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1.
Sesbania rostrata is renowned for its stem nodulation, but the role of stem nodulation in the root nodulation and adaptation of S.rostrata to Pb/Zn-enriched tailings environment has been poorly understood.We investigated the effects of inoculating (with stem nodule treatment) and non-inoculating (without stem nodule treatment) Azorhizobium caulinodans on the growth, root nodulation, and N fixation of S.rostrata grown on three different types of soil substrata: Pb/Zn tailings, garden soil amended tailings, and garden soil.The results showed that plant height, stem basal diameter, biomass, chlorophyll content, nitrogen content and N-accumulation per plant were 2.3%-4.9%, 2.2%-7.7%, 27.8%-72.2%, 17.1%-23.5%, 12.3%-34.2%, and 43.1%-131.2% higher in treatments with stem nodule than those without stem nodule for the same soil substrate, respectively.With respect to soil substrata, all the measurements had consistently higher values in tailings than in amended tailings and garden soil, indicating that the poorer the soil condition, the greater the contribution of stem nodule.In contrast, the number and fresh weight of root nodules on plants without stem nodule were 6.9-11.6 times and 5.8-29.0 times higher than those with stem nodule, respectively, especially with respect to the plants grew on Pb/Zn tailings.In general, stem nodulation favored plant growth and nitrogen fixation of S.rostrata, but suppressed root nodulation.With the ability of stem and root nodulation, S.rostrata can be used as a pioneer plant species for remediation of Pb/Zn tailings.  相似文献   

2.
Sesbania rostrata is wellknown for its stem nodulation, but the roles of stem nodulation in root nodulation and adaptation of S. rostrata to Pb/Zn-enriched tailings environment has been poorly understood. We investigated the effects of inoculating (with stem nodule treatment) and non-inoculating (without stem nodule treatment) Azorhizobium caulinodans on the growth, root nodulation, and N fixation of S. rostrata grown on three different types of soil substrata: Pb/Zn tailings, garden soil amended tailings, ...  相似文献   

3.
谢天志  陈永华  苏荣葵  刘慧  姚海松 《环境科学》2022,43(10):4687-4696
植物修复是尾矿区恢复的一项生态技术,添加基质改良剂可以减轻重金属对植物的胁迫,提高修复效率.以木本植物栾树(Koelreuteria paniculata)作为供试植物,分别在100%尾矿(S)、90%的尾矿+5%蘑菇渣(SMC)+5% CaCO3(MS)和天然红壤(RS)中进行盆栽试验.探究不同处理下栾树耐受Pb和Zn的生长富集效应、微观特征变化和基质中微生物多样性变化.结果表明,改良剂的添加相比于尾矿可以显著改善尾矿基质的理化结构,显著提升栾树的生物量、株高和叶绿素含量等相关生理指标,增加栾树中积累的重金属含量.处理组MS相较于对照组RS总根长增长达到69.3%,而对照组RS平均根径相较于对照组S下降118.7%.处理组MS与对照组S相比,Pb和Zn残渣态增加266.67%,弱酸可提取态和氧化物结合态显著降低,重金属对于植株迁移活性减弱.同时,多数重金属被栾树截留在根部,其根系构型的变化表明其在面对高浓度的Pb胁迫时具有较强的适应性.透射电镜(TEM)分析表明,对照组S中较高浓度的重金属含量会破坏细胞壁结构,对植物细胞造成毒害.改良剂的添加有效缓解了重金属胁迫对栾树各组织的影响,影响微生物群落的结构,显著提高微生物丰富度和多样性,增强栾树对重金属的适应性和植物修复能力.  相似文献   

4.
赵兴青  朱旭炎  黄兴  孙雨  侯颖 《环境科学研究》2019,32(12):2139-2147
为揭示土壤微生物及酶活性与重金属污染的内在关系,并建立土壤重金属污染水平的酶活性及生物学参数表征体系,以安徽铜陵狮子山矿区周边土壤为研究对象,测定矿区内不同功能区域(采矿区、选矿区、堆矿区、尾矿库以及菜园)土壤中w(Cu)、w(Zn)、w(Cd)、w(Pb)和基础呼吸、微生物量碳含量、代谢熵等理化性质以及6种土壤酶(脲酶、蔗糖酶、纤维素酶、过氧化氢酶、中性磷酸酶和碱性磷酸酶)的活性.结果表明,所选矿区不同功能区域的内梅罗综合污染指数(PN)依次为堆矿区(10.77)>采矿区(4.38)>选矿区(4.06)>尾矿库(2.55)>菜园(1.35);4种重金属(Cu、Zn、Cd和Pb)的单因子指数(Pi)依次为Cd > Cu > Zn > Pb.不同功能区域内6种土壤酶活性之间有显著差异并呈不同程度变化,且均以菜园土壤酶活性为最大,其中,过氧化氢酶、中性磷酸酶和蔗糖酶活性均可以有效地表征w(Cu)、w(Zn)、w(Cd)和w(Pb)的水平.与基础呼吸或者微生物量碳含量指标相比,代谢熵能更好地表征土壤环境污染状况.研究显示,土壤酶活性、代谢熵与Cu、Zn、Cd、Pb这4种重金属含量均呈极显著相关,因此可通过测定土壤酶活性和代谢熵等生物学参数为矿区土壤环境质量评价及生态修复提供参考依据.   相似文献   

5.
采取水培试验,研究了不同Cd、Zn浓度单一胁迫及其交互作用对三七景天生长、根系形态及Cd、Zn吸收和积累的影响.结果表明,三七景天对Cd、Zn单一胁迫均有较强的耐受性,其根、茎、叶各组织中Cd、Zn含量均随胁迫的增加而增加,且对Cd有较强的富集能力,地上部Cd含量可达133.0 mg·kg~(-1).Cd、Zn共同胁迫对三七景天生长的影响大于单一胁迫,而根系对其胁迫更为敏感,在Cd、Zn共同胁迫下其根系长度、表面积、体积和根尖数均显著降低,且对其根尖数的影响最为显著.Zn对三七景天地上部Cd吸收具有"低促高抑"效应,低浓度Zn(10 mg·L~(-1))对三七景天地上部Cd吸收有协同作用,促进Cd由根部向地上部转运.而添加Cd则对三七景天Zn吸收具有拮抗作用.Zn/Cd浓度比值对三七景天Cd吸收有显著影响,Zn/Cd比值较低时促进三七景天地上部Cd的积累,而高Zn/Cd比则抑制其Cd的积累.因此,三七景天具有较强的Cd富集能力,可应用于修复Cd污染土壤,而调节生长介质中Cd、Zn比例可促进三七景天对Cd的吸收效率.  相似文献   

6.
外源物质调控和间作是提高重金属污染土壤植物修复效率的有效方法.采用盆栽试验研究蚯蚓、秸秆和柠檬酸对少花龙葵和翅果菊单作与间作修复Zn、 Pb和Cd复合污染土壤的影响.结果表明,蚯蚓对Zn、 Pb和Cd的富集系数(BCF)分别为0.07~0.13、0.10~0.26和5.64~15.52.土壤中添加秸秆能使蚯蚓生物量增加22.29%~223.87%、重金属含量下降8.15%~62.58%.蚯蚓对土壤重金属有效态含量的影响不大,但秸秆和柠檬酸对土壤重金属有效态含量分别表现为钝化和活化作用.蚯蚓对翅果菊的重金属含量影响不大,但会降低少花龙葵的重金属含量;秸秆对翅果菊重金属含量表现为抑制效应,但对少花龙葵Cd含量表现为促进效应;柠檬酸对少花龙葵重金属含量影响不大,但是会显著提高翅果菊的Pb含量.间作显著降低土壤重金属有效态含量,明显提高植物根的重金属含量,但对植物地上部重金属含量影响不大.植物对Zn、 Pb和Cd的总提取量主要表现为:翅果菊>间作>少花龙葵.添加蚯蚓可以使翅果菊Zn、 Pb和Cd总提取量分别提高12.49%、35.89%和29.01%;添加秸秆+蚯蚓可以使翅果菊Pb...  相似文献   

7.
Constructed wetlands have emerged as a viable option for helping to solve a wide range of water quality problems. However, heavy metals adsorbed by substrates would decrease the growth of plants, impair the functions of wetlands and eventually result in a failure of contaminant removal. Typha latifolia L., tolerant to heavy metals, has been widely used for phytoremediation of Pb/Zn mine tailings under waterlogged conditions. This study examined e ects of iron as ferrous sulfate (100 and 500 mg/kg) and lead as lead nitrate (0, 100, 500 and 1000 mg/kg) on phosphorus utilization and microbial community structure in a constructed wetland. Wetland plants (T. latifolia) were grown for 8 weeks in rhizobags filled with a paddy soil under waterlogged conditions. The results showed that both the amount of iron plaque on the roots and phosphorus adsorbed on the plaque decreased with the amount of lead addition. When the ratio of added iron to lead was 1:1, phosphorus utilized by plants was the maximum. Total amount of phospholipids fatty acids (PLFAs) was 23%–59% higher in the rhizosphere soil than in bulk soil. The relative abundance of Gram-negative bacteria, aerobic bacteria, and methane oxidizing bacteria was also higher in the rhizosphere soil than in bulk soil, but opposite was observed for other bacteria and fungi. Based on cluster analysis, microbial communities were mostly controlled by the addition of ferrous sulfate and lead nitrate in rhizosphere and bulk soil, respectively.  相似文献   

8.
The plant root-associated microbiomes, including both the rhizosphere and the root endosphere microbial community, are considered as a critical extension of the plant genome. Comparing to the well-studied rhizosphere microbiome, the understanding of the root endophytic microbiome is still in its infancy. Miscanthus sinensis is a pioneering plant that could thrive on metal contaminated lands and holds the potential for phytoremediation applications. Characterizing its root-associated microbiome, especially the root endophytic microbiome, could provide pivotal knowledge for phytoremediation of mine tailings. In the current study, M. sinensis residing in two Pb/Zn tailings and one uncontaminated site were collected. The results demonstrated that the metal contaminant fractions exposed strong impacts on the microbial community structures. Their influences on the microbial community, however, gradually decreases from the bulk soil through the rhizosphere soil and finally to the endosphere, which resulting in distinct root endophytic microbial community structures compared to both the bulk and rhizosphere soil. Diverse members affiliated with the order Rhizobiales was identified as the core microbiome residing in the root of M. sinensis. In addition, enrichment of plant-growth promoting functions within the root endosphere were predicted, suggesting the root endophytes may provide critical services to the host plant. The current study provides new insights into taxonomy and potential functions of the root-associated microbiomes of the pioneer plant, M. sinensis, which may facilitate future phytoremediation practices.  相似文献   

9.
王楷  王丽  王一锟  游梦  梁婷  邹茸  范洪黎 《环境科学》2023,44(12):7024-7035
设置对照(CK)、摩西球囊霉菌(GM)、摩西球囊霉菌+柠檬酸(GM+CA)、摩西球囊霉菌+巨大芽孢杆菌(GM+BM)和摩西球囊霉菌+巨大芽孢杆菌+柠檬酸(GM+BM+CA)这5个处理,通过测定土壤全Cd、有效Cd和植株Cd吸收量及微生物群落变化,分析了外源菌剂和柠檬酸添加对龙葵修复Cd污染效果的影响.结果表明,相对于CK处理,GM处理龙葵根、茎和叶生物量显著增加35.67%、41.35%和65.38%,GM+BM+CA处理龙葵根和茎生物量显著增加73.38%和75.38%.GM处理提高了龙葵各部位Cd含量但差异不显著,GM+BM+CA处理龙葵叶部的Cd含量显著提高79.34%.GM处理龙葵茎和叶Cd累积量显著提高47.51%和89.58%.GM+BM+CA处理龙葵叶部Cd累积量显著提高226.84%.GM+BM+CA处理显著增加了Cd由龙葵茎向叶的转运系数,增幅为52.47%.GM+BM+CA处理显著增加了叶的富集系数,增幅为120.53%.此外,联合修复对根际微生物群落结构也产生了影响,特别体现在诱导某些关键微生物类群,如变形菌门、放线菌门、球囊菌门和油壶菌门相对丰度增加2.00%~5.77%、0.76%~9.96%、2.11%~3.63%和0.54%~2.98%.RDA分析发现变形菌门和放线菌门与土壤全Cd呈显著负相关,球囊菌门和油壶菌门与土壤全Cd呈负相关.关键微生物的变化增强了龙葵吸收根际养分和抗Cd胁迫的能力,提高龙葵Cd累积能力,有效降低土壤全Cd含量.综上,摩西球囊霉菌、柠檬酸与巨大芽孢杆菌通过共接种的方式活化了土壤中的难溶态Cd,有助于龙葵富集更多的Cd,同时也与摩西球囊霉菌产生联合修复的效果.富集植物-微生物联合修复Cd污染土壤有较好的应用潜力.  相似文献   

10.
Whether plant coexistence can reduce the impacts of lead (Pb) on crops in agroecosystems has not been well understood. We conducted a factorial experiment to investigate the effects of weeds coexisting with maize (Zea mays L.) on Pb accumulation in maize and soil microbes at two Pb levels (ambient and 300 mg/kg). Elevated Pb tended to increase the Pb concentration in maize and decreased soil microbial activity (indicated by the average well color development, AWCD), functional group diversity, as well as arbuscular mycorrhizal (AM) colonization and vesicle number of maize. Compared to the monoculture, weeds coexisting with maize reduced the Pb concentrations in the root, leaf, sheath and stem of maize at both seedling and mature stages. In maize-weed mixtures, soil microbial activity and functional group diversity tended to increase for both Pb treatments relative to the monoculture. Furthermore, principal component analysis revealed that the soil microbial community structure changed with the introduction of weeds. The highest Pb accumulation in weeds occurred for the elevated Pb treatment in a three species mixture. The results suggest that multiple plant species coexistence could reduce lead accumulation in crop plants and alleviate the negative impacts on soil microbes in polluted land, thereby highlighting the significance of plant diversity in agroecosystems.  相似文献   

11.
A pot experiment was conducted to investigate the feasibility of growing energy sugarcane(Saccharum spp.) in three different metal mine tailings(Cu, Sn and Pb/Zn tailings) amended with uncontaminated soil at different mixing ratios. The results indicated that sugarcane was highly tolerant to tailing environments. Amendments of 20% soil to Sn tailings and 30% soil to Cu tailings could increase the biomass of cane-stem for use as the raw material for bioethanol production. Heavy metals were mostly retained in roots, which indicated that sugarcane was useful for the stabilization of the tailings. Bagasse and juice, as the most valuable parts to produce bioethanol, only accounted for 0.6%– 3% and 0.6%–7% of the total metal content. Our study supported the potential use of sugarcane for tailing phytostabilization and bioenergy production.  相似文献   

12.
针对铅锌硫化矿尾矿生物浸出周期长和效率低的问题,本研究采用Leptospirillum ferriphilumL. ferriphilum)和Acidithiobacillus caldusA. caldus)等比例混合构建了中度嗜热菌群,浸出铅锌硫化矿尾矿.引入一株兼性自养铁/硫氧化微生物Sulfobacillus benefaciensS. benefaciens),考察其对中度嗜热菌群浸出尾矿过程的影响.结果表明,中度嗜热菌群(L. ferriphilum+A. caldus)8 d Zn浸出率达到93.94%.随着S. benefaciens引入,浸出环境保持更高的氧化还原电位和微生物活性,浸出过程中Fe3+浓度以及总铁浓度增加,4 d内Zn浸出速率提升了13.63%,8 d内Zn浸出率达到96.08%,S. benefaciens的加入强化了中等嗜热菌群的浸出效率.相关性分析表明多糖、蛋白质以及溶解性有机碳(DOC)与浸出过程中的溶液介质参数变化具有统计学意义上显著性和强相关性.表面官能团以及胞外聚合物(EPS)结果证实,引入S. benefaciens在浸出过程中促进菌群产生更多的蛋白质和碳水化合物,有助于提高中度嗜热菌群的浸出效率,加快浸出铅锌硫化矿尾矿中有价金属,降低其环境毒性.  相似文献   

13.
芦竹和木本植物间种修复重金属污染土壤   总被引:2,自引:0,他引:2  
曾鹏  郭朝晖  肖细元  彭驰  黄博 《环境科学》2018,39(11):5207-5216
通过温室盆栽实验,研究草本植物芦竹与木本植物构树、桑树间种修复重金属污染土壤的潜力.结果表明,重金属污染土壤上芦竹与构树、桑树间种有利于植物的生长,提高植物对污染土壤中重金属的富集能力,并有效改善土壤酶活性.重金属污染土壤上单种芦竹、构树和桑树的叶片光合色素含量随着修复时间的延长呈下降趋势,而芦竹与构树、桑树间种修复270 d后,构树叶片叶绿素a和类胡萝卜素含量,桑树叶片叶绿素b和类胡萝卜素含量均与修复初期(90 d)相比无显著差异;桑树叶片叶绿素a、叶绿素b以及类胡萝卜素含量较单种桑树分别显著(P 0. 05)提高99. 1%、177. 1%和119. 9%,且整株生物量显著(P 0. 05)提高26. 1%.芦竹-构树间种下植物地上部分Pb和Zn总量较单种芦竹分别显著(P 0. 05)提高171%和124%;芦竹-桑树间种下植物地上部分As和Pb总量较单种桑树和芦竹修复分别显著(P 0. 05)提高150%和76. 5%.芦竹与构树、桑树间种修复270 d后,污染土壤中As、Cd、Pb和Zn的赋存形态无明显变化,而且土壤脲酶、酸性磷酸酶和总磷酸酶活性明显优于部分单一植物修复.上述结果表明,芦竹与构树、桑树间种可有效用于重金属污染土壤修复,还可改善污染土壤的环境质量.  相似文献   

14.
添加剂对伴矿景天修复石灰性铅冶炼污染土壤的影响   总被引:3,自引:0,他引:3  
为了探讨利用伴矿景天(Sedum plumbizincicola)修复北方重金属污染土壤的可行性,在河南省某铅冶炼形成的污染农田(全镉、铅和锌含量分别为2.65、261和130 mg·kg-1)上种植种子苗或扦插苗伴矿景天,并设对照(CK)、单独尿素(U)、尿素和单质硫(U+S)、尿素与鸡粪(U+CM)配合处理,生长7个月后采样分析.结果表明,种子苗产量比扦插苗高45.8%~162.0%,U、U+CM处理产量均明显高于CK,而U+S处理产量有所下降.种子苗地上部镉含量比扦插苗高15%~99%(p0.05),多数处理铅和锌含量也是种子苗高于扦插苗.与CK相比,各处理措施均导致伴矿景天地上部镉和铅含量下降,而U+S、U+CM处理均导致伴矿景天地上部锌含量上升.从伴矿景天地上部重金属积累量判断,与CK相比,对于镉,仅种子苗U+CM处理镉积累量有所上升;U处理种子苗和扦插苗地上部锌积累量分别比CK上升43.5%和32.3%,两种苗U+S处理锌积累量比CK分别上升11.1%和22.3%.种子苗和扦插苗地上部镉的积累量分别为137~178 g·hm-2和43.7~64.8 g·hm-2,锌的积累量分别为297~1042 g·hm-2和162~326 g·hm-2,两类苗对铅的积累量小于28.8 g·hm-2.U+CM处理对伴矿景天地上部锌吸收的促进作用主要是由于鸡粪中含有大量的有效锌.以上结果表明,可利用种子苗伴矿景天结合尿素的施用对铅冶炼污染石灰性土壤进行修复.  相似文献   

15.
Arbuscular mycorrhizal fungal (AMF) colonization and nodulation of groundnut were examined in nine soils collected from subsistence farmers’ fields in Zimbabwe. Nodule number, shoot dry weight, shoot N and P contents, and AMF colonization were assessed after 6 weeks growth. Both nodule number and AMF colonization differed by an order of magnitude among the nine soils. Soil available P explained almost all the variability in nodule number (r2 = 0.98), but had no significant effect on percent AMF colonization. By adding P to one soil, nodule numbers increased four-fold resulting in a significantly higher N content in the shoots. Similar, but smaller, effects were obtained by increasing the abundance of AMF through an inoculation with Glomus intraradices, suggesting that nodulation in this soil was limited by AMF abundance and that the fungi could, to a limited extent, substitute for P fertilizer.  相似文献   

16.
Air and soil pollution from traffic has been considered as a critical issue to crop production and food safety, however, few efforts have been paid on distinguish the source origin of traffic-related contaminants in rice plant along highway. Therefore, we investigated metals (Pb, Cd, Cr, Zn and Cu) concentrations and stable Pb isotope ratios in rice plants exposed and unexposed to highway traffic pollution in Eastern China in 2008. Significant differences in metals concentrations between the exposed and unexposed plants existed in leaf for Pb, Cd and Zn, in stem only for Zn, and in grain for Pb and Cd. About 46% of Pb and 41% of Cd in the grain were attributed to the foliar uptake from atmosphere, and there were no obvious contribution of atmosphere to the accumulations of Cr, Zn and Cu in grain. Except for Zn, all of the heavy metals in stem were attributed to the root uptake from soil, although significant accumulations of Pb and Cd from atmosphere existed in leaf. This indicated that different processes existed in the subsequent translocation of foliar-absorbed heavy metals between rice organs. The distinct separation of stable Pb isotope ratios among rice grain, leaf, stem, soil and vehicle exhaust further provided evidences on the different pathways of heavy metal accumulation in rice plant. These results suggested that further more attentions should be paid to the atmospheric deposition of heavy metals from traffic emission when plan crop layout for food safety along highway.  相似文献   

17.
骨炭修复重金属污染土壤和降低基因毒性的研究   总被引:7,自引:0,他引:7  
采用分级提取的方法研究了施加骨炭对污染土壤重金属的固定效果,结果表明,土壤施加10 mg·kg-1骨炭后水溶态、交换态、碳酸盐结合态和铁锰氧化物结合态Pb的浓度都显著下降;而加入骨炭后土壤有机结合态Pb的浓度显著上升,表明骨炭可以吸附、固定土壤中的Pb,改变Pb的化学形态,降低Pb的生物可利用性.加入骨炭后土壤中水溶态和交换态Cd的浓度都显著下降,残渣态Cd的浓度明显上升.骨炭处理对土壤中Cu化学形态的影响和Pb相似,表明骨炭可以吸附固定土壤中的Cu.骨炭处理对Zn也有一定的固定效果,降低了土壤中水溶态的Zn.采用植物彗星实验研究了施加骨炭对土壤基因毒性的影响,表明加入骨炭后减轻了污染土壤对洋葱根尖细胞的DNA的损伤,降低了土壤污染对植物的基因毒性.生物评价和化学评价的结果均表明骨炭是重金属污染土壤的有效修复剂,能有效降低污染土壤中重金属的生物有效性和对植物的毒性.  相似文献   

18.
选取承德中部典型钒钛磁铁矿集中区为研究区,分尾矿库复垦土地、尾矿库周边农用地和对照区农用地系统采集了土壤样品和玉米样品各86件,尾矿砂样品50件,矿石和矿石围岩样品33件.在分析土壤和玉米籽实样品Fe、Cu、Ni、Cd、Cr、Pb、Zn、Hg、Ti、Mn和Mo元素含量和土壤、尾矿砂和矿石围岩重金属赋存形态基础上,采用描述性统计、地累积指数、RDA分析和生物富集系数等方法论述了钒钛磁铁矿尾矿库复垦土地及周边土壤和玉米重金属迁移富集特征.结果表明,尾矿库复垦土地及周边土壤元素地累积程度由强至弱为:P > Cu > Fe2O3 > Cr > Ti > V > Ni > Mn > Cd > Zn > Mo > As > Pb > Hg,重金属地累积程度总体属无累积-中度累积水平,土壤Cr和Cu元素超农用地土壤污染筛选值比例为2.32%和1.16%.尾矿库及周边地区玉米籽实Fe、Ti、As、Pb和Mn元素相对较高,对照区玉米籽实Mo、Ni、Cu、Zn、Cd和Cr元素含量相对较高.玉米籽实Pb、As和Ni含量超国家食品限量标准比例分别为18.60%、11.63%和1.16%,均位于尾矿库及其周边区域.尾矿库复垦土地玉米籽实As、Pb、Cd、Cr、Ti和Mn元素生物富集强度相对最高,对照区玉米籽实Cu、Zn和Mo生物富集程度相对较高.尾矿库及周边土壤重金属生物有效态占比Cd元素最高,达50.17%;其次为Ni、Zn和Cu,平均占比为13.61%、13.23%和5.17%.与对照区土壤样品相比,尾矿库复垦土地土壤样品Pb、As和Hg元素表现为总量低,但生物有效性含量和土壤pH高;Cu和Zn总量高但生物有效含量和pH较低特点,使得尾矿库及其周边土壤As和Pb生物富集强度相对增大.在研究矿区尾矿库复垦土地和矿区周边土壤重金属污染生态风险和修复目标值时,宜以重金属生物有效态限值为评价标准.  相似文献   

19.
铅锌尾矿砂污染下的岩溶土壤微生物群落碳源代谢特征   总被引:2,自引:1,他引:1  
以广西阳朔思的村铅锌矿尾砂污染的水稻田、玉米地、柑橘园以及对照(旱地)土壤为研究对象,采用碳素利用法和18S rRNA变性梯度凝胶电泳技术探究岩溶区重金属污染下土壤微生物群落碳源代谢特征以及土壤真菌与土壤有机碳的交互关系.结果表明,广西阳朔思的村铅锌矿尾砂污染区土壤重金属总体含量(Pb、Zn、Cu、Cd)依次为:水稻田玉米地柑橘园对照;同时地累积综合指数显示该区重金属污染以Pb、Cd为主,其中Cd带来的环境风险最高.受Pb、Zn、Cu、Cd等重金属复合污染物影响,土壤微生物生物量碳、微生物熵和碳源代谢速率表现出随总体重金属质量分数增加而降低的变化规律,但土壤总有机碳质量分数却表现为:水稻田对照柑橘园或玉米地.DGGE结果进一步显示对照组土壤存在担子菌门多孔菌目Pycnoporus sp.ZW02.30,柑橘园和玉米地土壤存在镰刀菌属Fusarium solani和Fusarium oxysporum以及柑橘园土壤存在青霉属Penicillium decumbens.然而,上述参与淀粉、纤维素、半纤维素、木质素等糖类降解过程的真菌没有在水稻田土壤检出.加之,水稻田土壤微生物功能多样性指数和微生物熵最低而土壤有机碳质量分数最高,说明铅锌尾矿砂通过影响不同样地土壤微生物糖类代谢过程,进而调节土壤碳在微生物特别是真菌作用下的矿化速率.  相似文献   

20.
粉煤灰是煤炭燃烧后的副产物,富集于粉煤灰中的微量元素在风化、淋溶等外力作用下极易释放到环境中。pH是影响微量元素淋滤行为的重要因素,利用室内砂箱仿真模拟试验研究不同pH淋滤条件下粉煤灰中微量元素的迁移行为具有重要意义。研究结果表明:不同pH条件淋滤后的粉煤灰中Cr、Zn、Ni和Pb的含量都降低。淋滤后水体中Cr的浓度随着pH的升高呈先增大后减少的趋势,在pH为10时达到峰值;Zn、Ni和Pb的浓度随着pH的升高均呈现先减小后增大的特征。淋滤后土壤中Cr元素含量随pH值的升高表现为先减小后增大;Zn、Ni和Pb含量的变化趋势相似,在pH值为2—6.8时减小,随着pH值的继续升高,在pH为10左右达到峰值,随后下降。粉煤灰在短期淋滤条件下对土壤生态环境影响较小,一般情况下可以忽略。  相似文献   

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