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1.
任婧  吴龙华  刘鸿雁  骆永明 《土壤》2013,45(2):233-238
采用盆栽试验,在连续12年高量施用污泥有机肥引起的Zn、Cd污染土壤上种植伴矿景天,并向土壤中添加亚氨基二琥珀酸(IDS)、乙二胺二琥珀酸三钠(EDDS)、硫磺等化学调控剂及稳定剂钙镁磷肥,研究调控剂对伴矿景天吸收Zn、Cd及施用钙镁磷肥对后茬蔬菜重金属污染风险的影响,以期探索出既可提高超积累植物重金属吸取修复效率又能降低后茬农作物重金属污染风险的植物修复模式.结果表明,施用120 mmol/kg硫粉(Sed+S)处理可显著增加伴矿景天地上部生物量,分别比未加调控剂的对照处理伴矿景天(Sed)、伴矿景天添加有机调控剂(Sed+OE)处理增加34.7%和47.9%.施用3 mmol/kg IDS则显著降低了伴矿景天地上部Cd浓度,比Sed处理降低了35.5%.施用钙镁磷肥稳定剂可有效降低后茬蔬菜苋菜体内Zn、Cd浓度,降幅为57%、63%,施用4 g/kg钙镁磷肥后土壤醋酸铵提取态Zn、Cd分别较对照降低66.1%、72.4%.可见,适当施用硫肥能促进伴矿景天的生长,添加钙镁磷肥降低土壤有效态重金属浓度,减少后茬作物污染风险.  相似文献   

2.
施肥能显著提高植物产量,改变土壤环境中元素的生物有效性,已成为植物修复过程中必要的强化措施。针对长期自然老化的重金属复合污染土壤,采用盆栽试验研究了KH2PO4、Ca(H2PO4)2、NaH2PO4和NH4H2PO4在P2O5 0~352 mg/kg时,对东南景天(Sedum alfredii H.)地上部锌(Zn)、镉(Cd)积累和养分元素吸收的影响。结果表明,外源施入磷酸二氢盐促进了东南景天生长,P2O5 352 mg/kg显著增加了地上部干物质重;地上部磷(P)含量显著增加,Zn含量随着P浓度的增加而显著升高,而Cd含量显著下降。磷肥降低了植物地上部氮(N)、中量元素钙(Ca)、镁(Mg)、硫(S)和微量元素锰(Mn)、铁(Fe)、铜(Cu)的含量,对钾(K)含量的影响不显著,地上部总碳(C)含量随P浓度增加而升高。一季收获后,东南景天地上部对Zn的提取量在施P2O5 88和352 mg/kg时显著增加,Cd提取量仅在高浓度时显著升高。KH2PO4和NH4H2PO4两种磷肥在施P2O5 352 mg/kg时对东南景天提取土壤Zn、Cd的效果最为明显,可在实际修复应用中使用。因此,合理磷酸盐施用能增加植物对C的生物固定,提高东南景天对Zn/Cd复合污染土壤的修复效率,缩短修复周期。  相似文献   

3.
为了检验重金属污染土壤间套种修复技术的长期实际应用效果,在大田条件下将东南景天(Sedum alfredii Hance)与玉米(Zea mays)间套种,并设置加入柠檬酸与EDTA混合添加剂的处理,以及单种东南景天作为对照,通过5次田间试验(约3 a),连续监测植物产量、重金属含量以及土壤重金属变化情况。结果表明,各处理土壤镉、锌随着试验的进行逐步下降,套种和套种+混合添加剂处理经过5次种植后土壤达到国家土壤环境质量二级标准,土壤镉从1.21~1.27 mg kg-1降为0.29~0.30 mg kg-1;锌从280~311 mg kg-1降为196~199 mg kg-1;但是土壤铅在试验前后没有显著变化。混合添加剂未表现出强化东南景天提取重金属的效果。东南景天重金属浓度和提取效率没有出现逐年下降的现象。单种东南景天地上部生物量在后4次试验中均较套种高,重金属的总提取量也较高。然而,间套种可生产符合饲料卫生标准的玉米籽粒,第4季达到食品卫生标准。从收获的东南景天计算得到的提取量占土壤镉下降的贡献率为32.5%~36.5%,玉米提取仅占0.47%~0.60%,其余63.0%~66.9%为淋溶等其他因素的作用;锌也相似。表明在该酸性(pH4.7)土壤上,Cd/Zn向下淋溶和东南景天提取均起重要作用。  相似文献   

4.
不同pH值混合螯合剂对土壤重金属淋洗及植物提取的影响   总被引:6,自引:1,他引:5  
为了得出混合螯合剂(MC)淋洗去除重金属的最佳pH值以及对后续植物提取重金属的影响,用Ca(OH)2将pH值为2.75的MC提高至pH值5、7和9,对重金属污染土壤进行了盆栽淋洗试验,而后种植东南景天(Sedum Alfredii),测定淋出液及植物重金属含量。另外,通过浸提试验研究了含有不同阳离子的MC对重金属淋洗效果的影响。结果表明,pH值为5和7的MC显著提高了Cd、Pb和Cu的淋出率。与Na+、K+离子相比,Ca2+的存在能够提高MC对重金属的淋洗去除。pH值7和9的MC淋洗土壤后提高了东南景天的生物量,但是降低东南景天中Cd和Zn的浓度,导致其植物提取率低于无淋洗剂对照。在化学淋洗+植物提取联合技术中,Cd和Zn主要靠植物提取去除,植物提取率分别可达土壤Cd的30%~40%和土壤Zn的6.5%~6.9%;而Pb和Cu主要靠混合螯合剂淋洗去除,去除率分别为2.3%~2.6%和1.6%~2.0%。综合来说,如果需要同时去除Cd、Zn、Pb和Cu,降低土壤重金属有效态含量,用pH值9的MC淋洗土壤联合植物提取较为合适。  相似文献   

5.
养分调控对超积累植物伴矿景天生长及锌镉吸收性的影响   总被引:9,自引:0,他引:9  
采用四因素三水平正交设计温室盆栽试验研究了N、P、K三因素不同水平对Zn、Cd超积累植物伴矿景天的生长及地上部Zn、Cd吸收性的影响。结果表明,增施N肥是伴矿景天地上部干重增加的主要因素,高N配施低P(200 mg/kg N,60 mg/kg P,不施K)处理的伴矿景天地上部干重达最大值31.2 g/盆(1.5 kg土/盆),是不施肥处理的3.15倍。增施K肥是提高伴矿景天地上部重金属尤其是Cd浓度和吸收量的主要影响因子,高量K处理比不施K处理地上部Cd浓度增加28.1%;低量施P也可提高伴矿景天的Zn吸取修复效率。综合考虑伴矿景天生物量及其对Zn、Cd的吸取效率,本试验条件下低量N、P肥配施高量K肥为最佳施肥处理(N1P1K2),种植伴矿景天一季对Zn、Cd的吸取量分别为11.2 mg/kg±0.1 mg/kg和0.12 mg/kg±0.02 mg/kg。  相似文献   

6.
高羊茅和黑麦草对污染土壤Cd,Pb,Zn的富集特征   总被引:7,自引:0,他引:7  
以潮褐土为供试土壤,通过模拟试验研究了高羊茅(Festuca arundinacea)和黑麦草(Lolium multif lorum)对复合污染土壤Cd,Pb,Zn的富集特点。结果表明,在土壤Cd,Pb,Zn复合污染处理条件下,高羊茅Cd,Pb,Zn的平均富集量,地上部分别为5.76,19.77,418.18 mg/kg,地下部分别为129.82,256.66,354.66 mg/kg;黑麦草Cd,Pb,Zn的平均富集量,地上部分别为5.57,26.13,467.18 mg/kg,地下部分别为114.53,155.98,513 48 mg/kg。通过方差分析,这两种草坪草的重金属富集量没有显著差异,并且富集规律呈现较为一致的特点。地上部的富集量和土壤重金属含量的离子冲量呈显著的线性相关。这两种草坪草对其重金属的富集能力顺序为:Zn>Cd>Pb,其中对Zn的吸收呈现富集植物的特性规律,当土壤Zn含量>400 mg/kg时,其转运系数>1,地上部对Zn的富集能力很强,可作为Zn污染土壤的修复植物。通过偏相关和多元回归分析表明,这两种草坪草在土壤Cd,Pb,Zn复合污染条件下均未产生复合效应。  相似文献   

7.
浙江典型铅锌矿废弃地优势植物调查及其重金属含量研究   总被引:11,自引:1,他引:10  
对浙江境内6个典型的铅锌矿废弃地进行了优势植物调查和植物体重金属含量的定量分析。本次调查共记录到高等植物36种,隶属26属22科,共42个样品。植物中重金属含量高低顺序为Cu相似文献   

8.
李柱  任婧  杨冰凡  王松凤  吴龙华  骆永明 《土壤》2012,44(4):626-631
利用植物生长室水培试验和温室土培盆栽试验相结合,研究了Cu对Zn、Cd超积累植物伴矿景天生长及Zn、Cd吸收性的影响。水培试验结果显示,0.31~50μmol/L Cu处理14天对伴矿景天生长及对Zn、Cd吸收性没有显著影响;但100μmol/L Cu处理显著抑制植物生长,降低地上部Zn、Cd及根中Cd浓度,对根中Zn浓度变化没有显著影响。盆栽试验结果发现,在土壤Cu仅为3.61 mg/kg时伴矿景天生长不良,外加Cu显著促进其生长并随Cu浓度升高效应增加;但施用3 mmol/kgEDDS和再次外加250 mg/kg Cu处理使伴矿景天因体内Cu积累量过高而导致明显毒害,地上部Cu最高达1 068 mg/kg。可见低量Cu处理可促进伴矿景天生长,利于植物对土壤Zn、Cd的吸取修复,但土壤中Cu浓度过高将抑制Zn、Cd超积累植物的生长,降低其Zn、Cd吸收能力,在利用该Zn、Cd超积累植物修复高Cu的Zn和Cd污染土壤时应采取适当措施降低Cu毒害效应。  相似文献   

9.
3种有机酸对伴矿景天修复效率及土壤微生物数量的影响   总被引:2,自引:0,他引:2  
伴矿景天(Sedumplumbizincicola)是一种Cd和Zn的超积累植物,常用于Cd污染土壤的植物修复。有机酸能够提高土壤重金属的有效性,促进植物对重金属的积累,对重金属污染土壤的植物修复效率具有强化作用,并对土壤微生物数量有重要影响。以河潮土和红黄泥为供试土壤,探讨了乙二胺四乙酸(EDTA)、柠檬酸、草酸对伴矿景天修复效率和土壤微生物数量的影响。结果表明,有机酸能显著提高土壤有效态Cd含量,柠檬酸处理的效果最好,河潮土和红黄泥中有效态Cd含量较单种伴矿景天分别增加72.73%,12.99%(P<0.05);伴矿景天地上部Cd含量在河潮土和红黄泥中以EDTA处理最高,在河潮土和红黄泥中分别比单种伴矿景天增加99.24%和33.32%;与单种伴矿景天相比,添加有机酸处理河潮土和红黄泥中伴矿景天修复效率显著提高。添加有机酸比单种伴矿景天显著增加土壤中微生物数量,其中柠檬酸处理河潮土中细菌和真菌数量分别增加34.38%和68.42%(P<0.05),草酸处理红黄泥中放线菌数量增加150.00%。研究结果可为重金属污染土壤的植物强化修复提供理论支撑。  相似文献   

10.
水分特征对伴矿景天生长和重金属吸收性的影响   总被引:10,自引:1,他引:9  
利用盆栽试验研究了水分特征对伴矿景天生长和重金属吸收性的影响.结果表明:在70% 土壤最大田间持水量(70%WHC)处理下,伴矿景天生长最好,其地上部鲜重显著高于其他处理;70%WHC处理伴矿景天对重金属吸收能力最强,其茎中Zn的浓度显著高于其他处理,茎中Cd的浓度分别比35%WHC、100%WHC、淹水处理高27.1%、29.0%、63.1%;叶中的Zn浓度表现出与茎中相同趋势,叶中Cd的浓度与茎中不同,以100%WHC处理最高.70%WHC处理下,植物提取Zn、Cd的效率最高,其修复效率均显著高于其他处理.这些结果表明,土壤水分状况在土壤重金属污染伴矿景天植物吸取修复中起着重要作用.  相似文献   

11.
Phytoextraction is a promising technology that uses hyperaccumulating plants to remove inorganic contaminants, primarily heavy metals, from soils and waters. A field experiment was conducted to evaluate impacts of a mixture of chelators (MC) upon the growth and phytoextraction of heavy metals by the hyperaccumulator Sedum alfredii Hance in a co-planting system in a paddy soil that was historically irrigated with Pb and Zn contaminated mining wastewaters. The co-planting system used in this study was comprised of a Zn- and Cd-hyperaccumulator (S. alfredii) and a low-accumulating crop (Zea mays). Results showed that yields of S. alfredii were significantly increased with the addition of the MC and by co-planting with Z. mays. Our study further revealed that concentrations of Zn, Pb, and Cd in the corn grains of Z. mays conform to the Chinese hygiene standards for animal feeds and in the other parts of Z. mays conform to the Chinese organic fertilizer standards. The uptake of Zn, Cd, and Pb by S. alfredii was significantly increased with the addition of MC. The uptake of Zn by S. alfredii was also significantly enhanced by co-planting with Z. mays, but the interaction between MC and co-planting was not significant, meaning the effects of the two types of treatments should be additive. When the MC was applied to the co-planting system in the soil contaminated with Zn, Cd, and Pb, the highest phytoextraction rates were observed. This study suggested that the use of the hyperaccumulator S. alfredii and the low-accumulating crop Z. mays in the co-planting system with the addition of the MC was a more promising approach than the use of a single hyperaccumulator with the assistance of EDTA (ethylenediaminetetraacetic acid). This approach not only enhances the phytoextraction rates of the heavy metals but also simultaneously allows agricultural practices with safe feed products in the metal-contaminated soils.  相似文献   

12.
Phytoextraction of Heavy Metals by Eight Plant Species in the Field   总被引:1,自引:0,他引:1  
Phytoremediation is an in situ, cost-effective potential strategy for cleanup of sites contaminated with trace metals. Selection of plant materials is an important factor for successful field phytoremediation. A field experiment was carried out to evaluate the phytoextraction abilities of six high biomass plants (Vertiveria zizanioides, Dianthus chinensis, Rumex K-1 (Rumex upatientia × R. timschmicus), Rumex crispus, and two populations of Rumex acetosa) in comparison to metal hyperaccumulators (Viola baoshanensis, Sedum alfredii). The paddy fields used in the experiment were contaminated with Pb, Zn, and Cd. Our results indicated that V. baoshanensis accumulated 28 mg kg?1 Cd and S. alfredii accumulated 6,279 mg kg?1 Zn (dry weight) in shoots, with bioconcentration factors up to 4.8 and 6.3, respectively. The resulting total extractions of V. baoshanensis and S. alfredii were 0.17 kg ha?1 for Cd and 32.7 kg ha?1 for Zn, respectively, with one harvest without any treatment. The phytoextraction rates of V. baoshanensis and S. alfredii for Cd and Zn were 0.88 and 1.15%, respectively. Among the high biomass plants, R. crispus extracted Zn and Cd of 26.8 and 0.16 kg ha?1, respectively, with one harvest without any treatment, so it could be a candidate species for phytoextraction of Cd and Zn from soil. No plants were proved to have the ability to phytoextract Pb with high efficiency.  相似文献   

13.

Purpose

We aimed to examine the effects of spatial heterogeneity on Zn/Cd removal efficiency by the Zn/Cd hyperaccumulator Sedum alfredii grown on agricultural soil contaminated with mine waste.

Materials and methods

Field-collected metal-contaminated agricultural soils were arranged in pots either homogeneously or heterogeneously in “half” or “quarter” patterns. Young shoots of S. alfredii were grown on these substrates in a greenhouse.

Results and discussion

The efficiency of Zn and Cd removal from soil by S. alfredii was highest in the “quarter” pattern heterogeneous treatment, in which the percentages of total soil Zn and Cd extracted were 8.02 and 7.27, respectively. Comparing the two heterogeneous treatments, the amounts of Zn and Cd accumulated in S. alfredii shoots were significantly greater in the “quarter” pattern heterogeneous treatment than in the “half” pattern treatment.

Conclusions

We concluded that the efficiency of Zn/Cd removal increased as the scale of spatial heterogeneity decreased from “half” to “quarter”. These results may have important implications for the efficiency of phytoremediation by hyperaccumulators in the field.  相似文献   

14.

Purpose  

Soil contamination by multiple organic and inorganic contaminants is common but its remediation by hyperaccumulator plants is rarely reported. The growth of a cadmium (Cd) hyperaccumulator Sedum alfredii and removal of contaminants from Cd and polycyclic aromatic hydrocarbons (PAHs) co-contaminated soil were reported in this study.  相似文献   

15.

Purpose

Effects of phytoextraction by Sedum alfredii H., a native cadmium hyperaccumulator, on metal removal from and microbial property improvement of a multiple heavy metals contaminated soil were studied under greenhouse conditions.

Materials and methods

A rhizobox experiment with an ancient silver-mining ecotype of S. alfredii natively growing in Zhejiang Province, China, was conducted for remediation of a multiple heavy metals contaminated soil. The rhizobox was designed combining the root-shaking method for the separation of rhizospheric vs near-rhizospheric soils and prestratifying method for separation of sublayers rhizospheric soils (0–10 mm from the root) and bulk soil (>10 mm from the root). Soil and plant samplings were carried out after 3 and 6 months of plant growth.

Results and discussion

Cadmium (Cd), zinc (Zn), and lead (Pb) concentrations in shoots were 440.6, 11,893, and 91.2 mg kg?1 after 6 months growth, and Cd, Zn, and Pb removed in the shoots were 0.862, 25.20, and 0.117 mg/plant. Microbial biomass C, basal respiration, urease, acid phosphatase, and invertase activities of the rhizospheric soils were significantly higher than that of unplanted soils after 6 months growth. Microbial biomass carbon (MBC) of 0–2 mm and basal respiration (BR) rate of 0–8 mm sublayer rhizospheric soils were significantly higher than that of bulk soil after 6 months growth. So were the three enzyme activities of 0–4 mm sublayer rhizospheric soils. BR rate and urease were significantly negatively correlated with soluble Cd, so were MBC, acid phosphatase, and intervase activities with soluble Zn, MBC, BR rate, and three enzyme activities with soluble Pb.

Conclusions

Harvesting shoots of S. alfredii could remove remarkable amounts of Cd, Zn, Pb, and lower water-soluble Cd, Zn, and Pb concentrations in the rhizospheric soils. MBC, BR rate, and enzyme activities of the metal polluted soil, especially the rhizospheric soils increased with phytoextraction process, which is attributed to the stimulation of soil microbes by planting as well as the decrease in soil-soluble metal concentration.  相似文献   

16.
刈割对六种牧草吸收重金属和修复污染土壤潜力的研究   总被引:1,自引:0,他引:1  
The pollution of soils by heavy metals has dramatically increased in recent decades. Phytoextraction is a technology that extracts elements from polluted soils using hyperaccumulator plants. The selection of appropriate plant materials is an important factor for successful phytoextraction in field. A field study was conducted to compare the efficiency of six high-biomass forage species in their phytoextraction of heavy metals (Cd, Pb and Zn) from contaminated soil under two harvesting strategies (double harvesting or single harvesting). Among the tested plants, amaranth accumulated the greatest amounts of Cd and Zn, whereas Rumex K-1 had the highest amount of Pb in the shoot under both double and single harvesting. Furthermore, double harvesting significantly increased the shoot biomass of amaranth, sweet sorghum and sudangrass and resulted in higher heavy metal contents in the shoot. Under double harvesting, the total amounts of extracted Cd, Pb and Zn (i.e., in the first plus second crops) for amaranth were 945, 2 650 and 12 400 g ha-1, respectively, the highest recorded among the six plant species. These results indicate that amaranth has great potential for the phytoextraction of Cd from contaminated soils. In addition, the double harvesting method is likely to increase phytoextraction efficiency in practice.  相似文献   

17.
植物吸取修复及钝化处理对后茬水稻镉吸收的影响   总被引:2,自引:0,他引:2  
采集湖南湘潭县某地镉(Cd)污染酸性农田土壤及其经伴矿景天分别吸取修复两季和三季后的土壤,采用盆栽试验研究了经伴矿景天修复及钝化改良与否对土壤pH、有效态Cd、Zn以及水稻生长和稻米Cd、Zn浓度的影响。结果表明:未改良的处理,随着修复次数的增加,土壤pH显著降低,降低幅度为0.26~0.38个单位;且修复两季、三季土壤CaCl_2提取态Cd浓度较未修复土壤分别降低19.4%、24.0%;修复后土壤种植水稻品种W184,其糙米中Cd浓度显著降低,但依然超标;修复三季土壤种植低积累水稻品种IRA7190,其糙米中Cd由0.47 mg/kg降为0.03 mg/kg。施加钝化剂海泡石和石灰(10 g/kg+1 g/kg)后,修复两季、三季土壤的pH显著升高,较未施钝化剂处理土壤pH分别提高0.95、0.72;土壤CaCl_2提取态Cd浓度分别降低79.8%、79.5%;修复两季、三季土壤上水稻W184糙米的Cd浓度与未施加钝化剂相比,分别降低27.3%、44.4%,均降至国家食品安全限值0.2 mg/kg以下;无论是否添加钝化剂,伴矿景天吸取修复三季的土壤上水稻IRA7190糙米中Cd浓度均仅0.03 mg/kg。  相似文献   

18.
ABSTRACT

The study demonstrated S. alfredii is an excellent cadmium (Cd)/zinc (Zn) hyperaccumulator as Cd and Zn concentrations in leaves reached 2,183 and 13,799 mg kg?1 DW, respectively. There was a significant increase in root morphological parameters induced by 50 and 500 μM Zn supplement; however, a sharp decrease in these parameters occurred when treated with 100 μM Cd +1000 μM Zn. The inhibited root dehydrogenase activity in 100 μM Cd treated plants was restored to control levels when supplemented with 500 μM Zn. Moderate Zn supplement did not produce significant changes in (malondialdehyde) MDA concentrations as compared with those treated with Cd alone. Variations of the antioxidative enzymes proved an ineffective role in coping with metal-stress in S. alfredii. Combined Cd and Zn treatment significantly enhanced ascorbic acid (AsA) and glutathione (GSH) contents in leaves of S. alfredii, as compared with those treated with Cd alone. Thus, Zn may rely on the involvement of GSH in detoxification and tolerance.  相似文献   

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