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1.
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   

2.
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   

3.
息朝庄 《地质与勘探》2022,58(4):822-835
为研究贵州省惠水县农作物-土壤重金属污染现状,采集农作物-根系土、土壤剖面-成土母岩样品,测定Cd、Hg、As、Pb、Cr、Cu、Ni、Zn和pH的含量,选用富集系数、健康风险评估、单因子污染指数法、地累积指数法对农作物-土壤重金属污染现状进行了评价。研究表明:(1)农作物中水稻、玉米和油菜中以Cd累积为主,其次为Pb、Cr、Hg;金钱橘无重金属超标;农作物富集系数中Cd是Pb、As、Cr的几倍至上百倍;经玉米、油菜、金钱橘摄入重金属的人体健康风险很低;水稻中Cd的THQ大于1,对人体的健康有一定的风险;(2)单因子污染指数研究结果说明根系土以Cd污染为主;Ig揭示根系土中Hg、Cd、Cr超标可能受人类活动影响较大;(3)从土壤剖面-成土母岩系统来看,As、Cd、Cu具有继承性,尤其Cd含量在成土母岩、土壤剖面、根系土、农作物中含量超标,有部分来源于成土母岩高背景值。  相似文献   

4.
河北省阜平县矿产资源丰富,矿产开发会产生大量重金属污染物,近年来大力发展果农业,也会对表层土壤造成一定影响,目前该县表层土壤重金属现状尚不清晰.为评估阜平县农业重点区表层土壤重金属污染特征和对人体健康的影响,本文按照1:5万土地质量调查规范要求,布设标准网格在该县农业重点区采集表层土壤样品647组,采用原子荧光光谱、电...  相似文献   

5.
小秦岭金矿区土壤重金属生物有效性与影响因素   总被引:1,自引:0,他引:1  
张开军  魏迎春  徐友宁 《地质通报》2014,33(8):1182-1187
土壤中重金属生物有效性与影响因素分析是土壤重金属风险管控的关键问题。通过实地调查、现场采样、实验测试、综合分析等方法,分析了研究区100km2内Hg、Pb、Cd、Cr、As、Cu、Zn七种重金属元素的有效态含量特征,研究了这些重金属有效态含量之间、有效态含量与全量、有效态与土壤pH、有机质含量、粒度等基本理化参数之间的相关性,分析了重金属污染来源。结果表明,土壤中Hg、Pb、Cd、Cr、As、Cu、Zn七种重金属有效态的平均含量分别为2.29mg/kg、594mg/kg、2.52mg/kg、6.30mg/kg、2.16mg/kg、48.14mg/kg、50.21mg/kg,其变异系数大小为:HgPbCuZnCdAsCr。Hg的变异系数最大,是由于金矿选矿活动采用混汞法提金排放的尾矿堆(库)分布不均。Hg、Pb、Cd、Cu、Zn有效态量与全量之间均存在显著的相关性;土壤有机质与重金属有效态之间存在显著的相关性;土壤pH与有效态重金属之间存在显著的负相关性;土壤粒度对重金属有效态的累积影响不明显。  相似文献   

6.
成都平原农田区土壤重金属元素环境基准值初步研究   总被引:5,自引:0,他引:5  
土壤重金属污染已成为制约人类社会发展及危害人类健康的重要因素,制定土壤重金属元素的环境基准值对控制土壤重金属污染及保护生态安全具有重要意义。以成都平原农田区为例,以保护地下水安全为目的,以室内模拟淋溶实验为手段,尝试性地计算了研究区不同类型土壤重金属元素的环境基准值。研究结果表明:(1)不同类型土壤各元素在土壤—水间的分配系数差异较大;(2)不同类型土壤Hg和Cd环境基准值差异不大,Hg环境基准值平均为0.3μg/g,Cd的变化范围为0.3~0.5μg/g;As和Pb环境基准值差异较大,As的变化范围为18~24μg/g;Pb的变化范围为24~41μg/g;(3)研究区土壤基本处于保护饮用水的安全范围之内,但黄壤中Pb、紫色土中Cd和Pb、棕壤中Hg和Pb具有潜在的影响地下水安全的生态风险。这对研究区进行风险评估具有重要的参考价值。  相似文献   

7.
A study of agricultural lands around an abandoned Pb–Zn mine in a karst region was undertaken to (1) assess the distribution of heavy metals in the agricultural environment, in both dry land and paddy field; (2) discriminate between natural and anthropogenic contributions; and (3) identify possible sources of any pollution discovered. Ninety-two samples of cultivated soils were collected around the mine and analyzed for eight heavy metals, pH, fluoride (F?), cation exchange capacity, organic matter, and grain size. The eight heavy metals included Cd, Cr, Cu, Ni, Pb, Zn, As, and Hg. The average concentrations (mg/kg) obtained were as follows: Cd 16.76 ± 24.49, Cr 151.5 ± 18.24, Cu 54.28 ± 18.99, Ni 57.5 ± 14.43, Pb 2,576.2 ± 1,096, Zn 548.7 ± 4,112, As 29.1 ± 6.36, and Hg 1.586 ± 1.46. In a site where no impact from mining activities was detected, the mean and median of Cd, Cu, Ni, Pb, Zn, As, and Hg concentrations in investigated topsoils were higher than the mean and median of heavy metal concentrations in reference soils. An ensemble of basic and multivariate statistical analyses was performed to reduce the multidimensional space of variables and samples. Two main sets of heavy metals were revealed as indicators of natural and anthropogenic influences. The results of principal component analysis (PCA) and categorical PCA demonstrated that Cd, Cu, Pb, Zn, and Hg are indicators of anthropogenic pollution, whereas Cr, As and Ni concentrations are mainly associated with natural sources in the environment. The contamination from Pb–Zn mining operations, coupled with the special karst environment, was a key contributing factor to the spatial distribution of the eight heavy metals in the surrounding soil. The values of heavy metals in the soil samples suggested the necessity of conducting a rigorous assessment of the health and environmental risks posed by these residues and taking suitable remedial action as necessary.  相似文献   

8.
研究雄安地区土壤重金属和砷元素空间分布特征及其来源,对于支撑新区土地资源和环境管理具有重要意义。基于雄安新区土壤环境调查,运用地统计学方法和ArcGIS 技术分析模拟了土壤中As、Hg、Cd、Cu、Pb、Zn、Ni、Cr等8种元素空间分布特征,综合运用空间分析、多元统计学方法和正定因子矩阵模型解析这些元素的主要来源。结果表明:(1)区内土壤质量总体良好,4.35 %的土壤样品Cd和Cu含量超过农用地土壤污染风险筛选值,但均低于农用地土壤污染风险管控值;与河北省背景值相比,Cd、Cu、Pb、Zn和Hg存在不同程度中度和显著富集。(2)As、Cd、Cu、Pb、Zn、Ni、Cr含量呈现出由北部向南部逐渐增高的趋势,高值区主要分布在新区西南部;Hg元素分布分散,高值区主要分布在城镇及工业企业周边。(3)不同土地利用类型土壤剖面重金属和砷元素垂向分布受pH值、有机碳和铁铝氧化物等理化性质影响显著。(4)研究区土壤重金属和砷元素富集受人类活动影响明显,人为来源贡献率达67.12 %,Hg元素主要来源于人为排放的大气沉降富集,As元素富集受到废渣堆放和利用的影响,Cd、Cu、Pb和Zn元素富集受工业生产、污水灌溉以及尾气排放等活动影响。研究成果可为雄安新区合理制定土地资源开发利用和生态保护措施提供技术支撑。  相似文献   

9.
This study focused on the influence of base metal mining on heavy metal levels in soils and plants in the vicinity of Arufu lead-zinc mine, Nigeria. Soil samples (0-15 cm depth) and plant samples were collected from cul-tivated farmlands in and around the mine, the unmineralized site and a nearby forest (the control site). The samples were analyzed for heavy metals (Fe, Zn, Mn, Cu, Pb, Cr and Cd) by Atomic Absorption Spectrophotometry (AAS). The physical properties of soils (pH and LOI) were also measured. Results showed that soils from cultivated farm-lands have neutral pH values (6.5-7.5), and low organic matter contents (10%). Levels of Zn, Pb and Cd in culti-vated soils were higher than the concentrations obtained from the control site. These heavy metals are most probably sourced from mining and agricultural activities in the study area. Heavy metal concentrations measured in plant parts decreased in the order of rice leavescassava tuberspeelings. In the same plant species, metal levels decreased in the order of ZnFeMnCuPbCrCd. Most heavy metals were found in plant parts at average concentrations normally observed in plants grown in uncontaminated soil, however, elevated concentrations of Pb and Cd were found in a few cassava samples close to the mine dump. A stepwise linear regression analysis identified soil metal contents, pH and LOI as some of the factors influencing soil-plant metal uptake.  相似文献   

10.
以淄博城市土壤为研究对象,应用统计学方法对土壤地球化学特征进行研究,采用单因子指数和尼梅罗综合指数法对土壤环境质量进行评价,同时采用Hakanson提出的潜在生态危害指数法对土壤重金属的潜在生态危害进行评价,并对其产生的生态环境效应进行研究。结果表明:Hg、Cd、S、Pb、Se、Org C等元素或指标在表层土壤中的含量明显大于深层,二者间相关性较差,且表层土壤存在明显碱化特征,受到不同程度人为活动影响;单因子评价Cd、Cu、Hg、Ni、Zn都出现污染,其中Cd污染面积最大,达到5.11%,综合污染评价土壤环境质量整体良好,污染土壤占9.84%,其形成可能与工业生产和人类活动有关;潜在生态危害程度最强的重金属是Hg、Cd,局部地段已经达到强、极强潜在生态危害水平,综合重金属潜在生态危害水平整体表现为中等,其轻微、中等、强、很强生态危害的比例分别为29.32%、55.02%、12.85%、2.81%,从空间分布上来看,强、很强潜在生态危害区分布与各类工业空间布局相吻合,种植的蔬菜中Cd、Pb、Zn、Hg等重金属有不同程度超标现象,需加强对土壤及农产品进行协同监测与评价,防止土壤重金属污染加重影响人体健康。  相似文献   

11.
张家口北部坝上草原地区属于典型的半干旱草原牧区, 近年来受到人为活动影响, 土地荒漠化加剧, 草原生态系统受损严重。本研究依据张北县二台镇土地利用现状边界布设了136个土壤采样点, 测定了土壤21个指标。运用主成分分析法与GIS空间插值(IDW)方法来分析土壤中重金属元素的空间迁移富集与分异机理, 并采用地累积指数法、潜在生态危害指数法对表层土壤9种重金属元素(Cd、Hg、Mn、Cr、Cu、Pb、Zn、Ni和As)污染程度、生态风险进行评价。结果显示: 研究区9种重金属元素土壤环境质量单指标等级评价以一等、低风险土壤为主。根据因子分析和主成分分析, Hg、Pb受人类活动及成土母质控制, 其余7种元素均受成土母质的控制。地累积指数结果显示, 9种重金属元素除Hg以外地累积指数均小于0, 总体为无污染等级, Hg为中污染等级。潜在生态危害指数结果显示Hg和Cd为潜在危害元素, 其中Hg整体达到很强生态危害程度, Cd达到中等生态危害程度, 其他元素为轻微生态危害程度。重金属综合生态危害指数(RI)表明在研究区七间窑村—哈拉勿素村以西地区为中等生态危害风险区, 其余地区为轻微生态危害风险区。  相似文献   

12.
三峡库区重庆段土壤某些重金属污染的矿物学方法评价   总被引:1,自引:0,他引:1  
分析了三峡库区重庆段51件土壤样品的矿物组成,结果表明,石英、斜长石和钾长石是土壤中主要矿物,大部分样品中石英的含量高,主要粘土矿物是伊利石,其次是蒙脱石,其他矿物含量较低。同时,参比国家水质标准,根据土壤对金属离子的临界吸附量公式计算了样品重金属污染的阈值,对样品进行了Cd、Hg、Pb、Cu的污染状况评价。结果表明,土壤中污染元素的含量与生态效应评价值并不一致;Cd和Hg的污染尚未达到临界值,危险性较小,但不能因此忽视地球化学定时炸弹的风险;Pb和Cu的污染严重。由于包括母岩在内的样品的评价结果显示污染,可能反映研究区的地球化学背景,需要采取有效措施改善和预防目前和将来的污染危害。  相似文献   

13.
王图锦  潘瑾  刘雪莲 《岩矿测试》2016,35(4):425-432
消落带是水域与陆地的过渡地带,对水环境有着至关重要的影响。本文以三峡库区消落带面积最大的澎溪河流域作为研究区域,采集消落带土壤及其沿岸土壤样品,分析重金属形态分布特征,并使用地质累积指数法和风险评价准则(RAC)对重金属污染程度及生态风险进行评价。研究表明,消落带土壤中Pb、Cu、Cr、Cd、Zn和Ni平均含量分别为68.70、36.96、55.10、0.68、108.26、31.68 mg/kg,污染程度依次为CdPbZnCuNiCr,以Cd和Pb污染较为突出,普遍高于长江干流土壤,远高于重庆地区土壤。Cd的RAC值为20.62%,呈中等环境风险;其形态稳定性最差,以可还原态和酸提取态为主。Pb、Cu、Cr、Zn、Ni的RAC值为5.45%~10.0%,环境风险较低;且均以残渣态为主,占总量的54.69%~83.05%。以消落带沿岸土壤为对照,消落带形成后土壤中各重金属总量均有不同程度升高,且不同重金属在其增量部分的形态存在差异,Cr和Ni的增量部分以残渣态为主,Cd、Pb、Zn的增量以非残渣态为主。研究发现,由于受到水域与陆地污染源的双重影响,澎溪河流域重金属具有由沿岸向消落带沉积富集的趋势。  相似文献   

14.
Mining activities in the upper reaches of the Diaojiang River basin have caused severe soil environment changes, especially in soils along the Diaojiang River. The flooding has resulted in the deposition of mine wastes on the arable land, and caused severe heavy metal contamination of soils along the Diaojiang River. There are obvious mine wastes in soils of the upper reaches, so it is relatively easy to identify the polluted area, but in the lower reaches, mine wastes are not so obvious, although the concentrations of pollutants in soils are still high. The plough sole of rice land can obstruct the transport of heavy metals downwards. The concentrations of Cd, Pb and Zn in rice and corn exceed the national food standards, and may have serious detriment to public health. The plants on the mine sites contain high levels of heavy metals which may lead to more serious detriment to the local ecosystem.  相似文献   

15.
Associated with the rapid urbanization and industrialization, most of the urban parks and recreational areas in Shanghai are built close to major roads or industrial areas, where they are subject to many potential pollution source, including automobile exhaust and factory emissions. Urban dusts, containing many toxic heavy metals such as Pb, Cr, Cd, Hg and As, are one of main contributors for environmental pollution. In this study, 261 dust samples were collected from two different localities (streets and parks) in the urban area of Shanghai, China. Pb and Cr concentrations of all samples were determined by atomic adsorption spectrophotometer analyzer, and Cd, As and Hg concentrations in 74 samples by atomic fluorescence spectroscopy. The mean concentrations of Pb, Cr, Cd, As and Hg are 287, 157, 1.24, 8.73 and 0.16 mg kg−1, respectively. Each heavy metal shows a wide range of concentration values. In comparison with heavy metal background values of soil in Shanghai, urban dusts have elevated metal concentrations as a whole, except those of As. The concentrations of Pb, Cr, Cd, As and Hg are 11.3, 2.1, 10.3, 0.997, 1.7 times of the soil background values, respectively. Compared with the global mean concentrations, Cr concentration in urban dusts is slightly higher. Pb, Cr and Hg show normal distribution after logarithmic transformation. Pb, Cr, Cd, As and Hg have second-order variation trends of the spatial distribution. The spatial distribution features of five toxic heavy metals, in general, illustrate relatively high levels within the regions of the inner-city ring highway and southwestern Shanghai. Cr and Cd are higher in Baoshan industrial park and the shipbuilding industries regions. The order of environmental risk is Pb > Cd > Cr > Hg > As. Pb and Cd have the highest risk for environment pollution and human health among the five metals. The pollutant sources of toxic heavy metals in Shanghai urban dusts are preliminarily concluded as follows: As may have mainly a natural source. Burning of coal has become the main source of Hg pollution. Pb, Cr and Cd have three sources, traffic, building construction, and weathering corrosion of building materials.  相似文献   

16.
金属矿产资源开发活动通常会导致矿区土壤重金属含量的累积,选用科学的评价标准及方法成为评判、区分矿业活动农田土壤重金属累积影响和风险的关键问题。在简述土壤背景值和土壤环境质量标准含义的基础上,提出采用与矿区其他环境条件基本相同或相近的邻区耕作层土壤重金属元素的平均含量作为评判矿业活动重金属对耕作层土壤的累积影响的对照值。以2011年小秦岭金矿区80件耕作层土壤重金属含量为例,金矿开发活动区耕作层土壤重金属的累积风险研究表明,土壤重金属低风险以上样品数占总样品数百分比的排序为Hg>Cd>Pb>Cu,矿业活动对土壤重金属累积的贡献率排序为Hg>Cu>Pb>Cd>Zn。土壤中的Cr、As、Zn元素有轻度累积但无风险。土壤中Hg元素的累积风险面积达到了187.77km^2,占到研究区总面积的47.08%。其中,中、高风险的面积为99.55km^2,土壤重金属累积风险极其严重。研究结果科学地评判了矿业活动对耕作层土壤重金属的累积影响及其贡献,为土壤污染防治指明了方向。  相似文献   

17.
针对废弃矿山遗留生态环境问题,选择贵州丹寨废弃金汞矿为研究区,基于野外系统样品采集,通过原子荧光法和电感耦合等离子体质谱法分析了区内土壤和农作物中的汞(Hg)、砷(As)浓度,采用单指标污染标准指数法、单因子污染指数法、潜在生态危害指数法和目标危险系数法评价了区内Hg、As污染程度及生态健康风险。结果显示:旱地土壤Hg、As平均浓度均超农用地土壤重金属风险筛选值,超标率分别为75.47%和67.92%;土壤Hg污染严重,总体呈极重污染级别,土壤As则以中—极重污染级别为主;玉米地上部分(以下简称玉米)Hg、As超标率分别为36.36%和4.55%,玉米Hg处于轻污染水平,玉米As总体未受污染。相比于旱地-玉米系统,水田土壤Hg的超标率和污染程度均更高,超标率高达89.19%,呈极重污染级别,而水田土壤As超标率仅为22.22%,As污染水平低于旱地土壤;水稻地上部分(以下简称水稻)Hg、As平均浓度均略超食品安全标准,超标率分别为54.55%和18.18%,水稻Hg、As污染均高于玉米,污染等级处于轻-中污染水平。生态健康风险评价表明,土壤Hg以极强生态风险为主、As以轻微生态风险为主;虽然土壤富集Hg,但其向农作物籽实的迁移量小,因此食用玉米和大米对人体健康尚不构成Hg非致癌风险。然而,水稻As富集导致食用大米对人群产生明显的As非致癌和致癌健康风险。该研究对保障矿区居民生活健康具有重要意义,研究结果可为矿区生态环境影响评估及生态恢复提供科学依据。  相似文献   

18.
介绍了山东省东部地区农业生态地球化学调查与评价工作取得的一些基本成果以及该区存在的生态地球化学问题。调查与评价结果显示,Zn,Pb,Cu,Se,Cd,S,P,Hg,N,OrgC等元素或指标在表生作用或人类活动等因素影响下,使表层土壤含量明显大于深层;总体上该区地球化学环境质量优良,Ⅲ类和劣Ⅲ类土壤仅占全区总面积的0.13%,主要分布在矿集区和城镇周边,主要污染元素为Cd,Cr,Ni,Hg。浅层地下水大部分元素或指标处于自然低背景含量状态,部分水样总硬度超标,溶解性总固体、NO2-和F-等超标,已不适合饮用。该区存在的生态地球化学问题有:①山地丘陵区土壤pH值低,且表层土壤具有向强酸、强碱两极化发展的趋势,易引起重金属元素活化,危害人类健康;②沿海地带土地贫瘠,N,P和有机质等营养水平多属缺乏级;③莱州-烟台和牟平-乳山矿集区以及人口密集的城镇地带表层土壤Hg,Cd,Pb,Zn,Se,S等元素污染严重。地质高背景、酸性的表生环境和工业污染的共同作用,是造成环境中重金属元素含量较高的主要原因。  相似文献   

19.
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   

20.
土壤重金属元素地球化学行为是目前国内外研究的热点。研究显示重金属元素地球化学行为与土壤理化性质有密切关系。本文选择河北平原农田为研究区,采集了325个根系土样品,测定了Pb、Hg有效态含量,并探讨了影响其地球化学行为的主要因素。研究表明:(1)Pb、Hg水溶态和离子交换态与土壤p H值呈显著负相关关系,土壤酸化使Pb、Hg有效性增加,直接导致农作物中Pb、Hg含量增加,保持土壤p H值在弱酸性至弱碱性范围,防止土壤酸化,可以降低重金属危害。(2)土壤中有机质含量与Pb、Hg全量呈显著的正相关性,但与水溶态和离子交换态呈负相关。所以土壤中有机质的增加可以降低Pb、Hg元素水溶态和离子交换态含量。(3)随着土壤黏粒的增加,Pb、Hg水溶态和离子交换态含量降低,说明黏粒可以吸附一定量的重金属离子,与重金属元素Pb、Hg地球化学行为存在一定关系。土壤p H值、有机质、黏粒是控制重金属元素Pb、Hg地球化学行为的重要因素。  相似文献   

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