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1.
西安市兴庆宫公园土壤中重金属含量研究及污染评价   总被引:1,自引:0,他引:1  
通过对西安市兴庆宫公园表层土壤的取样调查,分析了Cu、Zn、Cd、Cr及Pb等5种重金属的含量及形态分布特征,并对其综合污染状况及潜在生态风险进行分析与评价。结果显示,兴庆宫公园的表层土壤呈碱性,并含有较多有机质;土壤中Cu、Zn、Cd、Cr及Pb平均含量分别为29.89mg/kg、55.28mg/kg、0.169mg/kg、66.71mg/kg和43.59ms/kg;土壤中Cu、Zn、Cd、Cr及Pb化学形态均以残渣态为主;整个公园土壤内梅罗污染指数为2.29,土壤重金属综合污染已经达到中度污染;整个公园潜在生态风险指数平均值为73.89,生态风险等级为轻微。  相似文献   

2.
上海城市公园灰尘重金属污染及其潜在生态风险评价   总被引:17,自引:0,他引:17  
通过对上海城市公园灰尘重金属含量的调查,发现上海城市公园灰尘重金属Pb、Zn、Cu、Cr、Cd和Ni含量的平均值分别为416.63 mg/kg、906.29 mg/kg2、35.89 mg/kg1、62.59 mg/kg1、.58 mg/kg和92.19 mg/kg,同上海市土壤环境背景值相比,均处于较高的积累水平。公园灰尘重金属空间上的分布特征表现为:内外环线之间公园灰尘各重金属元素含量平均值均高于内环线内公园;通过分析判定公园灰尘中较高的重金属含量可能主要源于交通和工业造成的污染。运用潜在生态危害指数法来评价上海城市公园灰尘重金属污染状况,发现单种重金属造成的潜在生态危害表现为:Cd>Pb>Cu>Ni>Zn>Cr;公园灰尘6种重金属潜在生态危害达到一个相当高的水平,在所调查的公园中,63.6%的公园灰尘重金属生态危害达到极高水平,29.5%的公园达到高水平,6.8%的公园处于较高水平。  相似文献   

3.
四川凉山州9种野生蘑菇的重金属含量   总被引:6,自引:0,他引:6  
报道了采集于四川凉山州9种野生蘑菇及相关土壤的重金属Cd、Pb、Zn、Hg和As的含量.结果表明,供试土壤均未检出Hg,3个采集地除会理林家山土壤样品有Cd的检出,另外两个样地土壤未检出Cd.土壤中Pb、Zn和As在干土中的含量分别为52.806 4~274.731 0 mg/kg、18.747 5~164.585 8 mg/kg和3.970 9~10.749 9 mg/kg.野生蘑菇对Cd和Hg具有很强的积累能力,在土壤中没有Cd和Hg检出的情况下,蘑菇中均测出了Cd和Hg,Cd含量高达28.383 6 mg/kg出现在梭孢环柄菇(Lepita ventriosospora),Hg含量最高为0.860 7 mg/kg出现在大白菇(Russula deli-ca).在土壤受Pb污染的情况下,大白菇子实体积累Pb的能力最强,含量为115.929 0 mg/kg.本次蘑菇样品Zn的含量不高.蘑菇对As的积累与土壤中As含量高低有关,最高含量为喇叭陀螺菌(Gomphus floccosus),为4.003 5 mg/kg.表明蘑菇对重金属的积累具有种特异性,与环境土壤重金属含量有关.基于蘑菇对重金属的强积累能力,可考虑作为净化重金属污染环境的特种生物.图1表2参11  相似文献   

4.
天津公园土壤重金属污染评价及其空间分析   总被引:3,自引:0,他引:3  
随着城市化和工业化进程的加快,我国城市及其周边目前已遭受到明显的重金属污染,本文着重研究了天津17个主要公园土壤重金属的污染特征。2007年10月采集公园土壤样品,利用ICP-MS分析土壤重金属的含量。研究结果表明:Cu、Zn、Ni、Cr、Cd和Pb的平均质量分数分别为36.57mg·kg-1,116.56mg·kg-1,30.15mg·kg-1,51.04mg·kg-1,0.25mg·kg-1和31.62mg·kg-1。以天津市土壤背景值为评价标准,天津公园土壤重金属污染属于中度污染和轻微生态风险。重金属主要污染因子为Cd,其次是Pb、Zn和Cu。天津中环线以内区域公园土壤重金属污染较中外环线之间相比较重。不同行政区划区域公园土壤重金属污染从综合污染指数来看,由重到轻的顺序为:红桥区〉河北区〉河东区〉南开区〉河西区〉和平区〉北辰区;从潜在生态指数评价来看,由重到轻的顺序为:红桥区〉河北区〉河东区〉南开区〉河西区〉北辰区〉和平区。  相似文献   

5.
大邑铅锌矿区土壤和蔬菜重金属污染现状及评价   总被引:1,自引:0,他引:1  
研究了四川省大邑县铅锌矿区附近土壤和蔬菜中Pb、Zn、Cr和Cd含量,采用单因子污染指数法和综合污染指数法评价铅锌矿区附近土壤重金属污染状况。结果表明,铅锌矿矿口以及选矿厂周边土壤重金属富集因子均超过1,距选矿厂距离≤20 m的3个土壤样点Pb、Zn和Cd的单因子污染指数和综合污染指数较高,土壤污染程度为重污染,选矿厂周边土壤重金属污染在水平层次的空间分布上表现出异质性。选矿厂周边蔬菜地下部分重金属含量普遍高于地上部分,不同重金属在蔬菜可食用部分的转移因子总体由大到小依次为Cd、Zn、Pb和Cr。选矿厂周边蔬菜地土壤与蔬菜中Pb、Zn、Cd和Cr含量之间无显著相关性,但土壤中Pb、Zn和Cd含量3者之间在α=0.01水平上显著相关。  相似文献   

6.
为评价衡阳市大气中6种重金属的潜在生态危害程度,通过对大灰藓植物体和土壤中的重金属含量分析,可知,15个样点当中植物体内Zn含量为149.427 mg/kg~381.552 mg/kg,Pb含量为68.842 mg/kg~124.738 mg/kg,Cr含量16.303 mg/kg~38.717 mg/kg,Cu含量为15.462 mg/kg~37.467 mg/kg,Cd含量为0.975 mg/kg~2.495 mg/kg,Hg含量范围在0.192 mg/kg~0.443 mg/kg.土壤中Zn含量为85.683 mg/kg~245.165 mg/kg,Pb含量范围为38.030 mg/kg~71.938 mg/kg,Cr含量为28.987 mg/kg~64.442 mg/kg,Cu含量为18.448 mg/kg~42.983 mg/kg,Cd含量为0.212 mg/kg~0.553 mg/kg,Hg含量为0.268 mg/kg~0.640 mg/kg.相关性分析表明大灰藓植物体和土壤重金属之间Pearson相关性系数都未达到显著性差异.6种重金属的环境风险指数都为轻微生态危害,衡阳市大气重金属的潜在生态危害程度为中等生态危害.  相似文献   

7.
徐州市城区公园绿地土壤重金属污染及其评价   总被引:1,自引:0,他引:1  
通过对徐州市泉山、云龙、鼓楼、九里4个城区的公园绿地土壤进行系统采样测定,对其土壤重金属富集与污染状况进行分析与评价。结果表明,该城区表层土壤中5种重金属(Cd、Cu、Zn、Pb、Cr)含量均高于中国土壤元素背景值,其中Cd单因子富集指数为30.00,污染指数为14.56,富集程度较高,污染较严重;Cu、Zn、Pb、Cr单因子富集指数和污染指数均接近1,富集程度较低,无污染或轻度污染。  相似文献   

8.
芜湖市区土壤重金属污染评价及来源分析   总被引:5,自引:0,他引:5  
对芜湖市区153个土壤样品中9种重金属的含量进行测定和评价,利用多元地统计方法进行污染来源分析。结果表明:芜湖市区土壤Zn、Fe、Mn、Cu、Pb、Co、Cd、Ni、Cr的平均含量分别为96.8、30600.1、466.1、35.0、29.1、16.7、1.2、26.3、78.3mg/kg;除Fe、Mn、Ni外,其他元素均高于相应土壤背景值,Zn、Cu、Pb、Co、Cd、Cr分别是背景值的1.26、1.09、1.17、1.20、6.11、1.29倍,说明这些元素出现了一定程度的积累。单因子评价结果表明Cd污染最为严重,Zn、Cu、Pb、Co和Cr为轻度污染,Fe、Mn和Ni没有污染。综合相关性、聚类及主成分分析可知,Fe和Mn为"自然源因子",不同功能区分布主要受成土母质控制;Zn、Cu、Pb和Cd为"交通及工业活动因子",Cu、Cd高值区均分布在开发区,Zn和Pb的高值区分布在镜湖区;Ni、Co和Cr为"农业活动因子",其空间变异受成土母质及农业活动等因素影响。  相似文献   

9.
包头市南海湿地土壤重金属污染评价及来源解析   总被引:2,自引:0,他引:2  
包头市南海湿地位于中国西北地区的高纬度寒旱区,具有独特的河流湿地生态系统。以南海湿地土壤为研究对象,对湿地28个点位表层土壤(0~20 cm)中As、Cd、Cr、Cu、Ni、Mn、Pb、Zn 8种重金属进行检测分析,采用环境质量指数与Hakanson环境生态潜在风险指数相结合的方法,探讨土壤中8种重金属的累积污染现状及潜在生态风险,利用相关性分析、主成分分析和聚类分析区分了南海湿地重金属的来源,以期为南海湿地土壤环境保护提供理论依据。结果表明,As、Cd、Cr、Cu、Ni、Mn、Pb和Zn重金属平均值分别为75.18、1.27、56.98、111.18、87.67、622.71、54.10和209.33 mg·kg~(-1)。以包头市南海公园树木林土壤重金属含量为评价基准,南海湿地土壤重金属普遍超标,研究区域所有样方中As、Cd、Cu、Mn和Pb均超标,Cr有64.29%的样点超标,Ni有96.43%的样点超标,Zn有89.29%的样点超标。单因子污染指数表明,Cd处于中度污染;As、Cu、Pb和Zn处于轻度污染;Cr、Ni和Mn处于轻微污染。农田区和景观大道两侧处于重污染水平,鱼塘区和湿地植物区处于中污染水平。潜在生态风险指数表明,Cd处于强风险等级;As、Cr、Cu、Ni、Mn、Pb、Zn处于低风险等级。;研究区整体上都属于中等风险等级。来源解析表明:As、Cd、Cu、Ni、Mn的来源受到周边工业活动和农业活动的影响;Pb和Zn的来源与道路交通有关,Pb还受到工业活动的影响;Cr来源与土壤母质和农业活动有关。  相似文献   

10.
为明晰农田黑土重金属含量状况以及污染来源,选择黑土区连续多年种植玉米的榆树市为研究区,原位采集196个土壤样品,采用火焰-石墨炉原子吸收分光光度计对土壤中5种重金属含量进行分析测定,并采用相关分析和主成分分析法进行污染来源解析。结果表明,土壤中Cd、Cr、Cu、Zn、Pb质量分数平均值分别为(0.119±0.08)、(56.51±9.10)、(19.21±3.42)、(70.58±14.57)和(34.42±7.85)mg·kg-1;土壤中Cd、Cr、Cu、Zn、Pb含量超过相应的黑土背景值的点位百分比分别为69.9%、36.7%、26.5%、82.1%、84.2%;土壤中Cd和Zn含量超过相应的土壤环境质量二级标准的点位百分比分别为6.6%和0.5%;与成土母质相对比,富集系数为:Pb(1.56)Cr(1.29)Zn(1.24)Cd(1.20)Cu(1.16);与中国第二次土壤普查数据对比,土壤Pb、Cd、Zn平均含量分别增加48.1%、8.2%、5.1%;土壤Cr和Cu含量变化较小。相关分析表明,土壤Cu和Cr含量呈极显著正相关(r~2=0.369,P0.01),土壤Pb和Zn含量呈极显著正相关(r~2=0.333,P0.01),表明土壤Cu和Cr可能有相同的污染来源,Pb和Zn污染来源相似。主成分分析表明,3个主成分(PC)可解释总方差的79.13%。PC1解释总方差的29.33%,主要包括Zn和Pb,土壤中Pb和Zn污染主要来源于燃煤、大气干湿沉降物和化肥施加;PC2解释总方差的26.81%,包括Cr和Cu,土壤中Cr和Cu主要受成土母质控制;PC3解释总方差的23.00%,包括Cd,而土壤Cd富集可能来源于磷肥。总体而言,榆树市玉米种植区黑土重金属污染较轻,但Cd有超标现象,应引起重视。  相似文献   

11.
Heavy metal pollution caused by traffic activities is increasingly becoming a great threat to urban environmental quality and human health. In this paper, soils of Kerman urban and suburban areas were collected to assess the potential effects of traffic and other vehicle-related pollution by heavy metal accumulation in soils. Eighty-six samples were collected along streets and from residential and rural sectors, as well as vehicle-related workshops from depth of 0–5 and 15–20 cm and analyzed by flame atomic absorption spectrometry (FAAS) for heavy metals (Cd, Cr, Cu, Pb, Sn and Zn), as well as major elements (Al, Ca, Fe and Mn). Several hot-spot areas were identified in the composite geochemical maps produced based on Geographical Information System (GIS) technology. The majority of the hot-spot areas were identified to be vehicle-related workshops, fuel stations and road junctions. The most polluted hot-spot in the study area was located in soils close to a car battery processing workshop in the southwestern part of Kerman city, with concentrations of Cd (0.32 mg/kg), Cr (169 mg/kg), Cu (250 mg/kg), Pb (5,780 mg/kg), Sn (27.2 mg/kg) and Zn (178 mg/kg) of 1, 8.5, 8.3, 230, 13.5 and 3 times more than the relevant mean concentrations in natural soils, respectively. Traffic pollution has resulted in significant accumulation of heavy metals in soils and sediments, and that level of accumulation varied remarkably among elements. Based on X-ray diffraction analysis, most parts of soils and sediments of the Kerman basement consist of calcite and clay minerals. Abundance of clay minerals and medium to alkaline pH causes low mobility of heavy metals in soils of Kerman.  相似文献   

12.
The study assessed the levels of some heavy metals in soils in the vicinity of a municipal solid waste dumpsite with a view to providing information on the extent of contamination, ecological risk of metals in the soils and human health risk to the residents in Uyo. Soil samples were collected in rainy and dry seasons and analyzed for metals (Pb, Cd, Zn, Mn, Cr, Ni and Fe) using atomic absorption spectrometry. The concentrations of heavy metals (mg/kg) at the dumpsite in rainy season were Pb (9.90), Zn (137), Ni (12.56), Cr (3.60), Cd (9.05) and Mn (94.00), while in dry season, the concentrations were Pb (11.80), Zn (146), Ni (11.82), Cr (4.05), Cd (12.20) and Mn (91.20). The concentrations of metals in the studied sites were higher than that of the control site (P < 0.05). Pollution indices studies revealed that soil samples from dumpsite and distances from 10 and 20 m east of the dumpsite were highly polluted with cadmium. Ecological risk assessment carried out showed that cadmium contributed 98–99 % of the total potentially ecological risk. No probable health risk was observed as the total hazard index of all the metals was less than one. However, children were found to be more susceptible to heavy metal contamination than adult.  相似文献   

13.
This study presents the current state of heavy metal contents in both urban and forest soils within the city area of Vienna, Austria. Based on a systematic survey of urban soils and on targeted sampling in forest areas, local and regional anomaly thresholds are derived using statistical methods and considering regional distribution patterns. For urban soils, local anomaly thresholds of elements Cu (60?mg/kg), Hg (0.5?mg/kg), Pb (100?mg/kg) and Zn (200?mg/kg) exceed national guideline values for uncontaminated urban soils and according to Austrian legislation fall into the category “anthropogenic contamination present but no damage to plants, animals or humans detectable”. In forest soils within the city, thresholds are very similar to reference values for similar geological settings outside the city, apart from higher concentrations of elements Cr and Ni (threshold values of 107 and 64?mg/kg, respectively). Grouping urban soils according to land use reveals that Cd contents are 25?% higher, Pb contents 36?% higher, in traffic and industrial areas than in parks and like Cu, Hg and Zn, these elements can be shown to be at least partly caused by anthropogenic contamination. A dependency between heavy metal concentrations in soils and underlying geological units is shown within the flysch zone at the western city margin where the contents of elements Co, Cr, Cu, Ni and V are controlled by geology and reveal distinct differences between geological units. In built-up areas, no clear dependency between heavy metal contents in soils and geology is evident as urban soils represent accumulations by anthropogenic activity rather than in situ weathering products of underlying sediments.  相似文献   

14.
胶园土壤微量元素含量有一定的特征。海南省胶园土个别样点Cd偏高,Cu偏低,其它样点Cd、Cr、Ph、Zn、Cu、Ni、Mo、Hg含量正常。土壤母质、质地、化学组成、耕作等对微量元素含量有一定影响。玄武岩上的胶园土微量元素较丰富。质地粘重的土壤微量元素含量往往较高。由于铁的水合物吸附固定作用,Cu、Zu、Cd、Hg含量与Fe含量有一定关系。Cu、Zn、Cd、Hg的许多化学性质相似,它们的含量有一定的相关性。  相似文献   

15.
This paper studied the relationship between heavy metal concentrations of herbaceous plants and soils at four Pb-Zn mining sites in Yunnan, China. 50 herbaceous plant samples of 9 plant species from 4 families and 50 soil samples were collected and then ana1yzed for the tota1 concentrations of Pb, Cd, and Zn. The results showed that the average concentrations of Pb, Cd, and Zn in soil samples were 3772.83, 168.81, and 5385.65 mg/kg, respectively. The average concentrations of Pb, Cd, and Zn were 395.68, 28.14, and 1664.20 mg/kg in the shoots, and 924.12, 57.25, and 1778.75 mg/kg in the roots, respectively. Heterospecific plants at the same site and conspecific plants at various sites had different average levels of Pb, Cd, and Zn, both in the shoots and the roots. Enrichment coefficients of Pb, Cd, and Zn were greater than 1 in 2, 3, and 9 herbaceous plant samples, respectively. Translocation factors of Pb, Cd, and Zn were greater than 1 in 10, 17, and 25 herbaceous plant samples, respectively. In all 50 samples, the concentrations of Pb, Cd, and Zn between the shoots and the roots, the shoots, and the soils, and the roots and the soils had significant positive relationships.  相似文献   

16.

Paddy soil contamination is directly linked to human dietary exposure to toxic chemicals via crop consumption. In Korea, rice paddy fields are often located around industrial complexes, a major anthropogenic source of metals. In this study, rice paddy soils were collected from 50 sites in three industrial cities to investigate the contamination characteristics and ecological risk of metals in the soils. The cities studied and their major industries are as follows: Ulsan (petrochemical, nonferrous, automobile, and shipbuilding), Pohang (iron and steel), and Gwangyang (iron and steel, nonmetallic, and petrochemical). Thirteen metals (Al, As, Ba, Cd, Co, Cr, Cu, Fe, Mn, Ni, Pb, V, and Zn) were analyzed using inductively coupled plasma–optical emission spectrometry (ICP–OES). The mean concentration of Cd (1.98 mg/kg) exceeded the soil quality guideline of Canada (1.4 mg/kg), whereas concentrations of other metals were under the standards of both Korea and Canada. Generally, levels of metal concentrations decreased with increasing distance from industrial complexes. Among the three cities, Pohang showed high concentrations of Zn (142.2 mg/kg), and Ulsan and Gwangyang showed high concentrations of Cr (33.9 mg/kg) and Ba (126.4 mg/kg), respectively. These contamination patterns were influenced by the different major industries of each city, which was clearly demonstrated by the principal component analysis results. Pollution indices suggested that As, Cd, Pb, and Zn were enriched in the paddy soils via anthropogenic activities. Comprehensive potential ecological risk indices were at considerable levels for most sites, especially because of major contributions from As and Cd, which can pose potential ecological threats.

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17.
南京城市土壤重金属含量及空间分布特征   总被引:13,自引:0,他引:13  
研究了南京城市土壤重金属含量、来源及空间分布特征。结果表明,南京城市土壤中V、Mn、Co、Ni、Cr污染不明显,但受到了不同程度的Cu、Pb、Zn、Sb、Hg、Cd污染,其中Hg污染比较严重。V、Mn、Co、Ni、Cr含量之间均呈极显著正相父;Cu、Pb、Zn、Sb、Hg、Cd含量之间也均呈极显著正相关。南京城市土壤V、Mn、Co、Ni、Cr主要继承了原土物质;Hg、Cd、Pb主要来源于城市燃煤、机动车尾气及工厂排放粉尘;Sb主要来源于机动车尾气和工厂排放粉尘。南京城市土壤Hg、Cd、Pb、Sb含量空间分布规律非常相似,均表现为外围向市中心有逐渐增加的趋势,并且在新街口—鼓楼、梅山硫铁矿形成异常高值的岛状、环状区域。  相似文献   

18.
Since analysis of both soil and plants are useful to assess contamination of a geographic area, concentrations of five representative metals: copper (Cu), zinc (Zn), cadmium (Cd), lead (Pb), and iron (Fe) in soil and associated plants were measured by atomic absorption spectroscopy. Samples were collected from four different Egyptian regions (El-mehala El-kobra, Kafr El-Sheikh, Kafr El-zayat, and Al-fayoum) during spring and summer 2010. Concentrations of the selected metals in agricultural soils were significantly different among locations and seasons. Concentrations of Cd and Fe in soils at the four locations exceeded the maximum allowable concentrations for Cd (8 mg/kg, dry mass (dm)) and Fe (1000 mg/kg, dm). Accumulation was different for clover and cotton. Clover blossoms grown in soil from Kafr El-zayat contained the greatest concentrations of Cu, Zn, Pb, and Fe. Cotton flowers from El-mehala El-kobra accumulated the highest levels of Cd. Concentrations of Cd and Pb in both clover and cotton flowers from the four locations exceeded maximum allowable concentrations (3 mg/kg, dm) for both Cd and Pb. Using such agricultural soils for cultivation of edible crops for consumption may result in chronic hazards to human health.  相似文献   

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