壤中Cd、Pb的污染主要来源于不合理的农业生产活动和居民生活,Ni、Zn和Cu与自然成土过程密切相关。综合评价表明,尽管研究区农田土壤目前重金属污染情况较轻,未达到警戒水平,但由于城市化的发展及长期现代化农业耕作活动造成农田土壤重金属的富集,因此,增强农田土壤安全性生产管理、严控土壤污染源与推行标准农业生产是十分必要的。  相似文献   

3.
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   

4.
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   

5.
山东省城市污水处理厂污泥重金属污染特征及风险评价   总被引:1,自引:0,他引:1  
采用电感耦合等离子体质谱仪(ICP-MS)和原子吸收光谱仪重点研究了山东省城市污水处理厂污泥中重金属Cu、Cd、Ni、Pb、Mn、Zn和Cr的污染特征,并对其做了潜在生态风险评价。结果表明:(1)山东省城市污水处理厂污泥呈现高有机质、高氮、高磷和高钾的特点,具有较好的利用价值。(2)污泥中的Mn占重金属总量的质量分数最高,Zn、Cu和Cr占重金属总量的质量分数较高,Cd占重金属总量的质量分数最低。不同城市的重金属浓度大体表现为淄博市济南市枣庄市青岛市烟台市。(3)污泥中生态危害指数最高的重金属为Cu、Cd和Ni;污泥中重金属的复合生态危害指数表现为淄博市济南市枣庄市青岛市烟台市,淄博市和枣庄市城市污水处理厂污泥的重金属潜在生态风险均为中等,其余城市的重金属潜在生态风险均为轻微。Cu和Cd是污泥重金属潜在生态风险的主要贡献因子。(4)对重金属进行主成分分析,第1主成分主要反映了Cu、Ni和Cd的富集程度;第2主成分主要反映了Pb的富集程度;第3主成分主要反映了Zn和Mn的富集程度。  相似文献   

6.
于铜陵矿区采集147个农田土壤样品,分析土壤样品中Cd、Cu、Pb、Zn 4种重金属总量和有效态含量,探讨该地区农田土壤重金属的污染现状、潜在生态风险和来源,并基于不同类型农田土壤有效态重金属的风险评价提出农作物种植建议。结果表明:铜陵矿区农田土壤重金属平均值普遍高于铜陵市土壤背景值,局部地区潜在生态风险极大;4种重金属元素的单项潜在生态危害指数依次为CdCuPbZn,铜陵矿区农田土壤重金属的潜在生态风险程度为中等,Cd为最主要的潜在生态危害因子;基于有效态重金属对不同类型农田土壤进行潜在生态风险评价,春季农田土壤的综合潜在生态危害指数排序为油菜地蔬菜地麦地,秋季农田土壤的综合潜在生态危害指数排序为稻田蔬菜地。基于上述结果,建议在重金属污染程度较高的区域实施小麦-蔬菜轮作,而在蔬菜种植中选择对重金属吸收能力较低的种类或品种。  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.
于2016年8月至2017年1月分别对南方某铅锌锰冶炼区周边(污染区)及大新村(对照区)进行大气降尘干法采集,测定了大气降尘中Cd、Zn、Pb、Mn、Cu、As、Ni、Cr含量,采用富集因子法、潜在生态风险指数法和健康风险评价对大气降尘重金属污染进行源解析与风险评价。结果表明,污染区大气降尘中Cd、Cr、Mn、Ni、Pb、As、Zn、Cu均值分别为166.6、104.5、6 109.0、80.9、635.9、53.6、8 838.5、180.3mg/kg,分别为背景值的691.3、2.1、11.6、2.4、24.5、2.9、106.6、6.9倍。富集因子法分析得出,污染区大气降尘中Cd、Zn和Pb主要来源于铅锌冶炼以及电解锰企业;Mn、Cu、As和Ni在大气降尘中富集程度次之,既受自然源,也受人为源影响。生态风险评价表明,污染区大气降尘中Cd为极强生态危害,Pb、Zn属于强生态危害,Cu、As、Ni、Cr均为轻微生态危害,综合潜在生态风险达到很强生态危害等级。健康风险评价表明,污染区大气降尘中重金属主要健康风险来源于非致癌风险,致癌风险可忽略。大气降尘中Pb、As、Cd经手-口摄入途径对儿童存在非致癌风险,应采取措施降低污染区大气降尘中Pb、As、Cd含量,控制手-口摄入途径对儿童的非致癌风险。  相似文献   

9.
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   

10.
运用地球化学标准化方法评价浙江省平湖市农田土壤重金属污染状况.结果显示,约50%的农田土壤受到了重金属人为污染,其中除了5.6%的农田土壤受到了Hg中度人为污染外,其余均为轻微人为污染.每种重金属元素的地球化学基线值均可信,Cr、Pb、Cu、Zn、Ni和As与标准化元素Al线性相关性较好,而Hg和Cd与Al线性相关性不好,原因可能与后者受人类活动或土壤环境影响较大有关;多变量聚类分析结果表明,平湖市农田土壤重金属元素组成特征为Cd一族、Hg一族,而Cu、Pb、Ni、As、Cr和Zn为一组合族.  相似文献   

11.
某矿区土壤和地下水重金属污染调查与评价   总被引:3,自引:0,他引:3  
为了解湘南某矿区土壤和地下水重金属污染状况,对该矿区东河流域附近重金属污染源进行了调查,同时,对地下水和土壤样品进行了采样分析,结果表明:(1)该矿区东河流域附近的主要污染源有18个,其中有色金属选厂、尾矿库、采矿场和冶炼厂是排放重金属较多的污染源;(2)20个采样点中土壤重金属Pb、Cd、Zn、As和Hg大部分超过国家土壤环境质量标准(GB15618-1995),综合污染指数P综〉1,该矿区主要的重金属污染元素为Cd、As和Hg,且土壤中Cd、Zn和As的含量两两之间存在着极显著的正线性相关关系;(3)重金属元素在土壤中的纵向迁移不明显,该矿区附近20个采样点的地下水并未受到污染,综合污染指数P综〈1。20个采样点地下水Pb、Cd、Zn、As、Hg浓度均能达到地下水质量标准(GB/T14848.9)中的Ⅲ类标准。  相似文献   

12.
以《土壤环境质量标准》(GB 15618—1995)二级标准作为评价标准,采用以改进层次分析法确定权重的加权平均法对南京市郊典型蔬菜地的土壤重金属污染状况进行了评价。结果表明,研究区土壤中Cu、Pb、Cr的单因子污染指数平均值均小于1,含量超标率均不超过10.32%,而Cd的单因子污染指数平均值达2.15,含量超标率为84.13%,急需对该区土壤和受体做进一步的Cd污染深入调查或风险评估;研究区土壤重金属综合污染指数平均值为1.28,属玷污水平;利用ArcGIS 8.3软件进行土壤重金属污染的空间分布特征分析结果表明,研究区各元素的污染程度为Cd>Pb>Cu>Cr,各元素的污染格局较为相似,城市化活动对土壤污染贡献较大;研究区有81.16%的土壤重金属污染级别为玷污,3.78%处于本底级,15.06%处于安全级。  相似文献   

13.
The contributions of heavy metals in selected vegetables through atmospheric deposition were quantified in an urban area of India. Deposition rate of Zn was recorded maximum followed by Cu, Cd and Pb. The concentrations of Zn and Cu were highest in Brassica oleracea, Cd in Abelmoschus esculentus and B. oleracea, while Pb was highest in Beta vulgaris. Heavy metal pollution index showed that B. oleracea was maximally contaminated with heavy metals followed by A. esculentus and then B. vulgaris. The results of washing showed that atmospheric deposition has contributed to the increased levels of heavy metals in vegetables. Both Cu and Cd posed health risk to local population via test vegetables consumption, whereas Pb posed the same only through B. oleracea. The study concludes that atmospheric depositions can elevate the levels of heavy metals in vegetables during marketing having potential health hazards to consumers.  相似文献   

14.
胶州湾表层沉积物重金属污染分布特征及其生态风险评价   总被引:2,自引:0,他引:2  
根据2009年对胶州湾东岸表层沉积物中重金属调查结果,对重金属含量分布及富集特征进行分析,并采用潜在生态危害指数(RI)法对其生态危害程度进行评价。结果表明,胶州湾东岸表层沉积物中的重金属含量,除7月的Cu、Cr平均含量略低于12月外,其他重金属(Cd、Zn、Pb、As)平均含量7月均高于12月。在表层沉积物中Cd的污染程度最高,7月平均污染指数达1.68。单个重金属潜在生态危害系数(Eir)表明,Cd的Eir大于其他重金属的Eir,其他重金属的Eir均小于轻微危害程度的划分标准,表明对胶州湾东岸生态环境具有潜在影响的重金属主要是Cd,从多个重金属的RI均值看,均小于150,属于轻微生态危害。  相似文献   

15.
Areas contaminated with heavy metals can pose major risks to human health and ecological environments. The aims of this study are to assess human health risk and pollution index for heavy metals in agricultural soils irrigated by effluents of stabilization ponds in Birjand, Iran. The results revealed that the levels of Cr, Mn, Zn, Fe, Cu, Cd, and Pb were in range of 70.3–149.65, 355–570, 31.15–98.45, 23,925–29,140, 22.75–25.95, 0.17–6.51, and 8.5–23.5 mg/kg in topsoils, respectively. Total hazard index values from heavy metals through three exposure routes for adults and children were 9.13E−01 and 1.10, respectively, indicating that there was non-carcinogenic risk for children. The total risk of carcinogenic metals (Cr, Cd, and Pb) through the three exposure routes for adults and children was 1.06E−04 and 9.76E−04, respectively, which indicates that the metals in the soil will not induce carcinogenic risks to these age groups. Pollution levels of heavy metals in soil samples including enrichment factor (EF), contamination factor (CF), pollution load index (PLI), and geo-accumulation index (Igeo) showed heavy metal contamination of agricultural soils. The results of the present study provide basic information about heavy metal contamination control and human health risk assessment management in the study area.  相似文献   

16.
渤海南部表层沉积物重金属污染及潜在生态风险评价   总被引:2,自引:0,他引:2  
利用电感耦合等离子体/质谱仪(ICP/MS)测定了渤海南部21个站位表层沉积物中Cr、Cu、Zn、Cd和Pb共5种重金属浓度,比较分析了重金属来源及分布特征,同时应用Hakanson潜在生态危害指数法进行潜在生态风险评价.结果表明,调查区域沉积物中Cr、Cu、Zn、Cd、Pb的平均质量浓度分别为43.67、17.27、...  相似文献   

17.
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   

18.
The Qinling panda subspecies (Ailuropoda melanoleuca qinlingensis) is highly endangered with fewer than 350 individuals inhabiting the Qinling Mountains. Previous studies have indicated that giant pandas are exposed to heavy metals, and a possible source is vehicle emission. The concentrations of Cu, Zn, Mn, Pb, Cr, Ni, Cd, Hg, and As in soil samples collected from sites along a major highway bisecting the panda’s habitat were analyzed to investigate whether the highway was an important source of metal contamination. There were 11 sites along a 30-km stretch of the 108th National Highway, and at each site, soil samples were taken at four distances from the highway (0, 50, 100, and 300 m) and at three soil depths (0, 5, 10 cm). Concentrations of all metals except As exceeded background levels, and concentrations of Cu, Zn, Mn, Pb, and Cd decreased significantly with increasing distance from the highway. Geo-accumulation index indicated that topsoil next to the highway was moderately contaminated with Pb and Zn, whereas topsoil up to 300 m away from the highway was extremely contaminated with Cd. The potential ecological risk index demonstrated that this area was in a high degree of ecological hazards, which were also due to serious Cd contamination. And, the hazard quotient indicated that Cd, Pb, and Mn especially Cd could pose the health risk to giant pandas. Multivariate analyses demonstrated that the highway was the main source of Cd, Pb, and Zn and also put some influence on Mn. The study has confirmed that traffic does contaminate roadside soils and poses a potential threat to the health of pandas. This should not be ignored when the conservation and management of pandas is considered.  相似文献   

19.

The effect of industrial activities on trace metals in farmland of rapidly industrializing regions in developing countries has increasingly been a concern to the public. Here, soils were collected from 13 greenhouse vegetable production (GVP) farms or bases near industrial areas in the Yangtze River Delta of China to investigate the occurrence, speciation, and risks of Cr, Cu, Zn, Cd, Ni, and Pb in GVP soil. The results revealed that the main metal elements causing GVP soil pollution were Cd, Zn, Ni, and Cu, of which contamination levels were generally unpolluted to moderately polluted. Zinc pollution was mainly attributed to heavy fertilization, while Cd, Ni, and Cu pollution may be greatly ascribed to industrial effluents and coal combustion. Metal speciation studies showed that most of Cr, Ni, Cu, and Zn was present in residual fraction while more than half of Cd and Pb was present in non-residual fractions. Additionally, pollution of Cd, Cu, Ni, and Zn in GVP soil increased their corresponding mobile fractions. Risk assessment using potential ecological risk index and risk assessment code showed that Cd was the major risk contributor. Specifically, Cd generally posed moderate or considerable ecological risk as well as displayed medium or high mobility risk in GVP soil. Thus, great attention should be paid to the contribution of both industrial discharges and intensive farming to soil pollution by trace metals, especially Cd, because of its high mobility risk.

  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号