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1.
土壤重金属污染潜在风险评价   总被引:5,自引:0,他引:5  
以北方某河流河床及河流两侧农田中土壤为研究对象,采用地累积指数法和潜在生态危害指数法对土壤中Cd 和Ni 的污染状况进行风险评价。结果表明,废弃冶炼中心处河床及河流两侧土壤中 Cd 和Ni 污染严重,均超过当地土壤背景值; 河床中土壤重金属富集程度为Cd > Ni,其中Cd 富集程度达5 级,为重污染。以当地土壤背景值作为参比值进行评价,该河流处于重度的潜在生态危害程度,重金属的生态危害顺序为Cd > Ni。  相似文献   

2.
土壤重金属元素污染的潜在生态危害程度及空间分布是土壤污染防治的前提和基础。为揭示土壤中重金属元素的潜在生态危害程度,在前期土壤污染调查评价的基础上,采用Hakanson的潜在生态危害指数,以研究区西邻无工矿影响的农田土壤重金属元素含量均值作为参比值,对矿区农田土壤进行了重金属元素污染的潜在生态环境危害评价。结果表明,Hg是农田土壤中潜在生态危害最严重的元素,其次是Cd和Pb。Hg、Pb、Cd对土壤污染危害的贡献率之和达97.41%,仅Hg的贡献率就达84.37%。多个重金属元素潜在生态危害很强、极强的土壤样品占样品总数的49.62%,影响面积达74.54%。从西北向东南,土壤重金属元素潜在生态危害程度激增,这种空间分布与目前金矿选冶的布局一致。土壤重金属元素潜在生态环境危害的后果已被前期研究成果所证实。  相似文献   

3.
小秦岭某金矿区农田土壤重金属污染的潜在生态危害评价   总被引:5,自引:0,他引:5  
土壤重金属元素污染的潜在生态危害程度及空间分布是土壤污染防治的前提和基础.为揭示土壤中重金属元素的潜在生态危害程度,在前期土壤污染调查评价的基础上,采用Hakanson的潜在生态危害指教,以研究区西邻无工矿影响的农田土壤重金属元素含量均值作为参比值,对矿区农田土壤进行了重金属元素污染的潜在生态环境危害评价.结果表明,Hg是农田土壤中潜在生态危害最严重的元素,其次是Cd和Pb.Hg、Pb、Cd对土壤污染危害的贡献率之和达97.41%.仅Hg的贡献率就达84.37%.多个重金属元素潜在生态危害很强、极强的土壤样品占样品总数的49.62%,影响面积达74.54%.从西北向东南,土壤重金属元素潜在生态危害程度激增,这种空间分布与目前金矿选冶的布局一致.土壤重金属元素潜在生态环境危害的后果已被前期研究成果所证实.  相似文献   

4.
为了解潼关金矿矿区早期粗放式的矿业活动对矿区周边农田土壤的重金属污染状况的影响以及对暴露人群的不良健康效应的评价,采用地质调查工程选取了矿区附近6块农田土壤为研究对象,通过X射线荧光光谱分析法测定了68个土壤样本中Cd、Hg、As、Pb、Cr、Cu、Ni、Zn等8种土壤重金属含量,采用地累积指数法、潜在生态危害指数法和健康风险评估模型分别评价该区土壤重金属污染程度、潜在生态风险和人体健康风险。结果表明,该区农田土壤中Cd、Hg、Pb、Cu、Ni、Zn 6种重金属平均值高于潼关县土壤背景值,呈现不同程度的积累;Pb、Hg、Cd的土壤积累含量不仅超出了土壤重金属污染对农产品质量存在安全风险的最低限值农用地土壤污染风险筛选值,还分别以41.2%、72.1%、14.7%的超标率超出了土壤重金属污染对农产品质量存在安全风险的最高限值农用地土壤污染风险管制值;研究区土壤重金属污染评价显示,土壤中Hg、Cd、Pb总体污染程度最重,Cu、Zn总体呈现轻—重污染,Ni、Cr、As总体呈现无污染状态。生态风险评价显示,Hg、Cd、Pb为主要生态危害元素,Hg为极强风险,Cd和Pb为强风险。人体健康风险表明,研究区重金属对儿童的非致癌风险显著,Pb、Hg为主要非致癌因子;致癌风险均在合理范围,Cd致癌风险最大,手-口摄入为最主要的暴露途经,儿童更易受到重金属污染威胁。  相似文献   

5.
张塞  于扬  王登红  王伟  张洪果  岑况 《岩矿测试》2020,39(5):726-738
稀土矿的露天开采易造成土壤重金属污染等环境问题。已有研究表明赣南离子吸附型稀土矿区土壤存在以Cd、Pb为主的轻、中度重金属污染。常见环境质量评价以主要污染因子(如重金属总量)作为衡量污染程度的指标,仅能反映重金属的富集程度。为查明赣南稀土矿区土壤重金属的赋存状态、迁移能力以及生物有效性,本文在利用电感耦合等离子体质谱法(ICP-MS)测定土壤重金属各形态含量的基础上,采用地累积指数法、潜在生态危害指数法及RAC风险评价法对赣南稀土矿区土壤重金属的生态风险进行评价。结果表明:(1)研究区土壤重金属主要以残渣态存在,占总量的65.5%。(2)土壤样品中Cd、Pb含量平均值分别是江西省土壤背景值的1.72倍和2.14倍;流域内位于矿山下游河流沿岸农田土壤Cd的平均值、尾矿库附近农田Pb的平均值分别是土壤背景值的2.33倍和3.06倍,22.7%样品的Cd或Pb含量超过风险筛选值,其中可交换态所占比例仅次于残渣态,分别占总量的47.1%和13.5%。(3)地累积指数与潜在生态风险评价结果表明Cd、Pb累积程度及生态风险水平较高,Co、Ni、Cu、Zn较低;RAC风险评价结果显示Cd生态风险较高,Co、Zn、Pb生态风险中等,Cu、Ni生态风险低。(4)针对矿区农田土壤的三种评价方法各有侧重,其评价结果异中有同,均表明研究区土壤Cd具有较高的污染程度和迁移活性,生态风险较高。本研究结果将为识别稀土矿周边农田土壤的潜在环境风险,提出有效的防范、应急与减缓措施提供科学依据。  相似文献   

6.
农田表层土壤中重金属潜在生态风险效应研究   总被引:1,自引:1,他引:0       下载免费PDF全文
皖江经济区南陵县是我国商品粮生产基地之一,该区农田表层土壤中重金属元素潜在生态风险效应研究对于提高粮食安全具有重要意义。文章以南陵县基本农田区作为主要研究区,按土地质量地球化学调查评价要求,布设和采集了0~20 cm深度的表层土壤样品500组,分别监测了土壤中Cd、Pb、Cr、Hg、As、Cu、Fe、Mn和Zn等重金属含量现状,并采用地质累积指数法和潜在生态风险指数法量化解析了这些重金属在土壤中的潜在生态风险效应。结果表明:(1)土壤中除了Cr元素,其余重金属元素都不同程度存在异常;(2)局部土壤中Cd、Hg和Fe等元素含量存在异常,平均含量分别是所在区域背景值的1.92,1.95,7.13倍,存在潜在生态风险的影响;(3)土壤中重金属元素的潜在生态风险值(平均RI值)为164.5,Cd和Hg元素为主要影响元素。  相似文献   

7.
贵阳市土壤重金属污染及其潜在生态风险评价   总被引:16,自引:1,他引:16  
以贵阳市区土壤为对象,研究不同功能区土壤中重金属(Cu、Pb、Zn、Cr和Cd)污染的特征,采用Hakanson潜在生态危害指数法评价了土壤中重金属的潜在生态危害。结果表明,贵阳市城区土壤重金属含量差异较大,变化幅度均高于35%。产生潜在生态危害的重金属主要是Cd,已达到中度生态危害水平,Cu、Pb、Zn、Cr显示轻度生态危害水平。贵阳市潜在生态危害综合指数(RI=90.86),表明土壤重金属污染达轻度生态危害。不同功能区潜在生态危害程度的顺序依次是工业区>公园>交通区>郊区耕地>居民区。  相似文献   

8.
为了解铅锌矿区土壤重金属纵向迁移特征与生态风险,分层采集了某铅锌矿区尾矿库附近农田土壤深度为0~100cm的土壤样品,分析评价不同深度土壤中重金属污染与潜在生态风险,研究了土壤中Pb、Zn、Cd、Hg的形态纵向分布特征。结果表明:研究区土壤重金属纵向污染程度为上层中层下层,且各层土壤均为重度污染;Pb、Zn、Cd的六种赋存形态含量均表现为上层远高于中层与下层,且中层和下层含量相当。生态风险评价结果显示:综合潜在生态风险等级依次为上层中层下层,且均表现为很强生态危害,其中Cd是主要贡献者;单项重金属污染潜在生态风险总体体现为CdHgPbAsZnCuCr。在该矿区的土壤修复过程中,应重点关注Cd、Hg、Pb、As和Zn的生态风险影响。  相似文献   

9.
评价土壤中重金属污染的方法有单因子指数法、内梅罗综合指数法、地累积指数法、潜在生态危害指数法等,但迄今尚没有成熟的、统一的标准。本文以济宁城区南部农田为研究区域,采集77件土壤样品进行调查,光谱、质谱等技术分析结果表明土壤环境中8种重金属(As、Cd、Cr、Cu、Hg、Ni、Pb、Zn)平均含量分别为16.7、0.270、88.4、33.0、0.050、40.4、29.3、89.1 mg/kg,与黄淮海平原土壤生态地球化学基准值相比,Hg、Cd分别高于基准值的1.50倍、1.39倍,其他重金属高于基准值的0.26~0.52倍。Hg与As、Cr、F、p H、Cu、Ni、TFe2O3呈显著负相关,表明土壤受到了Hg的不同程度人为污染。用富集系数法和地累积指数法分析区内8种重金属元素的污染(富集)程度,均表明土壤环境中Hg、Cd为轻微污染(富集)程度,其他6种元素均为无污染。将该区域重金属含量与其生物毒性系数、生态效应、环境效应相结合,运用潜在生态危害指数法对重金属污染进行生态风险评价。结果显示,8种重金属的潜在生态危害由强至弱依次为:HgCdAsCuPbNiCrZn,与污染(富集)程度排序差异明显;尽管Hg、Cd在研究区内仅仅为轻微(富集)程度,但都具有较高的毒性响应系数,两元素对土壤综合潜在生态危害的贡献率之和达到了81.26%。借助Map GIS绘制研究区潜在生态风险程度评价图,表明区内土壤环境总体上处于"中度"潜在生态风险,约6.83%的面积呈"强"和"很强"潜在生态风险,其中复兴河、姚楼河、京杭运河3条河流交汇处的局部区域(占研究区面积的0.50%)达到了"很强"潜在生态风险。通过调查可疑人为污染源发现,"强"和"很强"潜在生态风险区域的布局恰好与区内煤矿生产开采活动相关。本文提出,应当注重对煤矿开采矿井周边区域土地复垦及污染防治工作,尤其是加强土壤中Cd、Hg的物理化学改良及生物治理修复工作,防止Hg、Cd进一步污染扩散。  相似文献   

10.
为查明雄安新区西南部耕层土壤的重金属元素污染状况,以唐河-唐河新道、清水河-府河流经区域的农田土壤为研究对象,采用野外采样和室内分析相结合的方法,调查研究耕层(0~20 cm)土壤As、Cu、Zn、Ni、Pb、Cr、Cd和Hg元素的质量分数和分布特征,分析评价重金属元素的污染状况及潜在生态危害风险等级。调查表明,除Cd外,其它重金属元素的平均值均低于土壤风险筛选值,有55%的Cd元素样本超出筛选值,其平均值超出筛选值约26.67%;土壤中As、Cu、Zn、Pb和Cd元素均有不同程度污染,污染程度排序为Cd>Cu>As(Zn)>Pb,其中Cd的污染风险区大面积分布在研究区的中东部,具有典型面状污染特征,Cd元素重度和中度污染的比例分别为3.09%和12.74%;8种重金属元素潜在的生态危害程度排序为Cd>Hg>As>Pb>Cu>Ni>Cr>Zn,其中Cd的生态危害为强、很强和极强的超标率分别为32.43%、31.27%和4.63%;RI值为强生态危害及其以上的比例占38.61%,平均值为287.39。综上表明,雄安新区西南部耕层土壤整体存在重金属元素的污染,重金属的潜在危害程度为中等风险。  相似文献   

11.
Metal distributions (Cd, Cr, Cu, Ni, Pb and Zn) in the soils and plants were investigated in roadside surface soils and grass herbage collected from two study sites adjacent to Mangshi–Ruili and Dali–Baoshan highways. At each study site, soil and plant samples were collected along two roadside slopes with distances of 5, 10, 20, 50, 100, and 200 m away from the highway. Results show that the enrichment of heavy metals in the surface soils and plants along the road is caused by the highway, and it decreases with the increasing distance from the road. Metal concentrations in the soils and plants along the downslope are higher than those in the upslope along the road. The six types of metals investigated in this research mainly distributed within 200 m from the highway. Four types of relationships between metal uptake by plants from soils and the distance were found and their clear distinctions of Cr, Cu, Pd, Ni and Zn uptake by plants were also investigated.  相似文献   

12.
石家庄污灌区表层土壤中重金属环境地球化学研究   总被引:10,自引:1,他引:9       下载免费PDF全文
对石家庄市污灌区上、中、下游3条剖面中的农田表层土壤重金属元素Pb、Hg、cr、Cd、As、Cu、Zn的含量、污染状况、形态等进行了调查与研究.结果发现.研究区表层土壤中的重金属(除As外)在污灌区上、中、下游均有不同程度的富集,其中Hg、Cd含量较高,下游表层土壤中重金属平均含量均高于上、中游.运用Muller的地积累指数法进行了污染评价,结果表明,以河北省土壤背景值计算,As未对研究区表层土壤造成污染,研究区上、中、下游表层土壤受到了Hg、Cd的污染,主要为轻度一中等的污染程度.研究区表层土壤中Pb、Hg、Cr、As、Cu、Zn的形态主要为残渣态,Cd的形态主要为离子交换态和碳酸盐态,Cd具有一定的生物有效性和潜在生态危害性.  相似文献   

13.
洪涛  谢运球  赵一  杨利超 《中国岩溶》2016,35(4):439-445
为探讨硫铁矿冶炼区不同土地利用方式和土壤类型对重金属元素迁移的影响,采集了毕节市林口废弃硫铁矿冶炼厂内耕地砂壤土及附近林地石灰土表层和深层样共40组。室内测试土壤理化指标Pb、Zn、Cd全量和有效态含量,并对重金属元素含量的水平和垂直分布特征及重金属元素含量的相关性进行了讨论。结果表明:土壤中Pb和Zn的含量均符合土壤环境质量二级标准值,耕地表层土壤Cd含量是贵州省农业土壤背景值的7倍。土壤Cd有效态含量占全量的比值最大,而Pb和Zn有效态含量占全量的比值差别较小。耕地砂壤土Zn和Cd的全量随剖面深度的增加表现为先增大后减小,Pb呈减少的趋势;Pb和Zn的有效态含量随剖面深度的增加而减少,Cd有效态含量呈波动变化。林地石灰土中Pb、Zn、Cd的全量和有效态含量均随剖面深度的增加而减少,且Pb、Zn、Cd全量之间及全量与有效态含量之间都具有显著的正相关关系,而在耕地中各元素的相关性不明显。土壤频繁的扰动和偏酸性的环境有利于重金属垂向迁移。   相似文献   

14.
小秦岭金矿区小麦和玉米重金属的健康风险评价   总被引:3,自引:0,他引:3  
重金属污染引发的农产品质量安全问题已成为全社会关注的焦点。为了解小秦岭金矿开发引起的重金属污染风险,采集了同点位的农田土壤、小麦和玉米籽粒样品,测定了其中Hg、Pb、Cd、Cr、As、Cu和Zn的含量及其在土壤中的形态;采用指数法和RAC风险评价法分析了土壤重金属的污染风险,采用转移因子和目标风险指数法评价了小麦、玉米籽粒中重金属的健康风险。结果表明:小秦岭金矿区土壤中Hg、Pb、Cd、Cu、Zn含量受矿业活动影响强度大,在土壤中累积明显;土壤中Hg、Cd、Pb、Cu总量超过了国家限值,呈现污染;Cd、Hg、Cu具有潜在生态风险。小麦和玉米籽粒中Pb以及玉米籽粒中的Cd的平均含量高于国家标准,呈现一定程度的污染;部分小麦样品中的Hg、Cd和部分玉米样品中的Cd超过WHO/FAO安全限值,小麦和玉米籽粒中度Pb平均含量超过欧盟安全标准,说明具有潜在的健康风险。重金属的转移因子表明Cd、Zn及Cu比其他重金属更容易从土壤转移到小麦和玉米籽粒中;通过小麦对重金属的摄入量略高于玉米,远低于WHO/FAO推荐剂量;目标风险指数评价表明,只消费小麦或玉米基本不产生健康风险,但同时消费矿区生长的小麦和玉米具有较高的Pb健康风险。  相似文献   

15.
《Applied Geochemistry》2001,16(11-12):1361-1368
Due to rapid urbanisation and scarcity of land, most of the urban parks and recreational areas in Hong Kong are built close to major roads or industrial areas, where they are subject to many potential pollution sources, including vehicle exhaust and industrial emissions. An extensive soil survey was conducted in urban parks of Hong Kong to study the current conditions of heavy metals contamination in soils. Soil samples and associated street dusts were collected from more than 60 parks and public amenity areas in old urban districts, industrial areas and New Towns of the territory. Soils were also sampled in the remote country parks to establish the baseline conditions. The total concentrations of heavy metals and major elements in the samples were determined. The results indicate that urban soils in Hong Kong have elevated concentrations of Cd, Cu, Pb and Zn. The parks with high metal concentrations are located in old urban commercial districts and industrial areas, indicating that the major contamination sources in these soils are traffic emissions and industrial activities. In addition, the application of Cd containing phosphate fertilizers may be an important source of Cd in urban park soils. The street dusts have highly elevated Zn concentration, particularly along the main trunk roads. The high Zn content in the street dusts may come from traffic sources, especially vehicle tyres. Selective soil and road dust samples were also analysed for potential chemical speciation by a sequential chemical extraction method. The chemical partitioning results show that Pb and Zn are mainly in the carbonate/adsorbed and Fe–Mn oxide phases, while Cu is largely associated with the organic and sulphide fractions. The high exchangeable Cd in urban soils and high concentration of Zn in street dusts need further investigation for their ecological and health implications.  相似文献   

16.
The heavy metal accumulation in soils caused by industrialization has attracted broad attention. To evaluate the soil environmental quality of Xiangyin County, an important food production base in China, 99 top paddy soil samples were analyzed for total concentrations of As, Cd, Cr, Cu, Hg, Ni, Zn and Pb. Kriging interpolation was used to determine the spatial distribution of the metals. The assessment of soil environmental quality was performed according to pollution index methods. As the results showed, except for Cu, Cr and Ni, the mean concentrations of Zn, Pb, Cd, As and Hg in soils were elevated to different extents when compared with the background values. Moreover, except for Cd, contents of seven other elements in most soil samples were below the Class II criteria for Chinese environmental quality standards, which established the maximum allowable concentration of heavy metal in the farmland. Therefore, the soils were believed to be polluted mainly by Cd. All of the elements showed a similar spatial distribution pattern with low contents in the east upland area, and high contents in the middle by the west area, located close to Dongting lake. The long-term practice of using the Xiangjiang river as irrigation water was believed to be the main reason resulting in the enrichment of heavy metals in soils around Dongting lake. In addition, the evaluation results showed that about 45.8, 51.1 and 3.1?% of the study area were classified as slightly, moderately and seriously polluted with Cd, respectively. As for the other seven elements, soil environmental quality was fairly well because of their grades belonging to clean or excellent. By integration of the assessment results for individual elements, it was found that about 3.8?% of the study area was clean, 82.2?% was slightly polluted and 14.1?% was moderately polluted. On the whole, most of the study area was at safe and guarded level. However, appropriate measures still should be adopted to control the levels of heavy metals in agricultural soils. The findings obtained in this study were useful for establishing policies for protecting the local soil environments and guaranteeing the food quality as well as the people??s health.  相似文献   

17.
In the present study we examined the Ba, Cd, Cr, Cu, Fe, Mn, Ni, Pb and Zn contamination levels of the soils of Berehove, a small city in West-Ukraine. As a first step we determined the spatial distribution of the heavy metal contents of the urban soils; then, by studying the land use structure of the city and by statistical analysis we identified the major sources of contamination; we established a matrix of correlations between the heavy metal contents of the soils and the different types of land use; and finally, we drew a conclusion regarding the possible origin(s) of these heavy metals. By means of multivariate statistical analysis we established that of the investigated metals, Ba, Cd, Cu, Pb and Zn accumulated in the city’s soils primarily as a result of anthropogenic activity. In the most polluted urban areas (i.e. in the industrial zones and along the roads and highways with heavy traffic), in the case of several metals (Ba, Cd, Cu, Pb, Zn) we measured concentration levels even two or three times higher than the threshold limit values. Furthermore, Cr, Fe and Ni are primarily of lithogenic origin; therefore, the soil concentrations of these heavy metals depend mainly on the chemical composition of the soil-forming rocks.  相似文献   

18.
This study analyzed the concentrations and chemical forms of Zn,Cu,Pb,Sb,Cd and Mn in airborne particles,road dusts and soils collected along three expressways in Jiangxi Province,China,with different traffic densities,and identified the levels and sources of heavy metal contamination.The concentrations of Zn,Cu,Pb,Sb,and Cd except Mn in airborne particles,road dusts and soils were all in direct proportion to traffic volume.Cd concentrations were low compared with other metals.For instance,the concentrations of Zn,Cu,Pb,Sb,Mn and Cd were 6.6,0.7,2.2,0.1,0.1 and 0.1μg·m-3in PM10along the Changjiu Expressway,792.8,241.4,248.3,9.6,340.5and 8.0 mg·kg-1in road dusts,and 201.1,143.2,59.5,9.5,338.9 and 2.3 mg·kg-1in soils,respectively,but in the case of the ratio of concentration to the environmental background value,most serious contamination was caused by Cd.The sources of the heavy metals were judged by comparisons of the chemical forms of the heavy metals in different environmental media.Pb and Mn in airborne particles were both derived from traffic;Pb in road dusts and soils resulted mainly from the use of leaded gasoline in the past;and Mn in road dusts and soils was derived from parent rocks.Zn,Cu,Sb and Cd in airborne particles,road dusts and soils were derived primarily from traffic,and differences in chemical forms of the heavy metals in different media were due to the interaction between heavy metals in airborne particles and organic matter and other surfaces in road dusts and soils.We also discussed the change of chemical forms of heavy metals in particles of different sizes and under different weather conditions.Bioavailability of heavy metals in airborne particles was much higher than that in road dusts and soils,especially Pb(0.676 in airborne particles,0.159 in road dusts and 0.095 in soils).  相似文献   

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