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1.
不同土壤重金属复合污染的有效态离子冲量表征   总被引:4,自引:0,他引:4  
丁园  宗良纲 《环境污染与防治》2003,25(3):173-175,178
选择红壤、黄棕壤和潮土为对象,依据中国土壤环境质量二级和三级标准确定土壤重金属铜、锌、镉的污染浓度,通过生物盆裁试验研究在重金属Cu、Zn、Cd复合污染条件下牧草(黑麦草、紫花苜蓿)体内重金属含量和土壤中重金属有效态含量的相关性,结果表明,在3种不同性质的污染土壤上,牧草体内重金属的离子冲量与其对应土壤中重金属有效态的离子冲量之间均存在明显的相关性。校正土壤pH、牧草品种等因素后,土壤有效态离子冲量可以有效表征不同土壤-牧草系统的重金属复合污染。  相似文献   

2.
重金属与土壤微生物的相互作用及污染土壤修复   总被引:19,自引:1,他引:19  
阐述了微生物与重金属间的相互作用,指出土壤重金属污染影响微生物活性、生物量,且重金属对微生物具有一定的生态毒性。可通过微生物的氧化-还原作用、生物吸附富集和溶解作用,达到修复重金属污染土壤的目的。  相似文献   

3.
土壤及土壤-植物系统中复合污染的研究进展   总被引:23,自引:0,他引:23  
土壤复合污染是土壤污染的主要存在形式,在分析中,主要从土壤重金属复合污染和土壤重金属-有机污染物复合污染方面进行了较为全面的综述,评价了土壤复合污染的多种表征方法,并且讨论了该研究当前仍存在的一些问题。  相似文献   

4.
宝应县土壤重金属的污染调查   总被引:1,自引:0,他引:1  
以宝应县农田土壤重金属调查为依据,采用污染指数法对土壤质量进行评价,分析土壤重金属污染原因,提出防治措施。  相似文献   

5.
土壤-植物系统中磷对重金属生物有效性的影响机制   总被引:30,自引:1,他引:30  
磷对植物吸收重金属元素的影响作用属于植物营养和重金属污染生态研究的前沿。污染土壤中施入磷是否能够降低重金属离子的生物有效性,除了与重金属离子本身特性有关外,还与含磷化合物的性质及土壤环境条件有关。在分析中,就土壤中磷与重金属离子间交互作用机制、土壤中影响磷降低重金属离子生物有效性的环境因子及磷与重金属交互作用的国内外研究进展作了简要综述,并对今后的研究提出了展望。  相似文献   

6.
土壤重金属的植物污染化学研究进展   总被引:1,自引:0,他引:1  
针对中国土壤重金属污染加剧的趋势,为改善土壤环境质量和保障农产品安全,提出了土壤重金属的植物污染化学研究领域.结合多年的研究工作,从土壤重金属的植物根际化学行为、土壤重金属的植物吸收与解毒机制和重金属污染土壤的植物-微生物交互作用等方面简要阐述了土壤-植物系统中重金属的分布、存在形态、迁移转化、累积及生物学效应和控制规律的研究进展,并对将来的植物污染化学理论研究提出了展望.  相似文献   

7.
污染土壤中重金属生物有效性的植物指示法研究   总被引:24,自引:0,他引:24  
污染土壤中重金属生物活性的判断是污染土壤修复的关键所在。植物指示法是近年来发展起来的判断污染土壤中重金属生物可利用性的一种经济简便且可靠的方法。综述了近年来国内外科研工作者在重金属污染程度的植物指示方面所做的工作,重点阐述了用指示植物监测环境污染以及指示植物的选择问题。  相似文献   

8.
白银市区土壤作物系统重金属污染分析与防治对策研究   总被引:22,自引:0,他引:22  
通过对白银市区土壤作物系统重金属含量与分布变化特征的调查分析,结果表明,只有东大沟污灌区土壤作物污染严重,Cd,Pb超标明显;西大沟清污混灌区土壤环境为轻度污染,但作物质量符合标准要求;其余灌区土壤物质符合标准要求。最后,根据土壤作物重金属含量分布变化特征,提出了相应的防治对策。  相似文献   

9.
土壤重金属污染的植物修复研究进展   总被引:16,自引:0,他引:16  
详细阐述了植物修复的生理学、分子生物学机制,包括超积累植物对根际土壤中重金属的活化,超量积累植物对土壤重金属吸收及其解毒机理,并就该领域今后的研究方向和存在的问题作了探讨。  相似文献   

10.
粘土矿物修复重金属污染土壤   总被引:28,自引:1,他引:27  
简要介绍了我国土壤重金属污染的现状与危害.通过粘土矿物在重金属污染土壤中净化功能的阐述,提出利用粘土矿物修复土壤重金属污染的观点.继而从天然和改性粘土矿物特性,叙述了粘土矿物修复土壤重金属污染的机制与应用进展及其影响因素.最后讨论了粘土矿物在修复土壤重金属污染过程中值得注意的几个问题,并展望了粘土矿物在该领域应用中的发展方向.  相似文献   

11.
重金属与土壤微生物的相互作用及污染土壤修复   总被引:8,自引:1,他引:7  
阐述了微生物与重金属间的相互作用 ,指出土壤重金属污染影响微生物活性、生物量 ,且重金属对微生物具有一定的生态毒性。可通过微生物的氧化 还原作用、生物吸附富集和溶解作用 ,达到修复重金属污染土壤的目的。  相似文献   

12.
以《土壤环境质量标准》(GB 15618—1995)二级标准作为评价标准,采用以改进层次分析法确定权重的加权平均法对南京市郊典型蔬菜地的土壤重金属污染状况进行了评价。结果表明,研究区土壤中Cu、Pb、Cr的单因子污染指数平均值均小于1,含量超标率均不超过10.32%,而Cd的单因子污染指数平均值达2.15,含量超标率为84.13%,急需对该区土壤和受体做进一步的Cd污染深入调查或风险评估;研究区土壤重金属综合污染指数平均值为1.28,属玷污水平;利用ArcGIS 8.3软件进行土壤重金属污染的空间分布特征分析结果表明,研究区各元素的污染程度为Cd>Pb>Cu>Cr,各元素的污染格局较为相似,城市化活动对土壤污染贡献较大;研究区有81.16%的土壤重金属污染级别为玷污,3.78%处于本底级,15.06%处于安全级。  相似文献   

13.
EDTA强化电动力学修复重金属复合污染土壤   总被引:2,自引:0,他引:2  
在自制的电动力学装置中,研究多种重金属复合污染土壤的电动力学修复,通过在阴极添加络合剂EDTA来提高修复效率。实验结果表明,EDTA的引入提高了修复过程中的电流值,且EDTA与重金属的络合提高了污染物向电极液的迁移效率,从而强化了电动力学修复效果。在设定的浓度(0、0.01、0.02、0.05和0.1 mol/L)中,0.1 mol/L的EDTA具有最佳的修复效率。在此实验条件下,污染土壤中的总铜、总铅和总镉的去除率分别为90.2%、68.1%和95.1%。电动力学修复后,对土壤重金属进行化学形态分析,发现电动力学修复显著改变了土壤重金属存在形态,修复后土壤中的铜、铅、镉主要以较稳定的有机态和残余态形式存在,显著降低了对周边生物和环境的毒害。  相似文献   

14.
Heavy metals in plants and phytoremediation   总被引:2,自引:0,他引:2  
GOAL, SCOPE AND BACKGROUND: In some cases, soil, water and food are heavily polluted by heavy metals in China. To use plants to remediate heavy metal pollution would be an effective technique in pollution control. The accumulation of heavy metals in plants and the role of plants in removing pollutants should be understood in order to implement phytoremediation, which makes use of plants to extract, transfer and stabilize heavy metals from soil and water. METHODS: The information has been compiled from Chinese publications stemming mostly from the last decade, to show the research results on heavy metals in plants and the role of plants in controlling heavy metal pollution, and to provide a general outlook of phytoremediation in China. Related references from scientific journals and university journals are searched and summarized in sections concerning the accumulation of heavy metals in plants, plants for heavy metal purification and phytoremediation techniques. RESULTS AND DISCUSSION: Plants can take up heavy metals by their roots, or even via their stems and leaves, and accumulate them in their organs. Plants take up elements selectively. Accumulation and distribution of heavy metals in the plant depends on the plant species, element species, chemical and bioavailiability, redox, pH, cation exchange capacity, dissolved oxygen, temperature and secretion of roots. Plants are employed in the decontamination of heavy metals from polluted water and have demonstrated high performances in treating mineral tailing water and industrial effluents. The purification capacity of heavy metals by plants are affected by several factors, such as the concentration of the heavy metals, species of elements, plant species, exposure duration, temperature and pH. CONCLUSIONS: Phytoremediation, which makes use of vegetation to remove, detoxify, or stabilize persistent pollutants, is a green and environmentally-friendly tool for cleaning polluted soil and water. The advantage of high biomass productive and easy disposal makes plants most useful to remediate heavy metals on site. RECOMMENDATIONS AND OUTLOOK: Based on knowledge of the heavy metal accumulation in plants, it is possible to select those species of crops and pasturage herbs, which accumulate fewer heavy metals, for food cultivation and fodder for animals; and to select those hyperaccumulation species for extracting heavy metals from soil and water. Studies on the mechanisms and application of hyperaccumulation are necessary in China for developing phytoremediation.  相似文献   

15.
A washing process was studied to evaluate the efficiency of saponin on remediating heavy metal contaminated soils. Three different types of soils (Andosol: soil A, Cambisol: soil B, Regosol: soil C) were washed with saponin in batch experiments. Utilization of saponin was effective for removal of heavy metals from soils, attaining 90-100% of Cd and 85-98% of Zn extractions. The fractionations of heavy metals removed by saponin were identified using the sequential extraction. Saponin was effective in removing the exchangeable and carbonated fractions of heavy metals from soils. In recovery procedures, the pH of soil leachates was increased to about 10.7, leading to separate heavy metals as hydroxide precipitates and saponin solute. In addition recycle of used saponin is considered to be effective for the subsequent utilization. The limits of Japanese leaching test were met for all of the soil residues after saponin treatment. As a whole, this study shows that saponin can be used as a cleaning agent for remediation of heavy metal contaminated soils.  相似文献   

16.
Soil contamination with heavy metals and organic pollutants has increasingly become a serious global environmental issue in recent years. Considerable efforts have been made to remediate contaminated soils. Biochar has a large surface area, and high capacity to adsorb heavy metals and organic pollutants. Biochar can potentially be used to reduce the bioavailability and leachability of heavy metals and organic pollutants in soils through adsorption and other physicochemical reactions. Biochar is typically an alkaline material which can increase soil pH and contribute to stabilization of heavy metals. Application of biochar for remediation of contaminated soils may provide a new solution to the soil pollution problem. This paper provides an overview on the impact of biochar on the environmental fate and mobility of heavy metals and organic pollutants in contaminated soils and its implication for remediation of contaminated soils. Further research directions are identified to ensure a safe and sustainable use of biochar as a soil amendment for remediation of contaminated soils.  相似文献   

17.
煤矿复垦区土壤重金属分布特征与质量评价   总被引:2,自引:0,他引:2  
为保证煤矿复垦区种植农作物的充填复垦土壤的生态安全,以淮南矿区煤矸石充填复垦地为研究对象,通过对研究区内Cd、Cr、Ni、Pb、Cu、Zn和Hg 7种重金属不同深度含量分析,总结其纵向分布特征,并将研究区土壤重金属含量与淮南市土壤背景值、《土壤环境质量标准》(GB 15618-1995)作比较,分析这7种重金属的污染程度.结果表明,这7种重金属都有不同程度的污染,其中土壤受Cd污染最严重,土壤中重金属垂直方向上无确定分布规律.总体而言,土壤重金属潜在生态风险属于强生态危害.从垂直方向来看,重金属潜在生态风险指数(RD随着深度的增加出现先下降后升高的趋势,其中40~60 cm深度的RI最大.重金属生态危害程度依次为Cd> Hg> Ni> Cu> Cr> Pb> Zn,其中Cd为矿区土壤中最主要的重金属污染生态风险因子.  相似文献   

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