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1.
Speciation and fractionation of heavy metals in soil subsamples experimentally loaded with Pb, Cd, Cu and Zn in orthogonal design was investigated by sequential extraction, and operationally defined as water-soluble and exchangeable(SE), weakly specific adsorbed( WSA),Fe and Mn oxides-bound(OX) and organic-bound( ORG). The results showed that fractions of heavy metals in the soil subsamples depended on their speciation. About 90% of Cd and 75% of Zn existed in soil subsamples in the SE fraction. Lead and Cu existed in soil subsamples as SE, WSA and OX fractions simultaneously, although SE was still the major fraction. Organic-bound heavy metals were not clearly apparent in all the soil subsamples. The concentration of some heavy metal fractions in soil subsamples showed the good correlation with ionic impulsion of soil, especially for the SE fraction. Continuous saturation of soil subsamples with 0.20 mol/L NH4CI, which is the first step for determination of the negative surface charge of soil by the ion retention method, resulted in desorption of certain heavy metals from the soil. It was found that the percentage desorption of heavy metals from soil subsamples depended greatly on pH, the composition and original heavy metal content of the soil subsamples. However, most of the heavy metals in the soil subsamples were still be retained after multiple saturation. Compared with the parent soil, the negative surface charge of soil subsamples loaded with heavy metals did not show difference significantly from that of the parent one by statistical analysis. Heavy metals existed in the soil subsamples mainly as exchangeable and precipitated simultaneously.  相似文献   

2.
Heavy metal contamination of soils through anthropogenic activities is a widespread and serious problem confronting scientists and regulators throughout the world. In this study we investigated the distribution, chemical species and availability of lead, zinc, cadmium and copper in nine surface(0 to 20 cm) soils from near an abandoned lead/zinc mine tailings located in Shaoxing, Zhejiang, China. Total heavy metal contents ranged from 5271 to 16369 mg/kg for Pb, 387 to 1221 mg/kg for Zn, 3.0 to 9.3 mg/kg for Cd and 65 to 206 mg/kg for Cu. In general, all heavy metals exceeded China National Standards for Soil Environmental Quality of Heavy Metals by a factor of 3-65 times. Comparison of the heavy metal concentrations(Pb, Zn, Cd and Cu) with clay content revealed a strongly significant relationship while significant relationship( P 〈 0.001 ) was also obtained between Cd + Zn and Pb + Cu. Solid phase speciation of the soils using Tessier procedure showed that the heavy metals were distributed in the order: residual 〉〉 organically complexed-Fe-Mn oxides occluded 〉 carbonate bound 〉 exchangeable 〉 water soluble. In the organic matter fraction, the ratio of Pb(29.1% ) to its total concentration in the soils was higher than those of Zn(4.70% ), Cd(3.16% ) and Cu(9.50% ). The percentages of the water soluble and the exchangeable fractions of Pb(1.80% ) and Cd(2.74% ) were markedly greater than those of Zn(0.10% ) and Cu(0.15% ), suggesting that Pb and Cd are relatively more mobile and hence more toxic in the contaminated soils. Strongly significant relationships between H20-Pb, H20-Zn and H20-Cu, strong positive correlations between H20-Pb, H20-Zn, H20-Cu and organic matter in soil were found. The content of H20-Pb, H20-Zn, H20-Cu was negatively correlated with pH values. The similar negative relationships between pH values and exchangeable heavy metals were also recorded. It is suggested that increasing soil pH or liming the soil could decrease bioavailability of heavy metals in the soil.  相似文献   

3.
The concentrations and chemical forms of copper(Cu) and zinc(Zn) in surface soils directly influence the movement of Cu and Zn. In this study, thirteen sandy soil samples with a wide range of total Cu and Zn concentrations were collected for evaluating the relationships between Cu and Zn release and extraction time, ratio of soil to water, pH and electro;yte types. The results indicated that Cu released in batch extraction that represents long-term leaching was mainly from exchangeable, and carbonate bound Cu fractions, and Zn released in the batch extraction was mainly from its carbonate bound fraction. However, the Cu and Zn leached from the soils using the column leaching that represents short-term leaching were mainly from their exchangeable fractions. Soil column leaching at different pH values indicated that the amounts of leached Zn and Cu were greatly affected by pH. The Cu and Zn release experiments with varying extraction times and ratio of soil to water suggest that long-term water-logging in the soils after rain may increase contact time of the soils with water and the release of Cu and Zn to water from the soils, and total amounts of Cu or Zn released from the soils increase, but the Cu or Zn concentration in the surface runoff decrease with increasing rainfall intensity. The increased Ca concentration in soil solution increased stability of organic matter-mineral complexes and might decrease the dissolution of organic matter, and thus decreased the release of Cu-binding component of organic matter. However, high concentration of Na in the soil solution increased the dispersion of the organic matter-mineral complexes and increased dissolution of organic matter and the release of Cu from the soils.  相似文献   

4.
The soil moisture regime can affect the release of heavy metals in soil. In the previous studies, slightly polluted soils or artificially contaminated soil samples were considered to investigate the effect of soil moisture. We used highly smelter-contaminated and aged soils to study the release of typical heavy metals(Cu, Zn, Cd and Pb) induced by water incubation in batch experiments with characterization via speciation and X-ray diffraction analyses(XRD). The results show that the leachable concentrations of the heavy metals increased slightly in the first 30 days, decreased drastically between 30 and 90 days, and immobilized relatively constant thereafter. The fluctuation was ascribed to the changes of soil Eh and pH, the reductive dissolution of crystalline iron oxides, the formation of new amorphous iron oxides, the absorption of dissolved organic matter and the precipitation of metal sulfide. Speciation analysis indicated that a proportion of the soil heavy metals was transformed from an exchangeable fraction to a less labile fraction after water incubation. And the presence of a lead iron oxide phase and the peak increasing of zinc sulfide were observed via XRD analyses. Finally, water incubation restrained the release of heavy metals after 180 days of incubation, and reduced the leachability of Cu, Zn, Cd and Pb by as much as 1.61%–7.21% for soil A and 0.43%–3.36% for soil B, respectively. The study findings have implications for the formulation of risk control and management strategies for heavy metals in smelter-contaminated soils.  相似文献   

5.
In order to investigate distributions of heavy metal pollution in Quanzhou Bay wetland, the total concentration and chemical partitioning of a number of heavy metals (Cu, Zn, Cd, Pb, Cr, Hg) in sediments of three sampling sites of Quanzhou Bay wetland and their availability to Suaeda australis were analyzed. The Geoaccumulation Index (Igeo) values reveal that the sediments of three sampling sites may all be considered as moderately contaminated for Pb and Zn, and all sediments might be strongly contaminated with cadmium. The partitioning analyses revealed the measured heavy metals in three sites are bound to the exchangeable fraction at lower concentrations. The measured metals in a considerable amount are bound to the reducible and oxidizable fractions, and a high proportion of the measured heavy metals were distributed in the residual fraction in the sediment samples. The concentrations of Cd in each chemical phase extracted from the sediments are above natural global background levels and should be further investigated because of its toxicity. Suaeda australis has different accumulation abilities for the measured heavy metals. For the root and stem, the bioaccumulation ability assessed by bioaccumulation factor (BAF) for the measured heavy metals follows the decreasing order as: Cu〉Cr〉 Zn〉Cd, Pb, Hg. In the leaf, stronger bioaccumulation ability for Hg is exhibited. The heavy metal concentrations in Suaeda australis roots have positive correlations with their available fractions, while the exchangeable fraction of Cu and Cd might have be more important to both mature plant roots and seedling roots uptake than other fractions; as for Cr, the oxidizable fraction might make a greater contribution to the plant root uptake; as for Zn, the reducible fraction might make so contribution ; and for Pb, the oxidizable fraction might make a significant contribution to the mature plant root uptake, however, the exchangeable fraction might have a significant contribution to the seedling root uptake.  相似文献   

6.
The potential harm of heavy metals is a primary concern in application of sludge to the agricultural land.A pot experiment was conducted to evaluate the effect of two sludges on fractionation of Zn and Cu in soil and their phytotoxicity to pakchoi.The loamy soil was mixed with 0%,20%,40%,60% and 80%(by weight)of digested sewage sludge(SS)and composted sludge (SC).The additions of the both sludges caused a significant raise in all fractions,resulting in that exchangeable(EXCH)and organic matter(OM) became predominance for Zn and organic bound Cu occupied the largest portion.There was more available amount for Zn and Cu in SS treatments than SC treatments.During the pot experiment,the concentration of Zn in EXCH,carbonate(CAR)and OM and Cu in EXCH and OM fractions decreased in all treatments,so their bioavailability reduced.Germination rate and plant biomass decreased when the addition rate was high and the best yield appeared in 20% mixtures at the harvest of pakchoi.The two sludges increased tissue contents of Zn and Cu especially in the SS treatments.Zn in pakchoi was not only in relationship toΔEXCH andΔCAR forms but also inΔOM forms in the sludge-soil mixtures.Tissue content of Cu in pakchoi grown on SC-soils could not be predicted byΔEXCH. These correlation rates between Zn and Cu accumulation in pakchoi and variation of different fractions increased with time,which might indicate that sludges represented stronger impacts on the plant in long-term land application.  相似文献   

7.
Few studies have been carried out to connect nutrient recovery as struvite from wastewater and sustainable utilization of the recovered struvite for copper and zinc immobilization in contaminated soil. This study revealed the effect of struvite on Cu and Zn immobilization in contaminated bio-retention soil in the presence of commonly exuded plant organic acids. The research hypothesis was that the presence of both struvite and organic acids may influence the immobilization of Cu and Zn in soil. The outcome of this research confirmed that more than 99% of Cu and Zn was immobilized in bio-retention filter media by struvite application. Water-soluble Cu and Zn concentrations of struvite treated soil were less than 1.83 and 0.86 mg/kg respectively, and these concentrations were significantly lower compared to the total Cu and Zn content of 747.05 mg/kg in the contaminated soil. Application of struvite to Cu- and Zn-contaminated soil resulted in formation of compounds similar to zinc phosphate tetrahydrate (Zn3(PO4)2?4H2O) and amorphous Cu and Zn phases. Struvite was effective in heavy metal remediation in acidic soil regardless of the presence of Ca impurities in struvite and the presence of plant organic acids in soil. Overall, this study revealed that struvite recovered from wastewater treatment plants has potential for use as an amendment for heavy metal remediation in contaminated bio-retention soil.  相似文献   

8.
Total concentration of heavy metals(Cd, Cr, Cu, Fe, Pb, Ni, Mn and Zn) was estimated in the redeveloping soil of mine spoil under 5-yr old plantations of four woody species namely: Albizia lebbeck, Albizia procera, Tectona grandis and Dendrocalamus strictus.The data recorded in the present study were compared with other unplanted coal mine spoil colliery, which was around to the study site and adjoining area of dry tropical forest. Among all the heavy metals, the maximum concentration was found for Fe and minimum for Cd.However, among all four species, total concentrations of these heavy metals were recorded maximally in the plantation plots of T. grandis except for Fe, while minimally in A. lebbeck except for Zn, whereas, the maximum concentration of Fe and Zn was in the plantation plots of D. strictus and A. procera. Statistical analysis revealed significant differences due to species for all the heavy metals except Cu.Among four species, A. lebbeck, A. procera and D. strictus showed more efficient for reducing heavy metal concentrations whereas T. grandis was not more effective to reduce heavy metal concentrations in redeveloping soil of mine spoil.  相似文献   

9.
Changes of Cu, Zn, and Cd speciation in sewage sludge during composting   总被引:6,自引:0,他引:6  
The potential toxicity risks from heavy metals depend on their chemical speciation. The four stages of the Tessier sequential extraction method were employed to investigate changes in heavy metal speciation (Cu, Zn, and Cd) of sewage sludge during forced aeration composting, and then to identify whether the composting process would reduce or enhance their toxicities. Throughout the composting process, the exchangeable, carbonate-bound, Fe-Mn oxide-bound, and organic matter-bound fractions of Cu were converted to the residual Cu fraction. The organic matter-bound Cu fraction greatly contributed to this transformation. Residual Zn fraction was transformed to the Fe-Mn oxide-bound and organic matter-bound fractions after composting. The residual Zn fraction was a major contributor to the organic matter-bound Zn fraction. The availability of Cu and Zn was reduced by composting such that the risk of heavy metal toxicity decreased with prolonged treatment times. Additionally, attention should be paid to the increased availability of Cd in sewage sludge after composting treatment.  相似文献   

10.
Batch experiments were conducted with a heavy metals and arsenic co-contaminated soil from an abandoned mine to evaluate the feasibility of a remediation technology that combines sieving with soil washing.Leaching of the arsenic and heavy metals from the different particle size fractions was found to decrease in the order: 0.1,2–0.1,and 2 mm.With increased contact time,the concentration of heavy metals in the leachate was significantly decreased for small particles,probably because of adsorption by the clay soil component.For the different particle sizes,the removal efficiencies for Pb and Cd were75%–87%,and 61%–77% for Zn and Cu,although the extent of removal was decreased for As and Cr at 45%.The highest efficiency by washing for Pb,Cd,Zn,and As was from the soil particles 2 mm,although good metal removal efficiencies were also achieved in the small particle size fractions.Through SEM-EDS observations and correlation analysis,the leaching regularity of the heavy metals and arsenic was found to be closely related to Fe,Mn,and Ca contents of the soil fractions.The remediation of heavy metal-contaminated soil by sieving combined with soil washing was proven to be efficient,and practical remediation parameters were also recommended.  相似文献   

11.
以江苏滨海稻麦轮作田为对象,研究沼液施用0,3,5a对土壤和作物籽粒重金属(Cu、Zn、Pb、Cd)含量的影响,评价其污染风险并估算农田沼液承载力.结果表明:沼液施用3,5a后,土壤和作物籽粒中Cu、Zn、Pb、Cd均未超标,内梅罗指数与土壤和农产品综合质量指数显示农田重金属污染程度属于清洁.土壤Cu和Zn显著富集,沼液施用5a后,小麦季土壤Cu、Zn含量分别为22.59,63.08mg/kg,较未施用分别提高了19.52%和28.89%.水稻季土壤Cu、Zn含量分别为26.12,78.74mg/kg,较未施用分别提高了27.73%和31.80%.小麦和水稻籽粒Zn含量随沼液施用年限增加而增加(P<0.05),沼液施用5a分别达到25.07,30.98mg/kg,较未施用分别提高了23.50%和16.29%.小麦季和水稻季0~15cm土壤中Cu的累积速率分别为0.74,1.13mg/(kg·a),Zn的累积速率分别为2.83,3.80mg/(kg·a).基于土壤重金属累积速率,江苏滨海稻麦轮作田沼液安全施用年限为63a.  相似文献   

12.
沼渣是厌氧发酵的残余物,可作为肥料施用,但因其含有一定量的重金属等有害物质可能导致环境污染风险.丛枝菌根(Arbuscular mycorrhiza,AM)真菌作为植物共生真菌,可以促进植物对矿质养分的吸收,同时能够通过不同途径减轻重金属对植物的毒害.本文采用甘草(Glycyrrhiza uralensis Fisch.)为供试植物开展盆栽试验,考察施用沼渣结合接种AM真菌对甘草生长和矿质营养的影响.试验结果表明,施用沼渣显著促进了植物生长,提高了植物生物量、磷含量和叶片叶绿素含量,与此同时提高了土壤有机质和磷、铬、铜、铅含量,并导致植物重金属含量显著升高.另一方面,AM真菌能够和甘草根系形成良好共生关系,但施用沼渣对菌根侵染表现出显著抑制作用.接种AM真菌促进了甘草生长、提高了根系磷含量及叶片叶绿素含量,同时显著降低了植株重金属含量至安全阈值以内.本试验表明,施用沼渣同时接种AM真菌可在促进甘草生长的同时阻控重金属污染风险,因而可作为沼渣安全利用的一种可行技术途径.  相似文献   

13.
2种组配改良剂对稻田土壤重金属有效性的效果   总被引:20,自引:0,他引:20  
为研究2种组配改良剂LS(碳酸钙+海泡石)和HZ(羟基磷灰石+沸石)对土壤重金属的生物有效性以及水稻吸收累积重金属的影响,在湘南某矿区附近污染稻田中施用了不同添加量(0,2,4,8g/kg)的两种组配改良剂,并进行了水稻种植的田间试验.结果表明,施用2~8g/kg组配改良剂LS和HZ均能使土壤pH值和CEC含量显著增加,有机质含量变化不明显,LS比HZ更能提高土壤pH值和CEC含量.施用2~8g/kg组配改良剂LS能使土壤中Pb、Cd、Cu和Zn的TCLP提取态含量分别降低25.7%~52.2%、12.7%~25.7%、6.4%~17.2%和8.6%~23.4%,施用2~8g/kg HZ使土壤中Pb、Cd、Cu和Zn的TCLP提取态含量分别降低57.6%~80.1%、7.0%~40.9%、2.3%~22.7%和4.5%~33.2%.两种组配改良剂能显著降低土壤中Pb、Cd、Cu和Zn的生物有效性,抑制水稻植株对Pb和Cd的吸收,土壤Pb、Cd和Cu的TCLP提取态含量与水稻根系和糙米中Pb、Cd和Cu的含量之间存在显著或极显著的正相关关系,TCLP提取态含量能较好的表示重金属在土壤中的生物有效性.  相似文献   

14.
采用原位化学固定法,通过向土壤中添加修复剂磷肥和稻草,研究其对土壤中重金属形态、植物有效性和土壤微生物活性的影响.结果表明:添加磷肥和稻草可改变土壤中重金属Cu、Cd、Zn和Pb的形态分布,使土壤中重金属高植物有效性的酸提取态比例降低;其中以磷肥+稻草组下降最多,酸提取态Cu比例从对照的50.4%降至8.7%,酸提取态Cd从56.2%降至29.5%,酸提取态Zn从32.9%降至25.1%,酸提取态Pb从21.1%降至检测限以下.磷肥、稻草及磷肥+稻草修复土壤后,4种重金属在油菜(Brassica napus L.)中的含量显著降低,且油菜干生物量由对照的0.46 g分别增至0.97、1.53和2.28 g.同时土壤中微生物活力得到提高,土壤微生物生物量碳由对照的19.16 mg/kg最高增至966.71 mg/kg,而代谢呼吸率由对照的21.95 mg/(kg·h)最大升至158.63 mg/(kg·h).证明磷肥和稻草可降低重金属对油菜和土壤微生物的毒性胁迫,改善污染土壤质量,促进植物和土壤微生物的生长.  相似文献   

15.
在清淤底泥中添加碱性粉煤灰、燃煤炉渣进行钝化处理后,通过浸出毒性实验、重金属形态分级实验及植物生长实验对底泥基质中重金属的活性及生物有效性进行了研究.结果表明:清淤底泥中添加粉煤灰、燃煤炉渣等碱性物质后显著降低了底泥基质中可溶态重金属含量,其中,交换态、有机结合态Pb、Zn所占比例显著降低;碱性物质的加入缓解了重金属的浸出危害,钝化底泥基质中粉煤灰、炉渣对Cu的稳定率可达90.34%~96.88%;与此同时也抑制了底泥中重金属在植物体内的富集与迁移,降低了重金属的生物有效性.相关性分析表明,底泥基质中交换态重金属含量、浸出浓度、植物茎叶中重金属含量及植物根伸长抑制率之间存在显著正相关关系(p0.01).  相似文献   

16.
改性纳米碳黑用于重金属污染土壤改良的研究   总被引:17,自引:1,他引:16       下载免费PDF全文
采用培养试验,研究了添加改性纳米碳黑对江西贵溪污染土壤中有效态Cu和Zn含量的影响,并对比研究了包施和混施效果差异,同时还通过温室盆栽试验研究了改性纳米碳黑对黑麦草生物量和黑麦草对Cu和Zn的吸收量以及土壤Cu和Zn形态的影响.结果表明,添加改性纳米碳黑可以降低土壤中有效态Cu和Zn的含量.与对照相比,培养60d后,添加1%、3%和5%改性纳米碳黑的土壤有效态Cu含量分别降低了47.3%、72.0%和80.9%,有效态Zn含量分别降低了3.0%、17.7%和43.6%.同等材料用量下包施不如混施的钝化效果好,且所用时间要长,但包施具有将所施材料和被吸附的重金属移出土壤体系的优点.土壤中添加改性碳黑可以促进黑麦草的生长,降低Cu和Zn在黑麦草地上部的积累量同时降低了土壤中Cu和Zn交换态和碳酸盐结合态,而增加有机物及硫化物结合态含量.  相似文献   

17.
奉贤地区土壤Cu、Zn和Pb形态与其生物可利用性研究   总被引:4,自引:0,他引:4  
用BCR法对上海市奉贤区土壤中Cu、Zn和Pb的金属形态进行研究,结果表明:土壤中Cu和Pb的主要形态是氧化态和残渣态,Zn的主要形态是酸溶态和还原态。风险评估指数(RAC)显示土壤中三种金属Zn和Pb的风险程度高,Cu的风险程度中等。小麦对金属吸收的试验表明植物吸收Cu、Zn和Pb的浓度大小与金属的生物有效性结果相一致。  相似文献   

18.
生骏  陆文静  王洪涛 《环境科学》2007,28(6):1367-1371
以粉煤灰作为污泥的重金属稳定剂,通过研究污泥堆肥过程及堆肥产物施入土壤后的交换态Cu、Zn、Pb含量的变化情况,全过程分析钝化重金属在好氧堆肥过程中及土地施用后的吸附-解吸动态变化.结果表明,堆肥过程本身对污泥中Cu具有一定活化效应,而对Zn、Pb则产生钝化作用;粉煤灰对Zn和Pb的钝化效果较为显著,与堆肥原料相比降幅分别为62.47%和92.61%,而Cu的含量基本无变化.尽管不同重金属在不同土壤类型中的钝化-活化行为各异,但总体上土壤中累计施加污泥堆肥产物所导致的重金属富集效应较为明显.  相似文献   

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