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废弃尾矿库15种植物对重金属Pb、Zn的积累和养分吸收   总被引:11,自引:5,他引:6  
施翔  陈益泰  王树凤  李江川 《环境科学》2012,33(6):2021-2027
在废弃的铅锌尾矿库进行人工植被恢复试验.对3年生15种植物重金属积累和养分吸收特性的研究表明,植物对土壤重金属和养分的吸收积累因植物种类、部位、金属种类和种植时间的不同而有显著差异.树木不同器官Pb质量浓度高低的总趋势为根〉叶〉茎,部分树种Zn质量浓度表现为叶〉根和茎;在15种参试植物中,加拿大紫荆根系Pb和Zn质量浓度均处于最高水平(分别为1 803 mg.kg-1和2 120 mg.kg-1),盐肤木具有最高的茎枝Pb、叶片Pb和Zn质量浓度(分别为280、546和1 507 mg.kg-1),旱柳具有最高的茎枝Zn质量浓度(729 mg.kg-1)和较高的叶片Zn质量浓度(1 153 mg.kg-1).枫香、紫花苜蓿对Pb,旱柳、盐肤木、紫花苜蓿对Zn的转移系数TF值均〉1.植物Pb的富集系数BCF值均小于0.17,旱柳、盐肤木、紫花苜蓿Zn的BCF值达0.37~0.43.固氮植物体内N含量显著高于其它植物,火炬树、臭椿对P和夹竹桃对K的吸收积累能力强.随着种植时间的增加,植株体内有重金属质量浓度增加、营养元素含量下降的趋势.盐肤木、旱柳等重金属积累树种及紫穗槐、紫花苜蓿、截叶胡枝子、桤木等固氮植物在铅锌尾矿治理中具有应用前景.  相似文献   
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Vamerali T  Bandiera M  Mosca G 《Chemosphere》2011,83(9):1241-1248
Sunflower, alfalfa, fodder radish and Italian ryegrass were cultivated in severely As-Cd-Co-Cu-Pb-Zn-contaminated pyrite waste discharged in the past and capped with 0.15 m of unpolluted soil at Torviscosa (Italy). Plant growth and trace element uptake were compared under ploughing and subsoiling tillages (0.3 m depth), the former yielding higher contamination (∼30%) in top soil.Tillage choice was not critical for phytoextraction, but subsoiling enhanced above-ground productivity, whereas ploughing increased trace element concentrations in plants. Fodder radish and sunflower had the greatest aerial biomass, and fodder radish the best trace element uptake, perhaps due to its lower root sensitivity to pollution. Above-ground removals were generally poor (maximum of 33 mg m−2 of various trace elements), with Zn (62%) and Cu (18%) as main harvested contaminants. The most significant finding was of fine roots proliferation in shallow layers that represented a huge sink for trace element phytostabilisation.It is concluded that phytoextraction is generally far from being an efficient management option in pyrite waste. Sustainable remediation requires significant improvements of the vegetation cover to stabilise the site mechanically and chemically, and provide precise quantification of root turnover.  相似文献   
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Assisted phytoremediation has been widely used for decontamination of potentially toxic elements contaminated soils. A greenhouse experiment was conducted to evaluate the effectiveness of different microbial inoculations and surfactant levels on the phytoremediation of a Pb-polluted calcareous soil by maize. The results showed that application of surfactant increased both root and shoot dry matter yields. Microbial inoculations, however, had no significant effect on the root or shoot dry matter yield. Mean Pb uptake in maize root or shoot increased only following the application of some surfactant levels. Inoculation with microorganisms significantly increased both mean Pb concentration and uptake in maize root but not in maize shoot. Application of 4?mmol surfactant kg?1 along with inoculation with Priformospora indica was effective in increasing Pb phytostabilisation potential. While the application of 2?mmol surfactant kg?1 along with inoculation with Pseudomonas fluorescens was effective in increasing Pb phytoextraction potential. The fact that the values of translocation efficiencies were low in all treatments, demonstrated the low capability of maize for translocation of Pb from root to shoot. Inoculation with P. fluorescens was the most effective treatment in increasing metal micronutrient uptake. Microbial inoculation and surfactant levels enhanced Pb phytoremediation mostly through phytostabilisation of this metal by maize.  相似文献   
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Due to anthropogenic activities, large extends of soils are highly contaminated by Metal Trace Element (MTE). Aided phytostabilisation aims to establish a vegetation cover in order to promote in situ immobilisation of trace elements by combining the use of metal-tolerant plants and inexpensive mineral or organic soil amendments. Eight years after Coal Fly Ash (CFA) soil amendment, MTE bioavailability and uptake by two plants, Lolium perenne and Trifolium repens, were evaluated, as some biological markers reflecting physiological stress. Results showed that the two plant species under study were suitable to reduce the mobility and the availability of these elements. Moreover, the plant growth was better on CFA amended MTE-contaminated soils, and the plant sensitivity to MTE-induced physiological stress, as studied through photosynthetic pigment contents and oxidative damage was lower or similar. In conclusion, these results supported the usefulness of aided phytostabilisation of MTE-highly contaminated soils.  相似文献   
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