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1.
为探讨微生物诱导碳酸钙沉淀技术(microbially induced calcium carbonate precipitation, MICP)和植物技术对污染矿区的固化效果。利用纺锤型赖氨酸芽孢杆菌(Lysinibacillus fusiformis)、碱蓬(Suaeda salsa)、红砂(Reamuria songarica)开展干旱半干旱高风蚀区尾矿污染固化试验。通过植物根系拉力及根—土复合体抗剪强度表征污染矿区响应效果。结果表明:MICP处理后红砂、碱蓬2种植物根系抗拉力分别增加59.9%,19.7%,抗拉强度分别降低7.4%,22.5%。较MICP处理前,100 kPa下红砂、碱蓬复合体抗剪强度分别提高62.7%,45.9%;200 kPa下分别提高130%,122%;300 kPa下分别提高26.8%,30.6%。胶结后,红砂、碱蓬根系中的半纤维素、纤维素、木质素的含量显著增加(p<0.05),红砂根系分别增加64%,74%,153%;碱蓬根系分别增加24%,46%,95%。综上,MICP协同植被为干旱半干旱高风蚀尾矿区污染修复提供高效途径,研究结果对实现矿区自然环境改善,加速矿区的生态修复具有重大意义。  相似文献   

2.
连续四年施用规模化猪场猪粪温室土壤重金属积累研究   总被引:21,自引:1,他引:21  
分别采集连续施用0~4年猪粪的蔬菜温室土壤和蔬菜果实样品,测定土壤和果实中Cu、Zn、Pb、Mn、Cr、Cd、Ni和As全量以及土壤中Cu、Zn、Pb、Mn、Cd和As有效态含量,对测定数据进行了Fisher小样本非参数随机化显著水平检验,研究连续4年施用规模化猪场猪粪的温室土壤重金属积累、重金属有效态含量变化及对蔬菜可食部分的影响。结果表明,连续4年施用猪粪,主要导致土壤中Cu和Zn的积累,As有一定积累,Pb、Cd、Ni和Cr短期积累效应不明显,Mn积累不明显,长期大量施用猪粪,Pb、Cd、Ni和Cr有积累的风险;土壤pH值降低;Cu、Zn有效态与全量呈显著正相关(p<0.05),与pH值呈极显著负相关(p<0.01);Pb、Cd和Mn有效态与pH值呈显著负相关(p<0.05);Cu、Zn、Pb、Cd和Mn有效态含量增加;有效态As与全As含量和pH值相关性不明显,但连年施用猪粪As有效态含量增加;连续4年施用规模化猪场猪粪的温室生产的部分番茄和黄瓜As含量超标。若连续以150 m3/(hm2·a)的猪粪施用量于该研究区蔬菜温室,土壤中全Cu和全Zn含量分别经过10年和15年可能超过国家农田土壤二级标准。该研究可为降低温室土壤重金属污染风险提供依据。  相似文献   

3.
矿区土壤易发生重金属污染,是土地资源利用和维护的一大难题。以铜矿区污染土壤为研究对象,按质量比添加0,1%,2%,4%,10% (w/w)的生物炭,进行香根草室内盆栽试验。研究添加生物炭对土壤pH和微生物活性、香根草富集与转运重金属的影响,探明重金属形态含量与生物炭、微生物活性的相关性,旨在为生物炭与香根草联合修复矿区重金属污染土壤提供理论参考。结果表明:生物炭的添加能提高土壤pH,显著提高土壤FDA水解酶、蔗糖酶和脲酶活性,显著促进土壤基础呼吸,但对土壤微生物量碳无显著影响;生物炭的添加使香根草生物量显著增大,降低土壤Cu和Pb的有效态占比,Cd的变化与此相反;添加生物炭促进香根草对Cd和Pb的富集,降低香根草对Cu的富集,减少Cu、Cd和Pb在香根草体内的转运,因此香根草可作为Cu、Cd和Pb的稳定化植物。土壤蔗糖酶活性与香根草叶片Cu、Cd和Pb含量、有效态和残渣态Cu含量呈显著正相关,土壤基础呼吸与叶片Cu、Cd和Pb含量、有效态Cu、Pb含量呈显著负相关,而与有效态Cd含量呈显著正相关。总之,生物炭可减弱矿区土壤重金属对香根草生长的毒害作用,并促进香根草对重金属的富集,两者结合可改善铜矿区污染土壤的理化性质和微生物活性,有利于重金属污染土壤修复,改善土壤质量。  相似文献   

4.
中国土壤类型丰富多样,不同区域土壤重金属赋存形态各异,难以实现对不同区域不同类型土壤重金属有效性的比较与评价。为筛选建立适宜区域农田土壤重金属的有效性评价的方法,该研究选择滇东地区5种性质差异较大的典型农地土壤(黄棕壤、黄壤、红壤、石灰土和紫色土)运用正交试验法将AB-DTPA法的提取条件(固液比、提取剂pH值和振荡时间)进行正交组合,建立土壤-作物Pb迁移模型与总量法、CaCl2-DTPA法和AB-DTPA法进行拟合优度对比,并以白菜和菠菜为指示作物开展盆栽试验,探讨不同分析方法与作物Pb累积能力的相关性,进而综合评价不同方法的适宜性。结果表明,1)固液比(g/mL)1:3、提取剂pH值7.6以及振荡时间120 min对Pb有效态的提取量有较大的影响;2)与其他方法相比,优化AB-DTPA法(固液比1:3、pH值7.6和振荡时间120 min)能更好地预测作物对Pb的吸收能力;3)盆栽试验表明,优化AB-DTPA法提取的土壤 Pb有效态含量与白菜和菠菜吸收Pb含量具有更好的相关性(R2=0.898, R2=0.752),Pb的加标回收率范围为99.5%~113.0%,准确度高。4)将土壤pH值加入预测模型表明,土壤pH值对土壤Pb与在作物可食部分中相关性影响很小,表明优化AB-DTPA法很稳定。因此,优化AB-DTPA法适用于滇东地区农田土壤Pb有效态的提取,该法具有可行性、广普性和准确性。研究结果为区域农田土壤修复技术效果及污染风险评价提供基础依据。  相似文献   

5.
铅锌矿废弃地尾矿砂对银合欢幼苗定居的影响   总被引:1,自引:0,他引:1  
研究了广东省仁化县韶关凡口铅锌矿废弃地尾矿砂对银合欢(Leucaena glauca)幼苗定居的影响。结果表明,尾矿砂中Pb、Zn、Cu、Cd等重金属含量极高,Pb、Zn比对照土壤高100倍左右,Cu、Cd高4~5倍,植物对重金属的吸收、积累量较大,且多集中于根部。尾矿砂中硝态氮(NO-3-N)和铵态氮(NH+4-N)含量很低,仅为对照土壤的13%~23%。银合欢幼苗在尾矿砂中能生长,但其叶片光合色素含量较少,株高、复叶数、植株干物质量等生物量显著降低,这主要是由于重金属含量过高导致根系活力降低,限制了植物对水分和营养物质的吸收,其次是土壤贫瘠的影响。  相似文献   

6.
[目的] 针对河西灌区土壤肥力贫瘠,酿酒葡萄产量与品质低下及无机氮肥过量施用造成的环境问题,通过探究有机氮替代部分无机氮肥对酿酒葡萄生长、产量及品质的影响,以确定酿酒葡萄适宜的有机无机氮肥配施用量。[方法] 于2018年在甘肃省张掖市临泽县进行田间试验,采用随机区组设计,设6个处理:单施化肥(C),单施有机肥(O),70%化肥+有机肥(0.7 CO),50%化肥+有机肥(0.5 CO),30%化肥+有机肥(0.3 CO),不施肥(CK),探究不同有机无机肥配施对酿酒葡萄梅鹿辄(Merlot)生长、产量及品质的影响。[结果] 有机肥替代部分化肥可使酿酒葡萄的产量与品质不同程度的改善,其中0.5 CO效果最优;在相同的有机肥施用量下,化肥减施50%有助于平衡酿酒葡萄营养生长与生殖生长;与CK与C处理相比,0.5 CO处理下,葡萄产量分别提高了120.76%和32.59%(p<0.05),果实可溶性固形物分别提高了46.72%和25.21%(p<0.05),还原糖含量分别提高了39.36%和37.46%(p<0.05),单宁含量分别提高了23.05%和39.06%(p<0.05),总酚含量分别提高了72.07%和54.77%(p<0.05),花色苷含量分别提高了44.42%和48.48%(p<0.05),糖酸比分别提高了50.42%和40.78%(p<0.05),总酸含量降低了33.96%和16.98%(p<0.05)。[结论] 化肥减半配施有机肥(0.5 CO)既有效抑制酿酒葡萄的营养生长,又提高了葡萄产量和果实品质,在试验区的推荐施肥量为9 000 kg/hm2有机肥配施化肥(N 150 kg/hm2,P2O5 135 kg/hm2及K2O 180 kg/hm2)。  相似文献   

7.
[目的] 探究菊芋在滨海盐土改良过程中的作用机制,分析菊芋和碱蓬根系分泌物的组分差异,明确土壤微生态环境的变化规律,进一步为盐土改良提供理论依据。[方法] 以种植菊芋和自然碱蓬植被为样地,对菊芋和碱蓬的根系分泌物进行对比分析,研究在根系分泌物作用下土壤微生物数量,微生物量碳氮,微生物群落结构以及土壤酶活性的变化,从而系统地阐明根系分泌物介导下盐土改良的微生物机制。[结果] 菊芋根际土壤中含有果糖(2.343×10-3 g/kg)、葡萄糖(4.235×10-3 g/kg)、蔗糖(2.670×10-3 g/kg),分别是碱蓬根际土壤的9.28,1.52和2.43倍。而菊芋根际与非根际中的果糖含量存在显著性差异(p<0.05),其根际中含量为非根际的12.02倍。菊芋土壤还含有低聚果糖(蔗果三糖、蔗果四糖和蔗果五糖),而碱蓬土壤中未检测出低聚果糖。除糖类外,菊芋根系分泌物还含有烷烃、酚、醛、酯、有机酸、醇、酮、酰胺,其组分较碱蓬土壤更为复杂且某些组分为菊芋特有〔1-氯—十八烷、正十六烷酸、2-甲基-Z-4-十四碳烯、十二酮、(Z)-9-十八碳酰胺、苯丙酸十六烷基酯等〕。功能性根系分泌物(如低聚果糖、果糖、十六烷、十八烷酸等)为根际微生物提供碳源、氮源和营养元素的同时,使菊芋根际土壤中微生物数量显著增加(p<0.05),土壤微生物量碳、氮显著高于碱蓬土壤(p<0.05),其值分别是碱蓬土壤的1.95和1.6倍,且菊芋根际的微生物量碳、氮约为非根际的1.69和1.50倍,优势菌群(变形菌门、放线菌门、绿弯菌门、酸杆菌门)所占比重达到90%,土壤有益菌群(ActinobacteriaAcidobacteria)的相对丰度显著增加(p<0.05),土壤生物活性提升。此外,菊芋根际特有的分泌物(十六烷、烯醛等),抑制了病原菌的生长,优化了微生物群落结构。除过氧化氢酶外,土壤脲酶、蔗糖酶和碱性磷酸活性显著提高(p<0.05),其活性分别是碱蓬土壤的1.83,1.88和3.30倍。[结论] 种植菊芋后,通过根际分泌物介导,改善土壤微生物群落结构与功能,增加土壤酶活性,使土壤生物活力得以整体提升,与原生植被碱蓬相比,降低了土壤含盐量,起到了改良盐土的作用。  相似文献   

8.
农业景观组成对玉米螟天敌数量的影响   总被引:1,自引:0,他引:1  
高比例和多样的非耕作生境带来的农田景观高异质性是维持农业生物多样性的关键,推测提高非耕作生境组成能够促进农田中玉米螟天敌数量和种类增加。为揭示不同非耕作生境组成对玉米螟天敌数量的影响,本文选取东北平原玉米种植典型县——辽宁省昌图县,按照5个非耕作生境比例(0~10%、10%~20%、20%~30%、30%~40%和40%~50%)选取20个直径为600 m的样区。陷阱法采集玉米螟天敌,并用体视显微镜鉴别到科。主成分分析法筛选主要非耕作生境类型,逐步回归模型对非耕作生境组成(比例和类型)与玉米螟天敌数量进行拟合。并采用"赤池信息准则(AIC)"模型筛选,评估不同非耕作生境组成对玉米螟天敌数量的影响。研究结果表明,随着非耕作生境比例增加,玉米螟天敌数量呈先增后减的趋势,非耕作生境比例为20%~30%时天敌数量达最大值。非耕作生境比例20%~30%时,非耕作生境组成与玉米螟天敌数量关系最优模型(AIC=4.24,为最小值)是Y=b0-b1D+b2PC2,最优模型表明PC2(β=3.787,P=0.005)代表以林地为主的非耕作生境组成与玉米螟天敌数量呈显著正相关,景观多样性指数Dβ=-3.173,P=0.005)与玉米螟天敌数量呈显著负相关。该比例的非耕作生境组成与玉米螟天敌数量关系的其他模型表明,以草地和村落为主(PC1)的非耕作生境与玉米螟天敌呈显著正相关(β=1.957,P=0.000)。而其他比例下,所有关系模型说明农田周边林地生境和其他作物耕地有利于提高农田中天敌数量。最适宜玉米螟天敌聚集的非耕作生境比例为20%~30%,以林地为主或村落、草地为主的非耕作生境,以及分布有其他作物的耕作生境能够提高玉米螟天敌数量。研究结果可为今后从景观生态角度构建适宜非耕作生境组成来防治玉米螟提供理论依据和方法。  相似文献   

9.
为探明不同植被格局对工程堆积体陡坡坡面土壤侵蚀的影响,采用10,20,30 L/min 3种放水流量,对黄土区不同格局(裸坡、坡顶、坡中、坡底、条带)下的高陡边坡(32°,20 m×1 m)进行模拟放水试验,选取径流率、产沙率、减流效益、减沙效益等因子对堆积体坡面植被的控蚀效果进行分析。结果表明:3种放水流量下,条带、坡顶、坡中、坡底的平均径流率较裸坡分别减小57.33%,61.17%,41.62%,24.78%,平均产沙率较裸坡分别减小74.99%,61.10%,55.01%,46.43%,且径流率与产沙率的线性关系(R2=0.57~0.80,p<0.01)整体上弱于裸坡(R2=0.71,p<0.01)。不同植被格局中,条带及坡顶格局的减流效益分别是65.97%,60.52%,减沙效益分别为71.44%,57.22%,二者的控蚀效果远高于其他格局。产沙率与径流功率的线性相关性(R2=0.61~0.83,p<0.01)高于径流剪切力(R2=0.29~0.76,p<0.01),径流功率能更好地反映堆积体坡面土壤侵蚀机制。  相似文献   

10.
黄土高原典型退耕草地植被特征对土壤入渗过程的影响   总被引:1,自引:1,他引:0  
蒋忙舟 《水土保持学报》2022,36(4):99-104,111
植被恢复过程可显著影响土壤入渗性能。通过选取黄土高原典型草地白羊草和铁杆蒿草地,设置不同种植密度(5,10,15,20,25,30株/m2)和采用人工模拟降雨试验(60 mm/h,60 min),系统研究了草地植被特征对土壤入渗过程的影响。结果表明:(1)种植密度增加可显著延缓产流,不同种植密度下白羊草草地和铁杆蒿草地初始产流时间分别为0.76~5.74,0.87~2.08 s,且随盖度、根系生物量和有机质的增加呈幂函数增加(R2≥0.18,p<0.05)。(2)不同种植密度下白羊草草地的平均入渗速率、稳定入渗速率、入渗总量分别为0.47~0.82,0.46~0.82 mm/min和7.12~11.84 mm,铁杆蒿草地分别为0.38~0.67,0.35~0.60 mm/min和5.70~10.07 mm。当种植密度为20株/m2时,土壤入渗各参数均最大;平均入渗速率、稳定入渗速率、入渗量总量、入渗系数(K)随土壤有机质的提高呈幂函数增大(R2≥0.26,p<0.01),衰减系数(α)随生物结皮盖度呈降低趋势(p>0.05)。(3)白羊草草地具有较高的根系生物量、生物结皮盖度和有机质含量,其初始产流时间、平均入渗速率、稳定入渗速率、入渗量总量及入渗系数(K)均不同程度高于铁杆蒿草地,衰减系数(α)低于铁杆蒿草地,土壤入渗性能较强。总体而言,对于典型退耕草地,土壤入渗总量(A)可表征为根系生物量密度(RMD)和土壤有机质(SOC)的拟合函数(A=2.77×RMD0.149 SOC0.614,R2=0.663,NSE=0.653)。研究结果可为黄土高原退耕草地生态水文过程和植被建设提供数据来源和理论依据。  相似文献   

11.
德兴铜矿是我国的超大型铜矿,尾矿砂的排放是其主要的环境问题之一,目前主要堆积于尾矿库中。1号尾矿库于1986年服役期满后共堆积矿砂2.15×107 m3,面积约210 hm2。20世纪90年代后期,在坝坡约30 hm2覆有客土的地区进行了一系列植被重建的试验研究工作,本文报道了1998年开始在旱稻(OryzaLinn.)、花生(Arachis Linn.)、香根草(Vetiveria zizanioidesNash)和湿地松(Pinuselliottii Engelm.)等18种不同植被组合条件下的土壤基本农化性状(pH、有机质(OM)、铵态氮、速效P、速效K)以及0.05 mol L-1 HCl可提取态重金属在3~4年时间内的变化情况,结果表明,坝坡土壤N、P、K严重不足,且保水、保肥能力弱,需要不断地进行培肥和改良。三年多来,土壤pH总体上无显著变化;OM第三年有显著上升,约为第一年的127%;NH4 N成直线下降,第二年和第三年分别为第一年的72.9%和43.0%;随着耕作实践的推移,速效P和速效K显著上升,但仍旧处于较低水平。重金属(主要是Cu)污染严重,Cu、Zn、Pb、Cd在植物中有明显积累。研究结果强调了试验区在植被重建中不宜种植食用植物,以避免食物链的污染。  相似文献   

12.
施用外源物对尾矿土壤种植胡枝子修复效应初探   总被引:2,自引:0,他引:2  
采用土培试验在两种尾矿土壤(废弃地和尾矿渣土)上种植耐性不同的两个胡枝子品种,通过添加客土、锯末,调控有机肥或无机肥等外源物,分析不同处理条件下胡枝子生物量、植株和土体内重金属含量,以明确外源物对尾矿土壤的修复效应。结果表明,二色胡枝子生物量整体上显著高于截叶胡枝子生物量;在所有处理中,废弃地上同时添加客土和有机无机肥的处理是二色胡枝子生物量最高的处理。外源肥料添加提高了两个品种地上部和根部的生物量,客土添加可能对改善立地生存的理化条件有较大帮助作用,更能体现出肥料的效果。两种土壤上添加客土或肥料,均较为显著地减少了截叶胡枝子根部和地上部重金属的吸收,而二色胡枝子效果不明显。两种土壤上添加外源物、种植不同品种胡枝子可以降低部分处理土壤中重金属含量,但通过植物种植直接摄取土壤中重金属的量是相对较少的。总之,客土添加、肥料施入均较为明显地改善了废弃地和尾矿渣土两类土壤的立地条件,增加了两种胡枝子的生物量,一定程度上限制了植物对重金属的吸收,土壤改良的基础上优先选择耐性品种是提高植物修复效果的上佳方案。  相似文献   

13.
Heavy metal accumulation in plants on Mn Mine tailings   总被引:7,自引:0,他引:7  
The profile distribution of β-gulcosidase activity in twelve typical paddy soil profiles with high productivity in the Taihu Lake region of China were investigated. Activities of β-gulcosidase in the plow layers were in the range of 52.68- 137.02μg PNP g^-1 soil h^-1 with a mean of 89.22μg PNP g^-1 soil h^-1. However, most plow layers ranged from 70 to 110 μg PNP g^-1 soil h^-1. The profile distribution of β-gulcosidase activity in the 12 soil profiles decreased rapidly with soil depth, with activity at the 60 cm depth only about 10% of that in the surface layers (0-15 cm or 0-20 cm). In these soil profiles, β-gulcosidase activity was significantly positively correlated with soll organic carbon and arylsulphatase activity. Meanwhile, a significantly negative correlation was shown between β-gulcosidase activity and soil pH.  相似文献   

14.
Luo  Youfa  Wu  Yonggui  Qiu  Jing  Wang  Hu  Yang  Lian 《Journal of Soils and Sediments》2019,19(2):702-715
Purpose

Zinc smelting activity generates large volumes of highly toxic waste slags and poses a potential extreme environmental risk for the surrounding areas. The establishment of a vegetation cap for the phytostabilization of abandoned mine tailing heaps using plants is usually considered a beneficial approach. This study aimed to evaluate the suitability of phytostabilization of zinc smelting slag using four woody plants combined with organic amendments, to investigate the distribution of heavy metals in the slag–plant system, and to better understand how the direct revegetation of a zinc smelting slag site can influence the mobility and geochemical fraction of heavy metals.

Materials and methods

Slags were collected from the areas planted with vegetation (Arundo donax, Broussonetia papyrifera, Robinia pseudoacacia, and Cryptomeria fortunei) and a bare area in a zinc smelting waste slag site using an indigenous method. Physicochemical properties were determined with the usual procedures. The geochemical fraction and bioavailability of heavy metals was determined using the three-step modified European Community Bureau of Reference (BCR) sequential extraction and diethylene triamine pentaacetic acid (DTPA) sequential extraction schemes. Heavy metal concentrations (Cu, Pb, Zn, and Cd) in the slag and plant samples were also measured.

Results and discussion

Vegetation planted directly in the zinc smelting waste slag significantly enhanced the nutrient accumulation and reduced the bioavailability of heavy metals (Cu, Zn, and Cd) with the exception of A. donax for Zn and Cd. The presence of four woody plants increased the bioavailability of Pb. Sequential extraction revealed that revegetation reduced the acid-soluble extractable fraction and increased the fraction of heavy metals associated with the Fe/Mn oxy(hydr)oxides or organic matter. This is attributed to the establishment of plant-enhanced weathering of minerals in the waste slag that resulted in the formation of an amount of dissolved metals, and the amount of dissolved metals was partly redistributed into the soluble extractable fraction of the zinc smelting waste slag. The final concentration of metals (Cu, Pb, Zn, and Cd) in the soluble extractable fraction is dependent on the dynamics of metals induced by root activity in the rhizosphere. Much lower levels of heavy metals with lower translocation factors accumulated in the four woody plants than in the associated slags.

Conclusions

We conclude that the studied four woody plants showed a beneficial vegetation cover and phytostabilization potential within 5 years of revegetation. These woody plants have the potential for high heavy metal tolerance and low heavy metal accumulation. Therefore, these woody plants could be used for revegetation and phytostabilization of zinc smelting slag sites under field conditions.

  相似文献   

15.
沼渣对铅锌冶炼废渣生物化学性质及植物生长的影响   总被引:2,自引:0,他引:2  
为研究沼渣作为改良剂对铅锌冶炼废渣环境条件的改善及修复植物生长的影响,采用盆栽试验研究不同比例(0,1%,3%,5%,7%,9%)沼渣添加和黑麦草(Lolium perenne L.)生长对废渣养分含量、微生物学特性、重金属赋存形态及黑麦草的生物学特征的综合影响。结果表明:与对照废渣相比,添加沼渣后废渣养分(N、P、K)、有机质、酶活性(碱性磷酸酶、蔗糖酶、脲酶、过氧化氢酶)、微生物数量(细菌、真菌和放线菌)以及微生物活性(呼吸强度)均显著(p0.05)增加;不同比例沼渣添加均显著增加黑麦草鲜重、根长、株高并显著降低植物组织(地上和地下部)中重金属含量(p0.05)。沼渣添加和黑麦草生长通过促进废渣中酸溶态重金属(Cu、Cd、Zn、Pb)向残渣态转化进而降低废渣中重金属的生物有效性。典范对应分析表明,沼渣施用量在5%,7%,9%时对废渣微环境条件改善作用较大,其中,较低的沼渣添加量(5%)就能显著改善废渣的微环境条件及促进修复植物健康生长。因此,综合考虑沼渣作为有机改良剂的最佳费用和效应间的关系,在设置试验条件下,可将5%的沼渣添加量作为铅锌冶炼废渣有机改良及植物修复的最佳施用比例。  相似文献   

16.
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   

17.
Soil samples were collected from both bare and vegetated mine tailings to study the changes in bacterial communities and soil chemical properties of copper mine tailings due to reed (Phragmites communis) colonization. The structures of bacterial communities were investigated using culture-independent 16S rRNA gene sequencing method. The bacterial diversity in the bare mine tailing was lower than that of the vegetated mine tailing. The former was dominated by sulfur metabolizing bacteria, whereas the latter was by nitrogen fixing bacteria. The bare mine tailing was acidic (pH = 3.78), whereas the vegetated mine tailing was near neutral (pH = 7.28). The contents of organic matter, total nitrogen, and ammonium acetate-extractable potassium in vegetated mine tailings were significantly higher than those in the bare mine tailings (P< 0.01), whereas available phosphorus and electrical conductivity were significantly lower than those in the bare mine tailings (P< 0.01). The results demonstrated that 16S rRNA gene sequencing could be successfully used to study the bacterial diversity in mine tailings. The colonization of the mine tailings by reed significantly changed the bacterial community and the chemical properties of tailings. The complex interactions between bacteria and plants deserve further investigation.  相似文献   

18.
M. J. KHAN  D. L. JONES 《土壤圈》2009,19(5):631-641
Soil samples from a historic copper mine tailing site at the Parys Mountain,North Wales (UK) were amended with green waste compost (GC),GC+30% sewage sludge (GCS),lime and diammonium phosphate (DAP),to determine the effect of amendments on DTPA-and Ca (NO3) 2-extractable metals in the mine tailing and on the phytoavailability of heavy metals by a lettuce (Lactuca sativa L.).Both compost were added at the rate of 10% by weight,lime was added as calcium carbonate equivalent (pH = 7) and DAP at a 2300 mg kg-1 soil level.The experiment was arranged in randomised complete design with three replicates in pots under control environment.Addition of lime resulted in the largest reduction in metal extractability with DTPA and Ca (NO3) 2 and phytoavailability of Cu,Fe and Zn while DAP was effective in lowering Pb extractability and phytoavailability.With exception of Zn,all other metals extracted decreased with time after amendment applications.The distribution of heavy metals between and within the four procedures of potentially bioavailable sequential extraction (PBASE) varied significantly (P < 0.001).Stronger relationships were noted between the metals extracted with PBASE SE1 and Cu,Pb (P < 0.01) and Fe (P < 0.001) in the lettuce.These results indicate that addition of lime is sufficient to restore the vegetative cover to a high metal mine waste while DAP is good for stabilizing Pb,but its detrimental role on plant growth and the risk associated with presence of N in DAP (through N leaching) may restrict its chances for remediation of contaminated sites.  相似文献   

19.
Trophic groups and functional guilds of soil nematodes were measured under four mine tailing subsystems in the Baoshan lead/zinc mine, Hunan Province, southern China to test the indicator value of nematodes for heavy metal pollution. No obvious correlation was found between heavy metal concentration and the total number of nematodes. However, the densities of c–p3, c–p4 and c–p5 nematodes were negatively correlated with Pb and Zn concentrations, suggesting that the abundance of nematode groups of high c–p values is useful indicators of heavy metal contamination. The “weighted faunal analysis” provided a better assessment of soil health condition than Maturity Index (MI) in situations where there were extremely low numbers of soil nematodes. Results showed that the effect of heavy metal contamination on soil nematodes might be strongly influenced by plants. Although the abundance of plant-feeding nematodes did not reflect the heavy metal conditions in the soil, it might be used as an index for assessing the soil remediation potential of pioneering plants. Patrinia villosa seems superior to Viola baoshanensis as a pioneer plant species for soil remediation based on analysis of rhizosphere nematode community.  相似文献   

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