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1.
子牙新河下游湿地土壤重金属垂直分布及形态特征   总被引:1,自引:0,他引:1  
2014年秋季在子牙新河下游湿地采集柱状土壤样品,分析了Cd、Zn、Cu、Pb的垂向分布特征,利用Tessier连续浸提法,分析了典型湿地N1、N3、B3的重金属形态.研究结果表明,Cd、Zn、Cu、Pb含量垂向分布差异性比较大,波动幅度比较大,多数点位Cd、Cu、Zn在11—19 cm深度处出现峰值,可能与过去金属的输入和周期性淹水有关.Zn、Cu、Pb形态分布为残渣态铁锰氧化物结合态有机物结合态可交换态碳酸盐结合态,Cd形态分布为铁锰氧化物结合态可交换态残渣态有机物结合态碳酸盐结合态,Cd的生物有效性较高.湿地淹水条件影响到湿地重金属Cd的交换态和铁锰氧化物结合态的垂直分布.Cd主要以铁锰氧化物结合态的形式存在于湿地土壤中,其百分含量占53.2%,而重金属Zn、Cu、Pb主要以残渣态的形式存在于湿地土壤中,其百分含量均高于60%.根据风险评价编码法(RAC)对重金属的化学形态进行风险评价,风险顺序为:CdZnCuPb,因此重金属Cd应引起足够的重视.  相似文献   

2.
以我国西北干旱区绿洲土壤为供试土壤,采用Tessier形态连续浸提方法,研究了土壤中Cd、Pb、Zn、Ni单一胁迫下的形态分布及再分配趋势.试验结果表明,原状土壤中Cd的主要赋存形态为铁锰氧化态,Pb、Zn、Ni则以残渣态为主;外源可溶性重金属进入土壤后,Cd、Pb、Zn、Ni的主要赋存形态和形态分布特征均发生显著改变,各形态的响应程度因元素而异;重金属的活性均有不同程度的提高,Cd的活性最大;重金属的形态分布是不稳定的,尤以Zn、Pb为甚,尽管会随着时间和作物的影响继续向着稳定的方向转化,但过程是缓慢的.因此,重金属污染对土壤环境的影响是持久的.  相似文献   

3.
绿洲土壤Cd-Ni复合污染对油菜生长及吸收的影响   总被引:1,自引:0,他引:1  
以干旱区绿洲灰漠土为供试土壤,油菜(Brassica campestris L.)为供试蔬菜,采用盆栽试验及Tessier连续浸提形态分级方法,研究了Cd-Ni复合污染在干旱区绿洲土壤中的形态分布规律及其对油菜的生物有效性.结果表明,当土壤受外源Cd-Ni复合污染后,Cd、Ni的活性随着胁迫浓度的增加而增大.与对照相较,外源Cd-Ni复合胁迫后,Cd的主要赋存形态仍为碳酸盐结合态,而Ni的主要赋存形态由残渣态转化为铁锰氧化物结合态.Cd-Ni复合胁迫对油菜的生长表现为先促后抑;油菜各部位的Cd、Ni含量均随着Cd-Ni复合胁迫水平的升高而增加,Cd主要富集在油菜茎叶中,而Ni则主要富集在油菜根部.富集系数结果表明,油菜各部位Cd的富集系数均大于1,而Ni的富集系数均小于1;迁移系数结果表明,Cd的迁移系数大于Ni,Cd更易从土壤中进入油菜根部,并转运至茎叶,Ni的生物可利用性低于Cd.对油菜吸收Cd最重要的形态为碳酸盐结合态,根系和茎叶吸收Ni最重要的形态分别为有机结合态和可交换态.  相似文献   

4.
耕地土壤铜、镉、锌形态及生物有效性研究   总被引:12,自引:0,他引:12  
土壤重金属总量常被用来评估土壤质量安全,但是大量事实说明单纯用土壤重金属总量并不能完全说明土壤重金属的生物有效性及其环境风险。相对于国内外常用的Tessier的五态方法,欧共体标准物质局提出的三步提取法(BCR法),中国地质调查局地质连续提取法的七态标准少见报道。本研究选取河南平原耕地样品,采用中国地质调查局地质连续提取法(DD2005-03)进行耕地中重金属元素(Cu、Cd、Zn)的形态分布,结果表明:Cu、Zn主要以残渣态存在,其残渣态分别占全量的55.80%和67.35%。Cd以离子交换态为主,占全量的27.30%。Cu、Cd、Zn各态含量占全量比例的顺序是,Cu:残渣态弱有机结合交换态铁锰氧化态碳酸盐结合态强有机结合态水溶态离子交换态。Cd:离子交换态弱有机结合交换态强有机结合态残渣态碳酸盐结合态铁锰氧化态水溶态。Zn:残渣态铁锰氧化态弱有机盐结合态离子交换态强有机结合态碳酸盐态水溶态。从生物可利用性系数k来看,Cd主要以活动性较大的状态存在,很容易被作物吸收。  相似文献   

5.
根际土壤中Cd、Pb形态转化及其植物效应   总被引:13,自引:3,他引:13  
采用根袋盆栽试验和连续形态分析方法研究根际土壤中Cd、Pb形态转化及其植物效应。结果表明,(1)在低Cd质量分数(≤1mg/kg)污染条件下,根际土壤中cd主要以残渣态存在;在较高cd质量分数(≥5mg/kg)污染条件下,cd主要以交换态和碳酸盐结合态存在,即根际土壤中Cd由残渣态向交换态和碳酸盐结合态转化,Cd活性增强。(2)Pb在根际土壤中主要以有机结合态和铁锰氧化物结合态存在,交换态质量分数很低,并随Pb污染水平的提高,其主要存在形态未改变。(3)土壤中Cd、Pb总质量分数及各形态质量分数(残渣态除外)与小麦根、茎叶中Cd、Pb质量分数呈正相关性,而与鲜质量呈负相关性;当w(Cd)添加量≥5mg/kg时,小麦鲜质量明显下降;当w(Pb)≥500mg/kg时,小麦鲜质量下降。  相似文献   

6.
土壤重金属的形态分布特征及其影响因素   总被引:44,自引:0,他引:44  
土壤重金属元素在介质中的存在形态是衡量其环境效应的关键参数.选择长江三角洲地区的江苏省昆山市为研究区,采集了126个土壤表层样品,通过欧共体标准司提出的BCR 3步提取法对土壤中Cd、Cr、Cu、Co、Ni、Pb和Zn等7种重金属元素的形态分布特征进行了分析,并采用逐步回归法探讨了影响重金属化学形态的影响因素.研究结果表明,Cd主要以可还原态存在,Pb主要以有机结合态存在,而Cr、Cu、Ni、Zn和Co 5种元素主要以残渣态存在,不同重金属元素的次生相态所占总量百分比由大到小的顺序为Cd、Pb、Co、Cu、zn、Ni、Cr.重金属总量是影响重金属形态含量的最主要因素,其次为有机质和pH值,FeOx含量是影响残渣态含量的主要因素,粘粒含量是影响Zn各形态的主要因素,MnOx含量是影响Pb各形态的主要因素.  相似文献   

7.
金昌市郊农田土壤Cu,Zn,Ni形态分布特征与生物有效性评价   总被引:3,自引:1,他引:2  
通过野外调查和室内测试分析,研究了金昌市郊农田土壤重金属Cu,Zn和Ni的形态特征,并以麦粒中重金属含量为重点进行了Cu,Zn和Ni的生物有效性评价.结果表明,研究区域土壤重金属Cu和Ni污染严重;Cu的主要存在形态为有机结合态,Zn的主要存在形态为残渣态,而Ni的主要存在形态为潜在可利用态;三种元素的生物有效性大小顺序为NiZnCu.对麦粒中重金属健康风险进行评价反映出麦粒中Ni含量对人体健康风险较大,而Cu和Zn对人体健康风险较小.逐步回归分析结果表明,农田土壤中Cu可交换态和碳酸盐结合态对麦粒中Cu含量贡献最大,而对麦粒吸收Zn和Ni贡献最大的形态分别为Zn的碳酸盐结合态和Ni的可交换态、碳酸盐结合态、铁锰氧化态和有机结合态.土壤重金属Cu,Zn和Ni各形态分配系数较总量和各形态含量更适合表征本研究区域土壤重金属的生物有效性.  相似文献   

8.
为了调查文山州三七(Panax notoginseng)主要种植区(丘北县、砚山县、文山县和广南县)土壤和三七Pb、Cd、Cu和Zn含量,通过GPS定位采集三七根区0~15 cm深度土壤样品和三七样品各30个,分析土壤中重金属总量和不同形态含量及三七中对应重金属含量,并进行空间分布分析。结果表明:(1)土壤Pb、Cd、Cu和Zn平均含量分别为55.56、0.36、43.53和119.62 mg·kg~(-1),超标率分别为6.67%、53.3%、13.33%和0。各形态Pb、Cu和Zn含量表现为残渣态有机物结合态铁锰氧化物结合态碳酸盐结合态可交换态。各形态Cd含量表现为铁锰氧化物结合态残渣态碳酸盐结合态有机物结合态可交换态。(2)三七和土壤Pb、Cd、Cu和Zn总量和不同形态含量均以丘北县最高,广南县最低。(3)三七根系Pb、Cd、Cu和Zn平均含量分别为2.93、0.35、5.21和11.11mg·kg~(-1),三七植株各部位重金属含量表现为根系剪口茎叶花果。调查区三七和土壤重金属含量存在空间差异,且以土壤Cd污染为主,应采取一定措施降低三七Cd含量。  相似文献   

9.
为了解铅锌矿区耕地土壤团聚体污染状况,以贵州省都匀范家河铅锌矿区周围耕地土壤为研究对象,研究土壤团聚体中镉(Cd)、铅(Pb)、锌(Zn)3种重金属垂直分布特征和赋存形态。采用三步连续提取法(BCR)对污染土壤团聚体中3种重金属进行赋存形态分析,利用分布因子法(DFx)和地质累积指数法(Igeo)评估其环境风险。结果表明:土壤样品中重金属Cd、Pb和Zn的平均质量分数分别为23.25、518.40、3471.83 mg·kg^-1,已分别达到贵州土壤背景值的35.23、36.35、14.73倍,且3种重金属在土壤团聚体中的含量与其主要赋存形态特征均存在明显差异。研究区域剖面土壤中各粒径Cd主要以残渣态和可还原提取态的形式存在,各粒径Pb主要以残渣态和可氧化提取态的形式存在,80%及以上各粒径Zn为残渣态,综合得出研究区域土壤中重金属潜在影响程度为Cd>Pb>Zn。分布因子法结果表明:在0-100 cm剖面深度,Cd主要富集在0.25-1 mm的颗粒中,Pb主要富集在1-2 mm的颗粒中,Zn主要富集在0.053-2 mm的颗粒中;地质积累指数法结果显示,各粒径颗粒中Cd、Zn的污染水平主要为重污染,Pb主要为偏重污染。研究矿区周围耕地土壤已受到严重的重金属污染,应采取有效措施进行修复治理。该文为范家河铅锌矿区环境风险评价提供基础,旨在为矿区环境管理提供数据支撑。  相似文献   

10.
耕地土壤铜、镉、锌形态及生物有效性研究   总被引:1,自引:0,他引:1  
土壤重金属总量常被用来评估土壤质量安全,但是大量事实说明单纯用土壤重金属总量并不能完全说明土壤重金属的生物有效性及其环境风险。相对于国内外常用的Tessier的五态方法,欧共体标准物质局提出的三步提取法(BCR法1,中国地质调查局地质连续提取法的七态标准少见报道。本研究选取河南平原耕地样品,采用中国地质调查局地质连续提取法(DD2005.03)进行耕地中重金属元素(Cu、Cd、Zn)的形态分布,结果表明:Cu、Zn主要以残渣态存在,其残渣态分别占全量的55.80%和67.35%。Cd以离子交换态为主,占全量的27.30%。Cu、Cd、Zn各态含量占全量比例的顺序是,Cu:残渣态〉弱有机结合交换态〉铁锰氧化态〉碳酸盐结合态〉强有机结合态〉水溶态〉离子交换态。Cd:离子交换态〉弱有机结合交换态〉强有机结合态〉残渣态〉碳酸盐结合态〉铁锰氧化态〉水溶态。Zn:残渣态〉铁锰氧化态〉弱有机盐结合态〉离子交换态〉强有机结合态〉碳酸盐态〉水溶态。从生物可利用性系数k来看,Cd主要以活动性较大的状态存在,很容易被作物吸收。  相似文献   

11.
Pot experiments were conducted on cole (Brassica) grown in soils jointly treated with traces of two heavy metals cadmium (Cd) and zinc (Zn). As the concentration of heavy metals in the soil increased, the uptake of these metals by the plants rose. However, the ratio of heavy metal concentration in soil to uptake by plants increased at a slower rate. Bioavailability of heavy metals considered between the roots and soil using non-linear regressions was shown to be statistically significant. Similarly, the bioavailability of these two heavy metals between leaves and roots using a linear regression was also statistically significant. The bioconcentration factors (BCFs) for Cd and Zn were 0.282 and 4.289, respectively. Significant variation of BCF with the heavy metal bioavailability in soil was noted from non-linear models. The transfer factors (TFs) were 4.49 for Cd and 1.39 for Zn. The Zn concentration in leaves under all treatments did not exceed threshold set standards, but Cd levels exceeded these standards when the concentration of Cd in the soil was more than 1.92 mg kg?1 dry weight (dw). Data indicate that cole (Brassica) is not a suitable crop for oasis soils because of plant contamination with heavy metals, especially Cd.  相似文献   

12.
污染黑土中重金属的形态分布与生物活性研究   总被引:36,自引:5,他引:31  
郭观林  周启星 《环境化学》2005,24(4):383-388
通过对污染和清洁黑土的耕层、非耕层分层采样分析,比较了Cd,Pb,Cu和Zn等在同一土壤耕层和非耕层以及不同采样点土壤中的形态分布和生物活性.结果表明,无污染黑土中这些重金属的形态分布一般为:残渣态>有机结合态>铁锰结合态>碳酸盐结合态>可交换态,外源污染则使可交换态重金属的含量增加.以生物有效性系数和迁移系数进行重金属生物活性评价,其在黑土中生物活性大小的顺序为:Cd>Cu>Zn>Pb.污染愈严重的土壤,重金属的生物活性和自身的淋溶能力相对较强,在非耕层中也表现出较高的生物活性.综合重金属在土壤中的含量和生物活性,发现2个污染点的黑土中Cd和Pb对当地农业生产和地下水安全已构成潜在的威胁.  相似文献   

13.
为探讨深圳市农林土壤重金属的污染现状,系统采集了深圳市菜地、果园、林地和荒地4种土地利用的52个土壤样品,测定了Cu、Pb、Cd、Zn、Cr、Ni6种重金属的全量,对深圳市农林土壤重金属20余年来的累积状况进行了分析并进行了初步的风险评价.结果发现,深圳农林土壤均存在不同程度的重金属累积,总体而言,Cu、Pb、Zn、Cr和Ni的累积较轻,Zn的最大含量尚未超过其80年代末背景值的最大值;Cd的累积最为严重,其最大含量已为背景最大值的16倍.以GB15618-1995为标准,对深圳农林土壤的重金属风险进行评价后发现,Cu的污染最轻,仅20%的菜地土壤超过国家一级标准,Pb50%超过国家一级标准,但尚未超过二级标准;Zn、Cr和Ni均有一定比例的样点超过二级标准,最少4%,最高50%,但未有超过三级标准的样点;Cd的风险最大,不仅有大量超过一、二级标准的样点,而且超过三级标准的样点也占有一定的比例(菜地、果园、林地和荒地土壤中Cd含量超过三级标准的比例分别为10%、23%、29%和50%).深圳农林土壤中的Cd污染应该引起相关部门的重视.  相似文献   

14.
土壤重金属化学形态的生物可利用性评价   总被引:59,自引:0,他引:59  
雷鸣  廖柏寒  秦普丰 《生态环境》2007,16(5):1551-1556
重金属化学形态是近年来土壤化学、植物营养和环境科学研究领域的一个热点和难点,利用重金属的化学形态分布和含量变化来评价重金属的生物可利用性,有利于全面研究重金属的危害性和治理重金属污染土壤。结果表明,水溶态和交换态的重金属易被生物吸收利用,而残留态重金属一般不被生物利用,其它形态如碳酸盐结合态、铁锰氧化物结合态和有机物结合态的生物可利用性主要取决于外界环境的变化。  相似文献   

15.
The addition of synthetic zeolites and similar materials to metal contaminated soils has been shown to reduce soil phytotoxicity and to improve the quality of plant growth on such amended soils. To gain an understanding of the mechanism by which the phytotoxicity of contaminated soils is reduced when treated with synthetic zeolites, sequential extraction procedures and soil solution techniques have been used to identify changes associated with metal speciation in amended soils. Sequential extraction data and changes in soil solution composition are presented for three different contaminated soils, amended with three synthetic zeolites (P, 4A and Y) at concentrations of 0.5%, 1% and 5% w/w, or lime at 1%. The soils were collected from the site of a metal refinery, an old lead zinc mine spoil tip and from a field which had been treated with sewage sludge. After incubation of the zeolite treated soils for between one and three months, results showed a reduction in the metal content of the ammonium acetate fraction between 42% and 70%, depending on soil, zeolite and rate of addition, compared with the unamended soils. In addition, soil solution experiments indicated that synthetic zeolite amendments were more efficient at reducing metal content than comparable lime treatment. The mechanism by which synthetic zeolites reduce metal bioavailability in contaminated soils is discussed and compared to other amendments.  相似文献   

16.
杜彩艳  祖艳群  李元 《生态环境》2007,16(6):1710-1713
重金属的不同形态对于作物吸收重金属及受害具有十分密切的关系,通过施用石灰改变重金属的形态、毒性以及对作物的影响具有重要的意义。以大白菜(Brassica pekinensis)为研究对象,通过盆栽试验,探讨了在铅、镉和锌污染土壤上,施用石灰对土壤中不同形态镉、铅和锌含量及在大白菜中累积的影响。结果表明,施用石灰后,土壤中碳酸盐结合态Pb、Cd和Zn含量明显减少,铁、锰氧化物结合态和有机物结合态Pb、Cd和Zn含量明显增加;对大白菜吸收Pb、Cd和Zn均起到较好的抑制作用,石灰用量为5g·kg-1土时,对大白菜吸收Pb、Cd和Zn的抑制效果最好。  相似文献   

17.
Heavy metals,occurrence and toxicity for plants: a review   总被引:5,自引:0,他引:5  
Metal contamination issues are becoming increasingly common in India and elsewhere, with many documented cases of metal toxicity in mining industries, foundries, smelters, coal-burning power plants and agriculture. Heavy metals, such as cadmium, copper, lead, chromium and mercury are major environmental pollutants, particularly in areas with high anthropogenic pressure. Heavy metal accumulation in soils is of concern in agricultural production due to the adverse effects on food safety and marketability, crop growth due to phytotoxicity, and environmental health of soil organisms. The influence of plants and their metabolic activities affects the geological and biological redistribution of heavy metals through pollution of the air, water and soil. This article details the range of heavy metals, their occurrence and toxicity for plants. Metal toxicity has high impact and relevance to plants and consequently it affects the ecosystem, where the plants form an integral component. Plants growing in metal-polluted sites exhibit altered metabolism, growth reduction, lower biomass production and metal accumulation. Various physiological and biochemical processes in plants are affected by metals. The contemporary investigations into toxicity and tolerance in metal-stressed plants are prompted by the growing metal pollution in the environment. A few metals, including copper, manganese, cobalt, zinc and chromium are, however, essential to plant metabolism in trace amounts. It is only when metals are present in bioavailable forms and at excessive levels, they have the potential to become toxic to plants. This review focuses mainly on zinc, cadmium, copper, mercury, chromium, lead, arsenic, cobalt, nickel, manganese and iron.  相似文献   

18.
Sewage sludge contains rich organic matter and nutrients essential for the growth of plants but the presence of toxic heavy metals restricts its land application. To overcome this, the study aims an eco-friendly approach for leaching out heavy metals. Sewage sludge from sewage treatment plant, Chennai, India was characterised. The analysis of total heavy metal concentration was done by digesting in nitric acid and different forms were extracted by community bureau of reference sequential method. Heavy metals: As, Cd, Cr, Cr, Ni, Pb and Zn were determined using inductively coupled plasma optical emission spectrometry Perkin Elmer Optima 5300 DV. The experimental set-up for heavy metal leaching was held for five consecutive days at different concentrations of humic acid (0.1%, 0.5% and 1%) at varied pH (5–9). Results revealed that at the end of fifth day at pH 8, 1% humic acid is capable of leaching out 75.5% cadmium, 66.0% nickel, 52.0% lead, 51.2% zinc, 31.2% copper and 8.5% cadmium from sewage sludge. Statistically positive correlation (0.7088) existed between the percentage of heavy metals leached out and the sum of soluble and reducible fractions. Thus, from ecological point of view, humic acid can be used to leach out heavy metals from sewage sludge serving the need in restoration of soil fertility upon land application.  相似文献   

19.
Sediments of the Tamagawa River in central Japan were studied to explain the spatial variation, to identify the sources of heavy metals, and to evaluate the anthropogenic influence on these pollutants in the river. Sediment samples were collected from 20 sites along the river (five upstream, four midstream, and 11 downstream). Heavy metal concentrations, viz. chromium, nickel, copper, zinc, lead, cadmium, and molybdenum, in the samples were measured using inductively coupled plasma-mass spectroscopy. The chemical speciations of heavy metals in the sediments were identified by the widely used five-step Hall method. Lead isotopes were analyzed to identify what portion is contributed by anthropogenic sources. The total heavy metal concentrations were compared with global averages for continental crust (shale) and average values for Japanese river sediments. The mean heavy metal concentrations were higher in downstream sediments than in upstream and midstream samples, and the concentrations in the silt samples were higher than those in the sand samples. Speciation results demonstrate that, for chromium and nickel, the residual fractions were dominant. These findings imply that the influence of anthropogenic chromium and nickel contamination is negligible, while copper, zinc, and lead were mostly extracted in the non-residual fraction (metals in adsorbed/exchangeable/carbonate forms or bound to amorphous Fe oxyhydroxides, crystalline Fe oxides, or organic matter), indicating that these elements have high chemical mobility. The proportion of lead (Pb) isotopes in the downstream silt samples indicates that Pb accumulation is primarily derived from anthropogenic sources.  相似文献   

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