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1.
珠穆朗玛峰地区雪冰中重金属浓度与季节变化   总被引:4,自引:0,他引:4  
对2005 年9 月采自珠穆朗玛峰北坡海拔6523 m 的东绒布冰川积累区一批雪坑样品中重金属Ba, Co, Cu, Zn 和Pb 的浓度利用电感耦合等离子体质谱仪进行了测试, 重金属浓度范围分别为(pg/ml); Ba2~227、Co2.8~15.7、Cu 10~120、Zn29~4948、Pb14~142。并利用气体稳 定同位素质谱仪MAT-252 对样品稳定氧同位素比率(δ18O) 进行了测试, 雪坑样品对应的时间为2004 年夏到2005 年秋, δ18O和重金属元素的浓度都存在着季节变化特征。在夏季风期间δ18O 值和重金属元素的浓度都很低,而在非夏季风期间δ18O值和重金属元素浓度升高,反映了不同的水汽来源对重金属浓度季节变化的影响及其环境意义。Co, Cu, Pb, Zn 的地壳富集系数(EFc) 分别为: 3.6、27、33、180, 表明该地区Pb, Cu, Zn 已经受到了人类活动的污染, 其中Zn 受到的污染最大。  相似文献   

2.
珠穆朗玛峰地区雪冰中重金属浓度与季节变化   总被引:2,自引:0,他引:2  
The concentrations of heavy metals Ba, Pb, Cu, Zn and Co in snow pit collected in September, 2005 from the accumulation area of the East Rongbuk Glacier (6523 m a.s.l.), which lies on the northern slope of Mt. Qomolangma, were determined by inductively coupled plasma mass spectrometry (ICP-MS). Concentrations (pg/ml) of heavy metals are Ba2-227, Co2.8-15.7, Cu10-120, Zn29-4948 and Pb14-142, respectively. The δ18O was determined by MAT-252. The time period of the snow pit spans from autumn 2005 to summer 2004. Seasonal variations of the concentrations and δ18O are observed, of which Pb, Cu, Zn and Co are much lower in summer monsoon season than that in non summer monsoon season, suggesting that different sources of heavy metals contributed to the site. EFc (crustal enrichment factors) is Co3.6, Cu27, Pb33 and Zn180, respectively. Higher EFc values of Pb, Cu and Zn suggest that Pb, Cu especially Zn are mainly contributed by anthropogenic sources. Foundation: National Natural Science Foundation of China, No.40501014; No.40871058 Author: Duan Jianping (1981–), Ph.D. Candidate, specialized in climate and environmental change.  相似文献   

3.
In order to understand the potential influence of pollution from human activity on the natural cycle of trace elements in the atmosphere over the eastern Kunlun mountains, north-eastern part of the Qinghai-Tibetan Plateau, concentrations of Al, Fe, Ba, Cd, Co, Cr, Cu, Li, Ni, Zn, Pb, Sb, Sr, U and V in a 75 cm-deep snow pit recovered from 5,800 m a.s.l. of the Yuzhu Peak Glacier on October 25, 2009, were determined by a sector field inductively coupled plasma mass spectrometry. The results indicate that concentrations of the measured trace elements vary by orders of magnitude from one element to another ranging from the minimum value 1.2 pg/g (U) to the maximum value 293 ng/g (Fe); the value of Max/Min ranges from 7 pg/g (Sd) to 358 pg/g (Li). EFc values of measured trace elements show that there are other important sources except dust for Cd, Sb, Zn, Pb and Cu. Comparison of the concentrations of the measured trace elements with those in other areas in the Tibetan Plateau indicates that trace element concentrations for Yuzhu Peak are lower than those in east Tianshan and Muztagh Ata (Pamirs). Concentrations of some trace elements are also lower than those in East Rongbuk Glacier. However, concentrations of all measured trace elements are extensively higher than those in Greenland and the Antarctic.  相似文献   

4.
日照市土壤重金属来源解析及环境风险评价   总被引:66,自引:3,他引:63  
选择日照市的东港区和岚山区为研究区,采集了445个0~20 cm表层土壤样品,并测定了10种重金属元素的含量;采用多元统计和地统计分析,揭示了研究区土壤重金属污染的主要来源以及与土地利用、成土母质之间的关系,绘制了重金属的环境风险概率的空间分布图.结果表明:①As、Co、Cr和Cu的平均值低于山东省东部地区土壤背景值,Cd、Hg、Mn、Ni、Pb和Zn的平均值高于背景值,尤其是Cd、Hg的含量分别为背景值的1.85和1.38倍,土壤中重金属累积较为明显.②10种元素可被辩识出4个主成分(PCs),PC1 (Co、Cr、Mn、Ni和Zn)和PC3 (As、Cu)为自然源因子,PC2 (Cd、Pb)为工农业及交通源因子,PC4(Hg)为工业源因子;其中Pb、Zn在PC1和PC3上均有较大载荷,受地质背景和人类活动的共同控制.③Cd、Hg含量在不同的覆被类型有显著差异,在城镇建设用地的含量最高;Co、Cr、Cu、Mn和Ni在花岗岩和变质岩母质的含量高,与冲积与海积物母质有较大差异.④来自于同一主成分的元素及元素组合的环境风险空间格局与相应主成分插值结果基本一致,所有重金属综合环境风险的高值区在西部和东部呈点状分布,主要是由西部的高地质背景和东部的强烈人为干扰的综合作用造成的.  相似文献   

5.
山东省广饶县土壤重金属来源、分布及生态风险   总被引:2,自引:0,他引:2  
周旭  吕建树 《地理研究》2019,38(2):414-426
选取山东省广饶县作为研究区,采集300个表层土壤样品(0~20 cm),测定As、Cd、Co、Cr、Cu、Hg、Mn、Ni、Pb和Zn等10种重金属含量;运用多元统计和地统计分析方法揭示广饶县土壤重金属元素的来源与空间分布特征,最后利用H?kanson潜在生态风险指数法评价重金属的潜在生态风险。结果表明:① 研究区土壤中Co和Pb的平均值低于山东省背景值,其他8种元素的平均值均超过山东省背景值;特别是Cd和Hg的平均含量分别达到山东省背景值的1.86倍和2.50倍,说明在土壤中存在明显的富集。② As、Co、Cr、Cu、Mn、Ni和Zn为自然源,受成土母质控制;Hg为人为源,主要来源于煤炭燃烧和工业排放;Cd和Pb受自然和人为因素共同控制。③ 成土母质控制着As、Cd、 Co、Cr、Cu、Mn、Ni、Pb和Zn的基本分布格局,不同土地利用类型的土壤Hg含量差别较明显,其高值区集中在城镇建设用地。④ 总体上,研究区为中等生态风险的偏高水平,其中Cd和Hg分别为中等和较高生态风险,其余8种元素处于低生态风险。  相似文献   

6.
东莞市农田土壤和蔬菜重金属的含量特征分析   总被引:28,自引:1,他引:27  
从东莞市采集118 个农田土壤样品和43 个蔬菜样品, 测试其中Cu、Zn、Ni、Cr、Pb、 Cd、As 和Hg 等8 种重金属元素的含量, 并结合GIS 制图和数据统计, 对农田土壤中重金属 的空间分布和来源、土壤和蔬菜中重金属的富集特征及其潜在风险进行了分析。结果表明, 农田土壤中Cu、Zn、Ni、Pb、Cd 和Hg 等元素含量均高于相应元素的广东省土壤背景值, 其中, Pb (65.38 mg kg-1) 和Hg (0.24 mg kg-1) 含量分别为其对应背景值的1.82 和2.82 倍。与我国《土壤环境质量标准》中II 级标准(pH < 6.5) 相比, 土壤中Cu、Ni、Cd 和Hg 含量样本超标率分别为3.4%、5.9%、1.7%和28%, 表现为以Hg 为主的多种重金属共同污染。土壤 中8 种重金属中Cu、Zn、Ni、Cr 和As 等元素主要来源于成土母质, Pb、Hg 和Cd 等元素主要与人类活动有关。空间分布上, Cu、Zn、Ni、Cr、Pb、As 和Hg 等7 种重金属含量呈现出西部高、东部低的特点, Cd 含量在西北部和东南部较高, 西南部较低。与《食品中污染物限量》(GB2762-2005) 等相关标准比较, 蔬菜中Ni、Pb 和As 含量的样本超标率分别为4.7%、16.3%和48.8%。蔬菜中重金属富集系数的顺序为: Cd > Zn > Cu > As > Ni > Hg > Cr > Pb。  相似文献   

7.
兰州市沙尘和非沙尘天气沉降物的化学特性比较   总被引:5,自引:3,他引:2  
选择兰州市典型沙尘和非沙尘天气收集两类降尘,并对其元素组成进行测定。结果表明:兰州非沙尘和沙尘天气沉降物中含量较高的主要元素分别为Si、Ca、Al、Fe和Si、K、Ca、Al,含量最低的主要元素均是Ti;含量较高的微量元素是Mn、Ba、Zn、Sr和Mn、Ba、Sr、Zr,含量较低的微量元素均是Nb、Co、Y、As;兰州非沙尘和沙尘天气沉降物中主要元素及微量元素含量的排序差异较小,但是两种样品同种元素的丰度值存在较大变异,说明两种沉降物的来源有一定的差异。兰州非沙尘天气沉降物中Si、Fe、Mg、K、Na、Ti、V、Mn、Co、Ni、Rb、Sr、Y、Zr、Nb等元素主要来自于地壳源,Ca、Cr、Cu、Ba、Pb、Zn、As等元素与本地的人类污染活动有关,其中Pb、Zn、As是兰州重要的污染元素。沙尘天气沉降物中多数元素来自于外地入侵的沙尘,部分元素如Pb、Zn、As、Cu、Cr、K、Ni可能源于沙尘天气长距离传输途中矿物气溶胶与沿途污染源排放的污染物的混合。  相似文献   

8.
东莞市农田土壤和蔬菜重金属含量分析(英文)   总被引:7,自引:1,他引:6  
A total of 118 of agricultural soil and 43 of vegetable samples were collected from Dongguan City,Guangdong,China. The spatial distribution,sources,accumulation charac-teristics and potential risk of heavy metals in the agricultural soils and vegetables were de-picted in details by three different approaches,including total contents of eight metal ele-ments in soils and vegetables,GIS maps and multivariate analysis of heavy metals in soils in the study. The results show that there are higher accumulation of heavy metals such as Cu,Zn,Ni,Pb,Cd and Hg in agricultural soils,and the contents of Pb (65.38 mg kg-1) and Hg (0.24 mg kg-1) are 1.82 and 2.82 times of the background contents of the corresponding heavy metals in soils of Guangdong Province,respectively. There are about 3.4% of Cu,5.9% of Ni,1.7% of Cd and 28% of Hg in all collected soil samples from all investigated sites which have overran the contents for heavy metals of the China Environmental Quality Standard for Soils (GB15618-1995,Grade Ⅱ ). The pollution characteristics of multi-metals in soils are mainly reflected by Hg. There are different sources to eight metal elements in soils,Cu,Zn,Ni,Cr and As are predominantly derived from parent materials,and Pb,Hg and Cd are affected by anthropogenic activities. The spatial distribution shows that the Cu,Zn,Ni,Cr,Pb,As and Hg contents of agricultural soils are high in the west and low in the east,and Cd contents are high in the northwest,southeast and low in the southwest in Dongguan. The ratios of vegetable samples which Ni,Pb and As concentrations higher than the Maximum Levels of Con-taminants in Foods (GB2762-2005) are 4.7%,16.3% and 48.8%,respectively. The order of bio-concentration factors (BCF) of heavy metals in vegetables is Cd Zn Cu As Ni Hg Cr Pb. It is necessary to focus on potential risk of heavy metals for food safety and hu-man's health from agricultural soils and vegetables in Dongguan City,Guangdong Province.  相似文献   

9.
A total of 118 of agricultural soil and 43 of vegetable samples were collected from Dongguan City, Guangdong, China. The spatial distribution, sources, accumulation characteristics and potential risk of heavy metals in the agricultural soils and vegetables were depicted in details by three different approaches, including total contents of eight metal elements in soils and vegetables, GIS maps and multivariate analysis of heavy metals in soils in the study. The results show that there are higher accumulation of heavy metals such as Cu, Zn, Ni, Pb, Cd and Hg in agricultural soils, and the contents of Pb (65.38 mg kg?1) and Hg (0.24 mg kg?1) are 1.82 and 2.82 times of the background contents of the corresponding heavy metals in soils of Guangdong Province, respectively. There are about 3.4% of Cu, 5.9% of Ni, 1.7% of Cd and 28% of Hg in all collected soil samples from all investigated sites which have overran the contents for heavy metals of the China Environmental Quality Standard for Soils (GB15618-1995, Grade Ⅱ). The pollution characteristics of multi-metals in soils are mainly reflected by Hg. There are different sources to eight metal elements in soils, Cu, Zn, Ni, Cr and As are predominantly derived from parent materials, and Pb, Hg and Cd are affected by anthropogenic activities. The spatial distribution shows that the Cu, Zn, Ni, Cr, Pb, As and Hg contents of agricultural soils are high in the west and low in the east, and Cd contents are high in the northwest, southeast and low in the southwest in Dongguan. The ratios of vegetable samples which Ni, Pb and As concentrations higher than the Maximum Levels of Contaminants in Foods (GB2762-2005) are 4.7%, 16.3% and 48.8%, respectively. The order of bio-concentration factors (BCF) of heavy metals in vegetables is Cd > Zn > Cu > As > Ni > Hg > Cr > Pb. It is necessary to focus on potential risk of heavy metals for food safety and human’s health from agricultural soils and vegetables in Dongguan City, Guangdong Province.  相似文献   

10.
烟台海岸带土壤重金属定量源解析及空间预测   总被引:5,自引:0,他引:5  
吕建树 《地理学报》2021,76(3):713-725
定量解析土壤重金属污染来源并绘制空间分布图是土壤重金属调查评价的核心,可为区域土壤环境管理和修复提供科学参考。以中国北方名优农产品生产基地烟台海岸带为研究区,系统开展表层土壤样品采集和重金属分析测试;利用正定矩阵因子分解定量解析土壤重金属的来源贡献;基于独立成分分析和序贯高斯模拟构建多元地统计模拟技术,实现土壤重金属的空间预测及潜在污染区域划定。结果表明:① 研究区表层土壤中 As、Co、Cr、Mn和Ni主要为自然来源,且空间分布受成土母质的控制;② 工业和交通排放是土壤中Cd、Pb和Zn的重要来源,三者在金、铜矿的尾矿区以及烟台市区呈现出污染热点;③ 土壤中Cu主要来自铜基杀菌剂和有机肥施用等农业活动,高值区主要分布在果园土壤;④ 土壤中Hg主要来源于煤炭燃烧和混汞法炼金所排放Hg的大气沉降,高值区主要分布在金矿以及龙口、蓬莱市区周边;⑤ Cu、Hg和Cd的潜在污染区域面积占研究区总面积的37.5%、14.3%和8.6%,应给予重点关注。  相似文献   

11.
在对新疆艾比湖近代岩芯沉积物元素地球化学特征分析基础上,结合数理统计学方法对元素的来源及其反映的环境演变历史进行了探讨,最后利用Hakanson潜在生态危害指数法对岩芯表层沉积物中重金属的潜在生态危害进行了评估。结果表明:艾比湖岩芯沉积物中元素组成基本可以分为3类:第1类元素包括Fe、Mn、V、Ni、Li、Cr、K、Al、Co、P、Ti、Be、Pb、Cu、Ba和Zn,主要来源于流域陆源碎屑物,受流域侵蚀强度等因素影响,其中,Co、Cr、Cu、Ni、Pb、V、Zn等重金属以及营养元素P的富集系数1875-2011年由于受人类活动影响发生了较为明显的变化;结合重金属和营养元素P的富集系数有序聚类分析,以23 cm(1960年)为界可将艾比湖流域环境演变历史分为差异明显的两个阶段:(Ⅰ)1875-1960年,流域社会发展程度较低,人类活动导致的重金属输入少,流域环境主要受区域自然变化的影响;(Ⅱ)1960年至今,随着人口的增加,经济发展工农业活动增强,尤其是农业用水量增加,大多数重金属元素和P相对于前期有较为明显的增加。第2类元素有Mg和Na,主要来源于湖泊水中蒸发盐类结晶;由于绿洲农业的发展和灌溉用水的增加,在气候变化和人类活动的共同影响下,湖泊水位发生了剧烈的波动,造成Mg、Na等元素的波动变化。第3类元素包括Ca和Sr,受流域易溶元素风化淋溶作用控制。艾比湖沉积物中Co、Cr、Cu、Ni、Pb、V、Zn等7种重金属的潜在生态危害程度Ni(4.7) > Pb(4.6) > Cu(4.2) > Co(2.6) > Cr(1.7)=V(1.7) > Zn(1.1),7种重金属均属于低生态风险。  相似文献   

12.
With rapid economic and social development, soil contamination arising from heavy metals has become a serious problem in many parts of China. We collected a total of 445 samples (0–20 cm) at the nodes of a 2 km×2 km grid in surface soils of Rizhao city, and analyzed sources and risk pattern of 10 heavy metals (As, Cd, Co, Cr, Cu, Hg, Mn, Ni, Pb and Zn). The combination of Multivariate statistics analysis and Geostatistical methods was applied to identify the sources and hazardous risk of heavy metals in soils. The result indicated that Cr, Ni, Co, Mn, Cu, and As were mainly controlled by parent materials and came from natural sources. Cd and Hg originated from anthropogenic sources. Pb and Zn, belonging to different groups in multivariate analysis, were associated with joint effect of parent materials and human inputs. Ordinary Kriging and Indicator Kriging suggested that single element and elements association from the same principal components had similar spatial distribution. Through comprehensive assessment on all elements, we also found the high risk areas were located in the populated urban areas and western study area, which could be attributed to the higher geological background in the western part and strong human interference in the eastern part.  相似文献   

13.
对沅江入湖沉积物进行钻探取样,利用等离子质谱仪(ICP-MS)对沉积物重金属进行分析。结果表明:重金属Ba、Sc、V、Th、U、Cu、Co、Ni、Cr等在沉积物中含量变化相对稳定,分布相对均匀;而Mn、Zn、Pb、Mo、Cd、Tl、Bi等重金属的含量变化大,分布不均匀。重金属含量柱状剖面变化特征及富集系数(EF值)的计算结果显示:沉积物中Cd达显著富集,而Sc、V、Mn、Pb、Bi等为中等富集程度。沉积物中存在3个重金属富集层,即中下部Pb、Tl、Bi富集层;中上部Pb、Cr、Ni、Cu富集层;浅表部V、Cr、Mn、Ni、Cu、Zn、Pb、Cd、Tl、Bi等多种重金属富集层。地累积指数(Igeo)和综合富集指数(EI)评价结果显示:沅江入湖沉积物重金属污染程度自河床深部向浅部,污染程度趋于增强,污染元素组合趋于由Pb-Bi的单一元素组合向由V-Cr-Mn-Ni-Cu-Zn-Pb-Cd-Bi组成的复合元素组合变化。且自上游向下游,沉积物重金属污染程度趋于降低。这种重金属污染空间变化特征与区域人为活动有关,值得进一步研究。  相似文献   

14.
Heavy metal concentrations of Wadi El Natrun saline lakes were investigated. Pb, Zn, Mn, Cu, Cd, Ni, Fe and Al were measured in surficial sediments. The heavy metal concentrations largely indicate the influence of weathering of terrigenous sources on land. In comparison with the average in sedimentary rocks, the concentrations of the heavy metals studied are higher than the global average sandstone. This is also reflected in the high enrichment factors. The heavy metal concentration in lakes II and III decrease in the order Pb > Zn > Cu, while in lake I the decreasing order is Cu > Zn > Pb. Sediments with microbial mats were found to concentrate heavy metals above background sediment values.  相似文献   

15.
西安市二环内表层土壤重金属空间分布特征   总被引:29,自引:3,他引:26  
采集西安市二环内78处表层土壤样品,研究西安二环内城市表层土壤中Co、Cr、Cu、Mn、Ni、Pb、Zn、V的空间分布特征,并采用相关分析、因子分析和聚类分析等多元统计方法探究西安市二环内城市表层土壤中8种重金属元素的来源.结果表明,西安市二环内表层土壤中Co、Cr、Cu、Pb、Zn具有明显的高值带和高值区,而Mn、N...  相似文献   

16.
海南省五指山土壤中的重金属元素含量   总被引:6,自引:0,他引:6  
廖金凤 《山地学报》2003,21(2):169-172
海南省地处热带地区,山地面积占25.4%,五指山是海南山地的核心,也是海南最高峰,从下而上依次分布着砖红壤、赤红壤、黄壤、灌丛草甸土。五指山土壤普遍遍缺,而Zn、Ni、Pb、Cd、Cr、Co含量属正常值。在成土过程中,Cd有一定积累,其他元素有明显淋溶。在自下而上的垂直带谱中,Zn、Co含量呈现递减,Cd则相反,Ni、Pb、Cu、Cr含量呈现波浪式变化。气候因素是影响五指山土壤重金属元素含量及分布的主导因素。  相似文献   

17.
乌鲁木齐城市土壤中重金属含量与影响机制探讨   总被引:6,自引:2,他引:6  
乌鲁木齐城市土壤中Cr、Cu、Pb、Zn含量很高,超出相应土壤背景值1.65-2.84倍,Mn、Fe含量与背景值差别不大。除Mn、Fe以外,其他重金属空间分布差异都很大,Cr、Pb含量较高区域沿西北-东南走向交通干线分布,主要的影响因素可能是交通运输、工业布局和风向;Cu、Zn含量较高区域主要分布在北部,工业布局可能是主要的影响因素;中部商业区内Cu、Pb、Zn含量也较高,交通流量大、人类活动强度大、植被覆盖率低可能是主要影响因素。乌市城市土壤重金属主要有三个来源:工业生产污染源、原土壤母质、交通运输污染源。  相似文献   

18.
湘江中下游农田土壤和蔬菜的重金属污染   总被引:11,自引:0,他引:11  
A total of 219 agricultural soil and 48 vegetable samples were collected from the midstream and downstream of the Xiangjiang River(the Hengyang-Changsha section)in Hunan Province.The accumulation characteristics,spatial distribution and potential risk of heavy metals in the agricultural soils and vegetables were depicted.There are higher accumulations of heavy metals such as As,Cd,Cu,Ni,Pb and Zn in agricultural soils,and the contents of Cd(2.44 mg kg^-1 ),Pb(65.00 mg kg^-1 )and Zn(144.13 mg kg^-1 )are 7.97,3.69 and 1.63 times the corresponding background contents in soils of Hunan Province,respectively. 13.2%of As,68.5%of Cd,2.7%of Cu,2.7%of Ni,8.7%of Pb and 15.1%of Zn in soil samples from the investigated sites exceeded the maximum allowable heavy metal contents in the China Environmental Quality Standard for Soils(GB15618-1995,Grade Ⅱ).The pollution characteristics of multi-metals in soils are mainly due to Cd.The contents of As,Cd,Cu,Pb and Zn in vegetable soils are significantly higher than the contents in paddy soils.95.8%, 68.8%,10.4%and 95.8%of vegetable samples exceeded the Maximum Levels of Contaminants in Foods(GB2762-2005)for As,Cd,Ni and Pb concentrations,respectively.There are significantly positive correlations between the concentrations of Cd,Pb and Zn in vegetables and the concentrations in the corresponding vegetable soils(p〈0.01).It is very necessary to focus on the potential risk of heavy metals for food safety and human health in agricultural soils and vegetables in the midstream and downstream of the Xiangjiang River,Hunan Province of China.  相似文献   

19.
A total of 219 agricultural soil and 48 vegetable samples were collected from the midstream and downstream of the Xiangjiang River (the Hengyang–Changsha section) in Hunan Province. The accumulation characteristics, spatial distribution and potential risk of heavy metals in the agricultural soils and vegetables were depicted. There are higher accu-mulations of heavy metals such as As, Cd, Cu, Ni, Pb and Zn in agricultural soils, and the contents of Cd (2.44 mg kg-1), Pb (65.00 mg kg-1) and Zn (144.13 mg kg-1) are 7.97, 3.69 and 1.63 times the corresponding background contents in soils of Hunan Province, respectively. 13.2% of As, 68.5% of Cd, 2.7% of Cu, 2.7% of Ni, 8.7% of Pb and 15.1% of Zn in soil sam-ples from the investigated sites exceeded the maximum allowable heavy metal contents in the China Environmental Quality Standard for Soils (GB15618-1995, Grade II). The pollution characteristics of multi-metals in soils are mainly due to Cd. The contents of As, Cd, Cu, Pb and Zn in vegetable soils are significantly higher than the contents in paddy soils. 95.8%, 68.8%, 10.4% and 95.8% of vegetable samples exceeded the Maximum Levels of Contami-nants in Foods (GB2762-2005) for As, Cd, Ni and Pb concentrations, respectively. There are significantly positive correlations between the concentrations of Cd, Pb and Zn in vegetables and the concentrations in the corresponding vegetable soils (p<0.01). It is very necessary to focus on the potential risk of heavy metals for food safety and human health in agricultural soils and vegetables in the midstream and downstream of the Xiangjiang River, Hunan Province of China.  相似文献   

20.
湘江中下游农田土壤和蔬菜的重金属污染   总被引:70,自引:3,他引:67  
从湖南省湘江中下游衡阳-长沙段沿岸采集219 个农田土壤样品和48 个蔬菜样品, 测 试其中As、Cd、Cr、Cu、Ni、Pb、Zn 等7 种重金属元素的含量, 并结合GIS 作图与数据统 计, 对农田土壤中重金属空间分布、土壤和蔬菜中重金属富集特征以及其潜在风险进行分析。 结果表明, 农田土壤中As、Cd、Cu、Ni、Pb 和Zn 含量均大于湖南省相应土壤重金属含量背 景值, Cd (2.44 mg kg-1)、Pb (65.00 mg kg-1)、Zn (144.13 mg kg-1) 含量分别超标7.97、3.69 和 1.63 倍。与我国《土壤环境质量标准》(GB15618-1995) 中II 级标准(pH 6.5~7.5) 比较, 土壤 As、Cd、Cu、Ni、Pb 和Zn 含量的超标率分别为13.2%、68.5%、2.7%、2.7%、8.7%和 15.1%, 表现为以Cd 为主的多种重金属混合污染。菜地土壤中As、Cd、Cu、Pb 和Zn 的含 量( 几何均值) 分别高于水稻土As、Cd、Cu、Pb 和Zn 含量。与《食品中污染物限量》 (GB2762-2005) 等标准比较, 蔬菜As、Cd、Ni、Pb 含量的样本超标率分别为95.8%、68.8%、 10.4%和95.8%; 蔬菜Cd、Pb、Zn 含量与相应土壤的Cd、Pb、Zn 含量存在极显著的相关性 (P < 0.01)。湘江中下游的农田土壤和蔬菜中重金属污染的潜在风险值得关注。  相似文献   

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