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1.
印度芥菜对土壤中难溶态Cd的吸收及活化   总被引:19,自引:0,他引:19       下载免费PDF全文
通过根际袋法土培试验,研究了印度芥菜对石灰性土壤中难溶态Cd的吸收、活化和体内累积规律.结果表明,印度芥菜能活化、吸收石灰性土壤中的难溶态Cd,随着土壤中加入CdCO3量的增加,印度芥菜地上部和根系中Cd含量显著增加.印度芥菜吸收的Cd 71%~82%累积在地上部;在土壤中加入难溶态Cd 5~40mg/kg条件下,印度芥菜对土壤的净化率为0.83%~1.25%.  相似文献   

2.
油菜作为超累积植物修复镉污染土壤的潜力   总被引:98,自引:0,他引:98       下载免费PDF全文
以超累积植物印度芥菜为参比植物,通过温室盆栽土培试验研究了筛选出的两种芥菜型油菜的吸Cd特征和作为超累积植物修复Cd污染土壤的潜力.试验结果表明,土壤中Cd浓度在0~20mg/kg范围内,油菜溪口花籽的地上部生物量、地上部吸Cd量和对土壤的净化率均明显高于朱苍花籽油菜和参比超累积植物印度芥菜.体内Cd浓度也和印度芥菜相当,其吸收的Cd 88%以上分布在地上部且有较强的耐Cd毒能力.油菜溪口花籽具备超累积植物的特征且有较强的修复Cd污染土壤的能力.  相似文献   

3.
不同生物之间存在复杂相互作用,构建多元生物协同修复有利于提高修复效果.微生物群落繁殖快,适应性强以及抗逆性等优势在土壤重金属污染治理中发挥着重要作用.以巨大芽孢杆菌(Bacillus megaterium)为供试菌株,以包心芥菜[Brassica juncea(L.) Czerniak.]为供试植物,探究二者联合作用下修复Cd和Zn污染土壤的可行性.首先开展60 d室内培养试验,明确巨大芽孢杆菌活化土壤Cd和Zn含量的潜力及改善土壤质量的可行性;进而通过盆栽试验探究巨大芽孢杆菌对包心芥菜富集重金属的影响.结果表明室内培养条件下,巨大芽孢杆菌能够显著降低土壤pH值,土壤有效态Cd和Zn含量显著增加,与对照相比,增幅分别为24%~47%和11%~13%;同时土壤磷酸酶(ALP)、蔗糖酶(SU)和脲酶(UR)活性明显改善.盆栽试验结果表明,与对照相比,接菌处理显著提高了包心芥菜生物量,增幅为10%~23%.同时植物富集Cd和Zn含量升高:植物地上和地下部分Cd富集浓度分别为对照组的1.61~1.70倍和1.05~1.15倍;不同部位对Zn的富集浓度分别为对照的1.38~1.61倍和1.47~1.53倍.相关性分析结果表明,土壤pH值是引起土壤重金属有效态活性和酶活性改变的关键因素.接菌处理下,植物过氧化氢酶(CAT)活性对增强植物抗逆性更为显著.试验结果初步证实了巨大芽孢杆菌-包心芥菜联合修复Cd和Zn污染土壤的可行性.  相似文献   

4.
秋华柳(Salix variegate Franch.)因具有良好的重金属耐受和积累能力,常被作为重金属污染土壤修复工程物种.通过盆栽模拟试验,分析了不同浓度外源草酸和酒石酸处理下土壤Cd形态的变化和秋华柳Cd含量的积累特征,以探究外源有机酸在Cd污染土壤植物修复中的应用潜力.结果表明:添加外源酒石酸可显著降低土壤非有效性Cd含量,增加土壤中以可交换态Cd为主的有效性Cd含量,促进了秋华柳对Cd的积累,同时也显著提升了植株的富集系数,其中添加5 mmol/kg酒石酸的处理效果最佳.与CK相比,添加5 mmol/kg外源酒石酸可显著增加秋华柳根、茎和叶中的Cd积累量,地上、地下部分和全株的Cd积累量分别提升了62.2%、75.9%和78.4%,地上和地下部分富集系数分别提升了173.0%和178.8%.添加外源草酸对土壤有效性Cd含量没有显著影响,秋华柳根、茎和叶的Cd含量和积累量无明显提升.研究显示,添加较低浓度的酒石酸更有利于增加土壤中可交换态Cd含量和有效性Cd含量,促进秋华柳对土壤中Cd的吸收和积累,增强秋华柳对Cd污染土壤的修复能力,可应用于Cd污染土壤的植物修复.   相似文献   

5.
通过盆栽实验,采用镉(Cd)低积累油菜单作和低积累油菜-超富集植物孔雀草间作两种种植模式,设置施用巯基坡缕石和硫酸钾以及叶面喷施硫酸锰的调控处理,研究不同处理对单作和间作模式下植物生长与Cd累积以及土壤Cd形态的影响.结果表明:施用巯基坡缕石可显著降低油菜和孔雀草地上部Cd含量、油菜Cd累积量、Cd提取率以及土壤有效态Cd含量.施用0.4g/kg的硫酸钾显著增加孔雀草Cd累积量,降低间作油菜地上部Cd含量,使间作油菜根际土壤可交换态Cd比例减少,残渣态Cd比例增加.喷施0.6g/L的硫酸锰使单作油菜地上部Cd含量、Cd累积量以及Cd提取率显著降低.从降低油菜地上部Cd含量保障安全生产,同时不影响Cd植物提取修复角度综合考虑,在间作模式下,施用0.4g/kg的硫酸钾处理调控效果最佳.  相似文献   

6.
本文对贵州兴仁某处煤矿区旧址自然定居的优势蕨类7科10属(分别为蕨菜、华中介蕨、栗蕨、狗脊、芒萁、顶芽狗脊、耳羽岩蕨、光里白、蜈蚣草和岭南铁角蕨)及其根际土壤重金属(Cd、Hg和As)含量进行了调查分析。结果表明,植物根际土壤Cd含量为0. 03~1. 9 mg/kg,超过了国家土壤二级标准; Hg和As含量分别为0. 5~15 mg/kg和537~5 330 mg/kg,均超过了国家土壤三级标准,其中As超标严重。蕨类植物中蜈蚣草富集As效果最佳,地上部分As含量达1 710 mg/kg,转运系数为1. 4。岭南铁角蕨地上部分Cd含量可高达1 490μg/kg,转运系数达56,具有极强的Cd富集能力。通过相关性分析发现,蕨类吸收Cd和As的量与根际土p H呈显著正相关关系(P0. 05),吸Hg量则与p H呈显著负相关(P0. 05)。土壤中重金属的可交换态与蕨类对重金属的吸收总量均呈显著正相关关系(P0. 05)。单因子污染指数法计算结果显示,废渣堆附近土壤Hg和As污染十分严重,其中As污染已扩散到下游区域。潜在生态风险程度评估表明,该煤矿区重金属Cd、Hg和As复合污染严重,其高风险程度应引起相关部门重视。  相似文献   

7.
利用植物富集土壤中重金属,是进行重金属污染土壤生态修复的一种重要手段。重金属抑制植物的生长发育,导致植株矮小、生物量较低,是植物生态修复的难点。通过盆栽试验,探究根际促生菌(Lelliottia sp.Kz9)和100 nm纳米零价铁(nZVI100)单一或联合施用对不同浓度镉污染土壤中印度芥菜的生长及富集重金属的影响。结果表明:nZVI100在低浓度(5 mg/kg)镉胁迫下可显著促进印度芥菜的生物量、根系发育,以及地上部分镉和铁的吸收(p<0.05),nZVI100在高浓度(20 mg/kg)镉胁迫下可显著提高印度芥菜的生物量、根系发育和地上部分铁的吸收(p<0.05);联合施用Kz9和nZVI100对不同浓度镉污染土壤印度芥菜叶片中叶绿素含量和铁吸收均有显著促进作用(p<0.01);不同浓度镉污染土壤中印度芥菜受Kz9和nZVI100的正向影响依次为nZVI100处理组>Kz9与nZVI100联合处理组&...  相似文献   

8.
利用实际镉污染土壤(含镉0.08~1.89 mg/kg)进行盆栽试验,研究FeSO4、Fe(2SO4)3、EDTA.Na2Fe 3种铁肥和底施、追施2种施肥方式对印度芥菜(Brassica juncea)镉积累的影响。结果表明:施用Fe(2SO4)3的印度芥菜生物量与对照非常接近,而施用FeSO4和EDTA.Na2Fe的印度芥菜生物量均明显高于对照;底施EDTA.Na2Fe时,印度芥菜地上部Cd含量最低,比对照低76%~85%;追施Fe(2SO4)3时,印度芥菜地上部Cd含量、吸Cd量、对土壤中Cd的净化率均最高,分别比对照提高48%~236%、52%~63%、110%~260%。研究认为底施EDTA.Na2Fe等络合态亚铁肥,可用于改善食用印度芥菜的品质;追施Fe(2SO4)3时,可用于强化印度芥菜对镉污染土壤的修复。为铁基复合肥生产及其在镉污染土壤修复和无公害农产品生产中的应用提供了依据。  相似文献   

9.
采用根袋土培试验,研究了锌、镉单一及复合污染对重金属富集植物黑麦草生长、锌镉积累、根分泌物及根际Zn、Cd形态的影响.结果表明,锌镉共存下(8 mmol/kg Zn+2 mmol/kg Cd),黑麦草对锌、镉的吸收为协同效应;仅镉污染时(2 mmol/kg Cd),镉对植株吸收锌为抑制效应.黑麦草吸收的锌、镉主要集中在地上部,以锌、镉复合污染时植株地上部对锌、镉的富集量最大,分别达到3 108.72、73.97 mg/kg,具有作为土壤重金属锌、镉污染植物修复材料的潜力.根际的松结合态锌、镉(交换态、碳酸盐结合态和铁锰结合态)含量大于其非根际的松结合态锌、镉含量.Cd污染和Zn、Cd复合污染的根际和非根际土壤镉形态均以交换态>碳酸盐结合态>铁锰结合态>残渣态>有机结合态.Zn污染及Zn、Cd复合污染根际和非根际土壤各锌形态以铁锰结合态>碳酸盐结合态>残渣态>有机结合态>交换态,而Cd污染的根际和非根际的锌形态则以残渣态>铁锰结合态>有机结合态>碳酸盐结合态>交换态.Zn、Cd污染促进了黑麦草根系氨基酸的分泌,降低了根际土壤的pH值,以Zn、Cd复合污染根际土壤氨基酸总量最大,分别为对照、Zn和Cd污染的1.95、1.54和1.40倍,根际土壤的pH值最低(5.18).根际氨基酸含量在重金属胁迫下明显增加,可能与黑麦草适应重金属胁迫有关.根际pH值高于非根际是根际Zn、Cd有效性大于非根际的重要原因.  相似文献   

10.
通过盆栽试验,研究铁锰改性生物炭(BCFM)对水稻Cd吸收和土壤微生物群落结构的影响.结果表明,BCFM可有效降低水稻对Cd的吸收,改变土壤微生物群落结构.与对照相比,添加0.5~2g/kg BCFM后土壤有机质、土壤阳离子交换量、土壤总Fe和总Mn无显著变化;而添加4g/kg BCFM后,土壤有机质、土壤阳离子交换量、土壤总Fe和Mn含量分别显著(P<0.05)提高了13.6%、13.58%、5.0%和12.1%,同时土壤中有效态Cd含量显著(P<0.05)降低67.9%,且水稻茎、叶和糙米中Cd含量分别显著(P<0.05)降低74.3%、44.9%和84.9%.添加BCFM后,水稻根际土壤Firmicutes、Proteobacteria等门水平物种的相对丰度提高,而Bacteroidota、Patescibacteria、Desulfobacterota和Nitrospirae等门水平物种的相对丰度降低.热图分析结果表明,BCFM可...  相似文献   

11.
三叶鬼针草幼苗对镉污染的耐性及其吸收积累特征研究   总被引:18,自引:3,他引:15  
孙约兵  周启星  王林  刘维涛  刘睿 《环境科学》2009,30(10):3028-3035
通过盆栽实验研究了镉(Cd)胁迫下三叶鬼针草(Bidens pilosaL.)幼苗的耐性能力(包括生长反应和生理生化特性)以及对Cd的吸收积累特征.结果表明,当土壤中投加的Cd浓度为≤32 mg/kg时,三叶鬼针草植物的生长和发育没有受到抑制,与对照相比,地上部和根部生物量分别增加了32.4%~44%和29.1%~57.6%,其中,当Cd处理浓度为8 mg/kg时,地上部干重达到最大值,为0.22 g/pot.在不同Cd处理下,叶绿素(Chl)和可溶性蛋白(SP)含量下降,分别比对照处理降低了23.3%和41.5%;超氧化物歧化酶(SOD)活性随着Cd浓度增加先有所抑制,后逐渐增大;过氧化物酶(POD)活性和丙二醛(MDA)含量随Cd处理浓度增加而增大,分别比对照增加了1.2~6.6和1.1~1.5倍.然而,当Cd浓度为50~100 mg/kg时,显示出对三叶鬼针草幼苗的生长发育和生理生化特征都产生了一定的负效应,说明三叶鬼针草对Cd污染的耐性能力具有一定的阈值.在梯度实验中,植物体内Cd的富集系数和转移系数都大于1.0.当土壤中Cd含量达到100 mg/kg时,地上部Cd含量达到119.1 mg/kg,具备...  相似文献   

12.
为探究印度芥菜(Brassica juncea)和香根草(Vetiveria zizanioides L.)对Pb污染土壤的修复效能和作用途径,采用Pb污染土壤〔w(Pb)为400~2 000 mg/kg〕进行为期30 d的盆栽试验,分析植物对Pb的耐受性、积累能力和固定效果.结果表明:① 印度芥菜和香根草对Pb的积累主要集中在根部,两种植物根部累积的w(Pb)分别为206.62~902.40和288.42~1 102.47 mg/kg,单株植物的Pb积累量分别为70.75~138.31和99.09~220.49 μg,香根草对Pb污染土壤的修复效能高于印度芥菜. ② 印度芥菜和香根草对Pb的去除率随土壤中w(Pb)的增加而降低,对Pb的固定率则随土壤中w(Pb)的增加而增加,二者对Pb的去除率最大值分别为1.02%和1.78%,对Pb的固定率可达11.22%和16.78%,两种植物对Pb污染土壤修复的主要途径为植物固定. ③ 主成分分析表明,w(脯氨酸)对植物Pb积累过程具有重要作用.研究显示,相比于印度芥菜,香根草更适用于Pb污染土壤的植物修复.   相似文献   

13.
A root-bag experiment was conducted to study the effects of insoluble Zn, Cd and ethylenediaminetetraacetic acid (EDTA) on the plant growth, activities of antioxidant enzymes, proline, glutathione (GSH), water-soluble proteins and malondialdehyde (MDA) of Vetiveria zizanioides, and its uptake capacity of Zn and Cd.The results showed that plant growth of V.zizanioides was inhibited by Zn and Cd.The shoot dry weight (SDW) and root dry weight (RDW) decrease by 0.3%, 8.0%, 9.4% and 10.4%, 15.1%, 24.2% compared to the control without EDTA addition, respectively.After adding EDTA, shoot and root dry weight decreased over 10% and 15% compared to results in the absence of EDTA, respectively.The toxicity from insoluble Zn and Cd in soil on SDW and RDW of V.zizanioides was in order: Zn+Cd > Cd > Zn.The activities of superoxide dismutase (SOD), peroxidase (POD) and catalase (CAT), and contents of MDA and proline significantly increased, while the contents of GSH and water-soluble proteins markedly decreased with increasing Zn and Cd toxicity.With EDTA, shoot and root Zn concentrations increased in the Zn treatment by 7.3% and 37.4% compared to the plants grown in absence of EDTA.Shoot and root Cd concentrations in the combined Zn and Cd treatment with EDTA increased by 18.6% and 391.9% compared to the treatment without EDTA.However, Zn and Cd concentrations in shoot and roots decreased in the Cd treatment compared to the plants grown in absence of EDTA, with exception of root Cd concentration in the presence of EDTA).  相似文献   

14.
两种不同镉富集能力油菜品种耐性机制   总被引:1,自引:0,他引:1  
利用水培试验研究了不同浓度镉(cadmium,Cd)胁迫条件下(0、2和5 mg·L~(-1))两种Cd富集能力油菜品种[秦油1号(QY-1)和三月黄(SYH)]生长状况与Cd富集特征的差异,并从Cd亚细胞区隔化和抗氧化酶活性等角度探索了两种油菜Cd富集能力的差异机制,并通过田间试验进行验证.结果表明,水培条件下,这两种油菜在Cd胁迫下生长均未受到明显的抑制.在低浓度Cd(2 mg·L~(-1))处理下,两种油菜地上部Cd含量无显著差异,在高浓度Cd(5 mg·L~(-1))胁迫下SYH的地上部和根部Cd含量均显著高于QY-1,分别提高32. 05%和99. 57%,同时其根部生物富集系数(BCF)也较QY-1显著提高.对两种油菜叶片中Cd亚细胞区隔化研究结果表明,随着Cd处理浓度的增加,QY-1和SYH叶片中Cd在热稳定蛋白和镉富集颗粒组分的分布分别提高了143. 69%、118. 91%和63. 34%、118. 91%,由此可见将Cd区隔在热稳定蛋白和镉富集颗粒体等重金属解毒组分是油菜在亚细胞水平上的重要解毒机制.同时,高浓度Cd胁迫下SYH叶中Cd在细胞碎屑组分的含量达QY-1的4. 41倍,可知Cd在细胞碎屑组分中的分布是导致两种油菜Cd富集能力差异的重要机制.结合对两种油菜抗氧化酶活性研究结果,发现抗氧化酶系统可能是QY-1应对高浓度Cd胁迫的重要解毒机制,而SYH则更多地通过将Cd区隔在金属低活性的亚细胞组分来减轻其毒性.田间试验结果验证表明,SYH地上部和地下部Cd含量均显著高于QY-1,分别是QY-1的2. 34和1. 43倍.综上所述,SYH具有更高的Cd提取量和富集能力,具有应用于中轻度Cd污染农田修复的潜力.  相似文献   

15.
Accumulation of copper (Cu) and cadmium (Cd) in six rice cultivars (94D-22, 94D-54, 94D-64, Gui630, YY-1 and KY1360) was evaluated through exposure to heavy metal contamination (100 mg/kg Cu, 1.0 mg/kg Cd, and 100 mg/kg Cu + 1.0 mg/kg Cd) in a greenhouse. The dry weight of shoot and root, concentrations of Cu and Cd in plant tissues and the Cu, Cd, P, Fe concentrations in the root surface iron plaques were analyzed eight weeks later after treatment. The results indicated that the plant biomass was mainly determined by rice genotypes, not Cu and Cd content in soil. Separated treatment with Cu/Cd increased each metal level in shoot, root and iron plaques. Soil Cu enhanced Cd accumulation in tissues. In contrast, Cu concentrations in shoot and root was unaffected by soil Cd. Compared to single metal contamination, combined treatment increased Cd content by 110.6%, 77.0% and 45.2% in shoot, and by 112.7%, 51.2% and 18.4% in root for Gui630, YY-1 and KY1360, respectively. The content level of Cu or Cd in root surface iron plaques was not affected by their soil content. Cu promoted Fe accumulation in iron plaques, while Cd has no effect on P and Fe accumulation in it. The translocation of Cu and Cd from iron plaques to root and shoot was also discussed. These results might be beneficial in selecting cultivars with low heavy metal accumulation and designing strategies for soil bioremediation.  相似文献   

16.
Indian mustard (Brassica juncea (L.) Czern.) has shown good potential for the phytoremediation of soil contaminated with heavy metals. However, there is little information about the speciation and bioaccessibility of heavy metals in soil during the decomposition of metal-rich Indian mustard leaves. Incubation experiments (1-, 3-, and 6-month) were carried out in Beijing and Hunan soil with metal-rich Indian mustard leaves addition (1% and 3%) and the e ects of mustard leaves addition on the speciation and bioaccessibility of heavy metals were studied. The results showed that the addition of mustard leaves led to significant increases in pH and DOC in the Hunan soil. Both 1% and 3% of mustard leaf amendment caused the percentage of the exchangeable (F1), precipitated with carbonates (F2), bound to Fe/Mn oxides (F3) and bound to organic matter (F4) fractions of Pb and Cd to increase dramatically, while the percentage of the residual fraction (F5) of Cd and Pb significantly dropped in both Beijing and Hunan soils. Mustard leaf addition caused the bioaccessibility of Pb to decrease in the gastric phase, whereas the values increased in the small intestinal phase. The Cd bioaccessibility increased with mustard leaf addition in both the gastric and small intestinal phases. In conclusion, the metal-enriched mustard leaves addition induces Pb and Cd concentrations and their mobility increasing in the Beijing and Hunan soils. Therefore, heavy metal risk in metal-enriched plant leaves should be considered in phytoremediation system in which heavy metal might be brought back to soil and changed over time.  相似文献   

17.
超富集植物在营养元素生物强化及重金属污染植物修复技术领域有重大应用前景。通过野外调查和栽培实验,研究了碎米荠植物对硒镉的吸收富集特征。研究表明:野生碎米荠中Se含量达数百mg/kg,叶片中Se最高含量为1 365 mg/kg。地上部Se的生物富集系数在2.8~43.8的范围内,大部分超过10;生物转移系数在0.46~1.88之间,大部分大于1。地上部Cd含量都超过了100 mg/kg,叶中的Cd含量大部分在400~800 mg/kg之间。富集系数都大于1,且农田及小溪流域植株地上部Cd的生物富集系数高达几十甚至上百,Cd的生物转移系数大部分超过1。露天栽培条件下,碎米荠中的硒镉含量随盆栽土壤中硒镉浓度的上升呈现出先增加后降低的特征,当Se含量为50 mg/kg时植物中的Se含量最高,此时地上部Se含量为995 mg/kg,地下部Se含量1 100 mg/kg。当Cd浓度为80 mg/kg时,植株当中Cd含量最高,地上部和地下部中的Cd含量分别高达550 mg/kg、337 mg/kg。研究认为湖北渔塘坝发育的碎米荠植物是硒镉多元素超富集植物,在硒镉生态环境污染修复方面具有重大应用前景。  相似文献   

18.
Two pot experiments were conducted under greenhouse conditions to investigate the characteristics of Cd uptake and accumulation by two Cd accumulator oilseed rape varieties and one Indian mustard grown on a loamy soil that had been artificially contaminated by different amounts of CdSO4 (0, 20, 40, 60, 80, 100 mg/kg soil). The relationship between shoot Cd uptake of the two oilseed rape cultivars and the soil Cd concentrations could be simulated via quadratic equations. The curve showed that maximum shoot Cd uptake of Indian mustard was 314.7μg/pot at soil Cd concentration of 87.8 mg/kg, while maximum uptake of the variety Xikou Huazi was 543.3 μg/pot at soil Cd concentration of 69.1 mg/kg and that of the variety Zhongyou Za-lhao was 576.7 μg/pot at soil Cd concentration of 84.0 mg/kg, suggesting that shoot Cd uptake ability of the two Cd accumulator oilseed rapes was significantly higher than that of the Indian mustard. Xikou Huazi had higher phytoremediation potential for Cd contaminated soil. Shoot Cd accumulation ability of the two Cd accumulator oilseed rapes was correspond and Cdwas easier translocated to the shoot than hyperaccumulator Indian mustard as comparation plant. Shoot Cd distribution pattern showed consistent and significant reduction from older leaves to younger ones of two oilseed rapes and Indian mustard. Cd uptake by oilseed rapes in growth prophase was higher than that of growth anaphase.  相似文献   

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