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21.
The addition of EDTA in phytoextraction studies has been reported to increase heavy metal accumulation in above-ground parts or to have no negative impact on the overall (root/shoot) accumulation levels in terrestrial plants. At a purely quantitative level, this study assessed the phytoextraction potential of a previously untested high-biomass terrestrial plant, Symphytum officinale L. (comfrey), in the presence of Pb and EDTA. In this hydroponic-based study, we report a small increase in shoot accumulation of Pb with EDTA but, conversely, the presence of EDTA in the nutrient medium markedly reduced the overall quantity of Pb in the plant root by at least 80%. The loss does not appear to be explained by EDTA acting alone, increased transport of Pb to the shoots, or anionic charge repulsion of the [PbEDTA]2? complex. The elusive action and negative effect of EDTA on Pb accumulation in S. officinale provides additional reasons towards a growing trend away from the use of EDTA as a chelating agent in phytoextraction.  相似文献   
22.
五种水生植物对水中铀的去除作用   总被引:3,自引:1,他引:2  
采用水培实验,研究了浮叶植物野生水葫芦(Eichhornia crassipes)、漂浮植物浮萍(Lemna minor L)、满江红(Azolla imbircata)、沉水植物菹草(Potamogeton crispus)、挺水植物空心莲子草(Alligator Alternanthera Herb)在初始铀浓度分别为0.15、1.50和15.00 mg·L-1水中的生长状况及它们对水中铀的去除能力.结果表明,在21 d的水培试验期内,满江红对铀表现出了最强的抗性,0.15、1.50和15.00 mg·L-1的铀对满江红的生长抑制率分别只有4.56%、2.48%和6.79%,而满江红对水中铀的去除率分别达到了94%、97%和92%.进一步的试验表明,每1 L水中种植7.5 g满江红,可以获得最大的铀去除率,将初始铀浓度为1.25、2.50、5.00和10.00 mg·L-1的水体降至国家排放标准(GB 23727—2009)规定值(0.05 mg·L-1)以下分别需要17、19、23和25 d.研究结果为进一步开展铀污染水体植物修复的研究打下了基础.  相似文献   
23.
Cd/Sb/Pb复合污染对竺麻生长及吸收富集特征的影响   总被引:1,自引:0,他引:1  
通过盆栽试验,分析了不同浓度Cd/Sb/Pb复合作用下苎麻的生长响应及重金属吸收、富集和迁移特征变化。结果表明,低浓度Cd/Sb/Pb复合处理对苎麻生长及生物量没有产生明显影响,而高浓度条件下则产生明显抑制效应,株高变矮,茎粗变细及生物量明显减少。苎麻体内Cd、Pb和Sb吸收量与污染土壤具有直接相关性,随复合处理浓度增加明显增大。至最高污染浓度处理时,苎麻体内重金属吸收量以Cd>Sb>Pb,地上部含量分别达335.74 mg/kg、157.55 mg/kg和92.31 mg/kg。复合处理下苎麻地上部对Cd、Sb和Pb的富集系数分别在0.67~0.88、0.13~0.17和0.05~0.06之间,均表现为随复合处理浓度增加而减少变化。苎麻Cd、Sb和Pb的转运系数分别为0.81~0.92、0.38~0.46和0.53~0.73,其中Cd、Sb的转运系数随复合处理浓度增加而增大,Pb则随复合处理浓度增加而减少。苎麻对重金属Cd/Sb/Pb复合污染具有较好吸收累积及转运能力,相比生物量小的植物而言,是目前修复重金属Cd/Sb/Pb复合污染的理想植物。  相似文献   
24.
Improving the efficacy of phytoextraction is critical for its successful application in metal contaminated soils. Mineral nutrition affects plant growth and metal absorption and subsequently the accumulation of heavy metal through hyper-accumulator plants. This study assessed the effects of di-hydrogen phosphates (KH2PO4, Ca(H2PO4)2, NaH2PO4 and NH4H2PO4) application at three levels (22, 88 and 352 mg P/kg soil) on Sedum alfredii growth and metal uptake by three consecutive harvests on aged and Zn/Cd combined contaminated paddy soil. The addition of phosphates (P) significantly increased the amount of Zn taken up by S. alfredii due to increased shoot Zn concentration and dry matter yield (DMY) (P<0.05). The highest phytoextraction of Zn and Cd was observed in KH2PO4 and NH4H2PO4 treatment at 352 mg P/kg soil. The amount of Zn removed by phytoextraction increased in the order of 1st clipping<2nd clipping<3rd clipping, and for Cd extraction the order was 2nd clipping<1st clipping<3rd clipping. These results indicate that the application of P fertilizers coupled with multiple cuttings can enhance the removal of Zn and Cd from contaminated soils by S. alfredii, thus shortening the time needed for accomplishing remediation goals.  相似文献   
25.
张玉秀  马旭  廖晓勇  阎秀兰  马栋  龚雪刚 《环境科学》2015,36(12):4623-4629
超富集植物蜈蚣草能够累积土壤环境中的砷,为探明蜈蚣草植株中芘的赋存特征及其与砷的相互作用,采用双光子激光共聚焦扫描显微技术检测观察芘在该植物中赋存和分布规律.结果表明,添加芘导致蜈蚣草各部位砷含量显著降低,其中叶部和茎部砷含量下降幅度达35%左右,根部砷含量减少20.5%.芘的添加使得植物各部位三价砷比例下降,五价砷比例升高,蜈蚣草叶部三价砷和五价砷赋存浓度下降幅度最大,下降幅度分别为42.2%和32.49%.添加砷可促进蜈蚣草根部和茎部中芘的积累,每株分别增加了9.8μg和139 ng,但对叶部中芘的积累无显著影响.芘主要分布于蜈蚣草细胞膜与细胞内部的细胞器膜结构及细胞核核膜附近,但细胞质中芘的含量较少,茎部韧皮部与皮层以及叶部栅栏组织和海绵组织中几乎没有检测到芘.  相似文献   
26.
张杏丽  邹威  周启星 《环境科学》2015,36(8):3045-3055
针对土壤重金属-持久性有机物复合污染日益严重的现象,本研究以镉(Cd)和1,2,3,4,6,7,8,9-八氯代二苯并呋喃(OCDF)为典型的重金属和持久性有机污染物,选取紫茉莉为修复植物,通过温室盆栽实验研究Cd-OCDF复合污染土壤中植物的耐性以及有机物对植物提取土壤中Cd能力的影响.结果表明种植3个月期间,紫茉莉在Cd浓度≤200 mg·kg-1的复合污染土壤中具有较强的耐性,株高和生物量降低有限;与Cd单一污染相比,OCDF对紫茉莉株高、根部生物量无显著影响,Cd浓度200 mg·kg-1,OCDF浓度500μg·kg-1时,OCDF存在使紫茉莉地上生物量降低22.19%,其它处理组,OCDF对紫茉莉地上生物量无显著抑制作用,反而某些处理组增加紫茉莉地上生物量.Cd-OCDF复合污染效应与Cd单一污染相比,Cd浓度为200 mg·kg-1,OCDF浓度为100μg·kg-1时,紫茉莉根部Cd积累量降低了34.44%,Cd浓度为400 mg·kg-1,OCDF浓度为100μg·kg-1时,根部和叶部Cd积累量分别降低了7.93%和18.09%;其它处理组,OCDF不同程度地提高了紫茉莉根、茎、叶提取和积累土壤中Cd的能力.可见,用紫茉莉修复高浓度Cd-OCDF复合污染土壤中的Cd具有实践上的可行性.  相似文献   
27.
Background Phytoextraction of contaminated soils by heavy metals can provide a great promise of commercial development. Although there are more than 400 species of hyperaccumulators found in the world, phytoremediation technology is rarely applied in field practice for remedying contaminated soils, partially due to low biomass and long growth duration for most of discovered hyperaccumulating plants. In order to enhance the metal-removing efficiency in a year, the two-phase planting countermeasure of phytoextraction by harvesting anthesis biomass was investigated on the basis of the newly found Cd-hyperaccumulator Rorippa globosa (Turcz.) Thell. with 107.0 and 150.1 mg/kg of the Cd accumulation in stems and leaves, respectively, when soil Cd added was concentrated to 25.0 mg/kg. Methods The field pot-culture experiment was used to observe the distribution property of R. globosa aboveground biomass and to examine characteristics of accumulating Cd by the plant at different growth stages. The concentration of Cd in plants and soils was determined using atomic absorption spectrophotometry (AAS). Results and Discussion The results indicated that the total dry stem and leaf biomass of R. globosa harvested at the flowering phase was up to 92.3% of that at its full maturity and the concentration of Cd in stems and leaves harvested at the flowering phase was up to 73.8% and 87.7% of that at the mature phase, respectively. The Cd-removing ratio by shoots of R. globosa harvested at the flowering phase was up to 71.4% of that at the mature phase. It was also found, by observing the growth duration of R. globosa, that the frostless period at the experiment site was twice as long as the growth time from the seedling-transplanted phase to the flowering phase of the hyperaccumulator. Conclusion R. globosa could be transplanted into contaminated soils twice in one year by harvesting the hyperaccumulator at its flowering phase based on climatic conditions of the site and traits of the plant growth. In this sense, the extraction efficiency of Cd in shoots of R. globosa increased 42.8% compared to that of at its single maturity when the plant was transplanted into contaminated soils after it had been harvested at its flowering phase and the plant accumulated Cd from soil at the same extraction ratio at its second flowering phase. Thus, the method of anthesis biomass regulation by the two-phase planting is very significant to increase the Cd-removing efficiency by phytoremediation used in practice over the course of a year. Recommendation and Outlook As for some hyperaccumulators that the growth duration from the seedling-transplanted phase to the flowering phase are short and the concentrations of heavy metals accumulated in their shoots at the flowering phase are high, the efficiency of phytoremediation can greatly be improved using the method of the two-phase planting.  相似文献   
28.
DDT及其主要降解产物污染土壤的植物修复   总被引:14,自引:0,他引:14  
用植草方法研究了受DDT及其主要降解产物污染土壤的植物修复试验,比较了10种草在不同污染浓度下对5种土壤的修复能力。研究表明,同一品种的草在不同土壤中对污染物的清除能力是不同的,不同品种的草在同一土壤中对污染物的清除能力也是不同的,在植物修复的过程中,通过草对有机污染物吸收的途径而去除土壤中污染物所作的贡献很小,植草3个月后,草对DDT及其主要降解产物的吸收与富集仅占原施药总量的0.13%-3.0%,而7.10%-71.94%的DDT及其主要降解产物从土壤中消失。  相似文献   
29.
有机氯农药六六六污染土壤的植物修复研究   总被引:5,自引:0,他引:5  
张超兰  汪小勇  姜文  廖荣胜  黄锋 《生态环境》2007,16(5):1436-1440
我国20世纪六七十年代大量施用的有机氯农药,由于其性质极其稳定,在土壤至今仍有残留。植物修复有机农药污染土壤并不多见,但具有广阔的应用前景。此项研究对提高土壤环境质量、保证农产品的安全、实现农业可持续发展等有着重要的理论和现实意义。文章以多花黑麦草(Lolium multiforum Lan.)、紫花苜蓿(Medicago sativa L.)和籽粒苋(Amaranthus hypochondriacus L.)作为供试植物,在有机氯农药六六六(HCH)质量分数为1.09 mg.kg-1的污染土壤中种植3个月,研究了种植不同植物条件下土壤中HCH的消解情况。研究结果表明,与对照相比,种植植物大大提高了土壤中微生物数量和酶的活性,并且微生物的数量和酶的活性与土壤中HCH的消解密切相关。试验结束后,不同处理中HCH及其4种异构体的总含量降低幅度为43.87%~65.79%,其中种植紫花苜蓿和多花黑麦草的处理中HCH消解较快,对HCH污染土壤修复的效果较好。可见,植物修复技术是一种可行的环境友好的修复六六六污染土壤的技术。  相似文献   
30.
Uranium Accumulation of Crop Plants Enhanced by Citric Acid   总被引:6,自引:0,他引:6  
Citric acid was applied to soil to enhance U accumulation in four crop plants. While the highest enhanced U accumulation of aboveground tissues (a.c. 2000 mg kg−1 dry weight) occurred in the leaves of Indian mustard (Brassica juncea), the highest enhanced U accumulation of roots (a.c. 3500 mg kg−1 dry weight) occurred in canola (Brassica napus var. napus). Uranium translocation among tissues of test plants is in the relation of roots>shoots ≅ leaves. The flowers of sunflower (Helianthus annuus) contained similar or higher U concentrations than those found in shoots, but concentrations in seeds are close to zero. In conclusion, Indian mustard is recommended as a potential species for phytoextraction for U-contaminated soil due to its high U accumulation of aboveground biomass (a.c. 2200 μg per plant). There is no evidence that two types of soils cause a significant difference of the enhanced U accumulation (p<0.05). Results, however, indicate that additional citric acid may result in downward U migration that may contaminate groundwater. Speciation of U that is taken up by plants is also discussed in the end.  相似文献   
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