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1.
重金属Cd、Zn、Cu、Pb复合污染对土壤微生物和酶活性的影响   总被引:20,自引:4,他引:16  
通过野外土样采集及室内测定,研究了云南东川铜矿区土壤酶和微生物特征,并采用盆栽试验研究了重金属Cd、Zn、Cu、Pb复合污染对土壤微生物和酶活性的影响。结果表明,距离矿口越近,土壤有机质、有效N、P、K的含量、土壤pH值亦越低,土壤酶活性和土壤微生物数量、微生物生物量C和N受到的抑制程度也增强,其中土壤酶中的酸性磷酸酶和过氧化氢酶,土壤微生物中的细菌对重金属污染较为敏感。盆栽试验中,Cd、Zn、Cu、Pb复合污染使白菜(Brassica rapapekinensis)生物量明显下降,且随复合污染程度的增加,白菜生物量下降幅度增加。Cd与Zn、Cu、Pb,Zn与Cd、Cu、Pb,Cu与Cd、Zn、Pb的复合效应机制为协同效应,而Pb与Cd、Zn、Cu的复合效应机制为拮抗效应。重金属Cu、Zn、Pb、Cd复合污染使土壤酶活性显著降低,但低量的Cd、Zn、Cu、Pb复合污染刺激了细菌、真菌、放线菌、微生物生物量C和N。重金属Cd、Zn、Cu、Pb对土壤酶活性和土壤微生物数量及微生物生物量C和N的复合效应机制表现出协同和拮抗效应。  相似文献   

2.
土壤微生物数量及土壤酶活性是描述土壤的重要生物学指标。在实验室控制条件下,研究了农药乐果、Cd2+单一污染及乐果与Cd2+复合污染对土壤3大类群微生物数量和主要土壤酶活性的影响。结果表明,Cd2+和乐果复合处理对土壤中微生物生长存在着明显的拮抗作用,复合抑制效应顺序为放线菌〉真菌〉细菌;而对土壤酶活性均有明显的协同作用,复合抑制效应顺序为蛋白酶〉蔗糖酶〉脲酶。单一污染时,100mg·kg-1乐果的处理可不同程度地抑制这些生物学指标,其中对土壤微生物数量的抑制效应顺序为真菌〉放线菌〉细菌,对土壤酶活性的抑制效应顺序与乐果和Cd2+复合污染顺序一致;50mg·kg-1浓度的乐果对这些指标几乎无影响。  相似文献   

3.
采用温室盆栽土培方法,研究了土壤中不同浓度重金属铅(Pb,0-800 mg.kg^-1)、镉(Cd,0-50 mg.kg^-1)单一及其复合处理对玉米(Zea mays L.)生长及土壤微生物(细菌、放线菌、真菌)数量的影响。结果表明,在重金属Pb、Cd单一及其复合处理下,玉米的株高、干重均低于对照,重金属Pb、Cd处理对玉米的生长存在负面影响。重金属Pb、Cd单一处理抑制细菌、真菌的生长,中低浓度Pb(≤300 mg.kg^-1)、Cd(≤10 mg.kg^-1)单一处理促进放线菌数量的增加,高浓度(Pb≥800 mg.kg^-1、Cd≥50 mg.kg^-1)则呈现抑制效应;Pb、Cd复合在高中低浓度下都抑制土壤微生物生长,减少微生物数量。玉米株高同土壤微生物之间相关性不显著;玉米干重同土壤细菌、真菌显著相关,同土壤放线菌之间相关性不显著。  相似文献   

4.
通过现场采样及室内分析方法,研究了Cd、Pb严重污染的土壤中蛋白酶、酸性磷酸酶和脱氢酶活性的变化及其与土壤Cd、Cu、Pb、Zn含量和土壤基本性质之间的关系。通径分析表明,影响蛋白酶活性主要直接因素为土壤有效Cd、土壤有效Zn、砂粒和黏粒,其中土壤有效Zn刺激了酶活性而土壤有效Cd抑制了酶活性;影响酸性磷酸酶活性主要直接因素为碱解氮、速效磷、pH值,土壤有效Cu、土壤有效Cd、土壤有效Pb、土壤有效Zn对酸性磷酸酶的直接影响较小;影响脱氢酶活性主要直接因素为土壤有效Cd、土壤有效Zn、土壤速效钾,其中土壤有效Cd抑制了酶活性而土壤有效Zn刺激了酶活性。总体而言,4种重金属有效态对酶活性毒性大小依次为:Cd〉Cu〉Pb〉Zn。综合简单相关分析结果可知,总体上Cu、Cd、Pb、Zn复合污染刺激了蛋白酶活性,抑制了脱氢酶活性,对酸性磷酸酶活性影响不大,脱氢酶可作为上述土壤重金属复合污染的指标。3种土壤酶活性变化是重金属与土壤理化性质综合作用的结果。  相似文献   

5.
铅锌矿区污染土壤微生物活性研究   总被引:15,自引:1,他引:15  
通过野外调查和采样分析,研究了浙江衢州铅锌矿区土壤的微生物、土壤酶活性及植物重金属积累特性。结果表明:矿区污染区土壤Ph、Zn、Cd、Cu全量的平均值分别是对照土壤的267.8倍、132.6倍、41.8倍、17.0倍。矿区植物体内重金属含量与土壤重金属全量和有效态含量呈显著正相关。矿区土壤随着重金属含量的增加,土壤微生物生物量碳逐渐降低,而土壤基础呼吸、微生物代谢商则升高,矿区中心污染土壤微生物生物量碳只有对照土壤的72%,而基础呼吸和微生物代谢商分别是对照土壤的1.6倍和2.3倍。铅锌矿口附近污染区土壤酶活性较低,对照土壤的各种酶活性最高。其中土壤脱氧酶的活性变化最大,作为矿区重金属污染的指标更灵敏。  相似文献   

6.
采用盆栽试验研究了不同比例有机无机肥配施对连续4茬麦-稻轮作后土壤微生物学特性的影响。结果表明,与对照相比,单施化肥处理促进了土壤微生物生物量碳、氮和微生物熵的增加,提高了土壤蔗糖酶、蛋白酶、脲酶活性,降低了过氧化氢酶活性,提高了放线菌的数量,但对土壤细菌、真菌数量的影响不明显;有机无机肥配施处理的土壤微生物生物量碳、微生物生物量氮、微生物熵、土壤酶活性及3大类土壤微生物数量显著高于单施化肥及对照处理;土壤微生物生物量碳、微生物生物量氮、微生物熵和3大类微生物数量随着有机肥配施比例的提高而增加,以配施30%有机肥处理的最高;土壤酶活性综合指数以配施20%有机肥处理的最高。可见,化肥配施有机肥特别是配施中高量有机肥更有利于改善土壤微生物学特性,提高土壤生产能力。  相似文献   

7.
镉胁迫对洞庭湖湿地土壤微生物数量与活性的影响   总被引:1,自引:0,他引:1  
为探讨Cd污染胁迫与洞庭湖湿地土壤微生物学特性之间的内在关系,通过野外土样采集和室内模拟胁迫相结合的方法,研究Cd污染胁迫对洞庭湖湿地土壤微生物数量和微生物活性的影响。结果表明,当Cd胁迫浓度为3 mg kg~(-1)时对洞庭湖湿地土壤细菌、微生物总数及土壤微生物生物量碳(SMBC)刺激作用显著,当Cd胁迫浓度为6 mg kg~(-1)时对真菌有显著的刺激作用,而对细菌、放线菌、微生物总数及微生物生物量氮(SMBN)均表现出抑制作用,且随Cd胁迫浓度的进一步增加对细菌、真菌、放线菌、微生物总数及SMBC、SMBN的抑制作用增强;土壤脲酶、蔗糖酶、过氧化氢酶、磷酸酶和脱氢酶活性随Cd胁迫浓度的增加而降低;土壤基础呼吸(SBR)与代谢墒(qCO_2)随Cd胁迫浓度的增加呈上升趋势。放线菌、SMBC、SMBN、土壤脲酶活性、蔗糖酶活性、过氧化氢酶活性、磷酸酶活性、脱氢酶活性、SBR及qCO_2与Cd胁迫浓度相关显著或极显著;Cd胁迫条件下脱氢酶活性的变异系数最大为50.0%,表明脱氢酶活性的变化对Cd胁迫反映最为敏感,可作为洞庭湖湿地Cd污染土壤质量评价的灵敏指标。  相似文献   

8.
AM菌对三叶草吸收、累积重金属的影响   总被引:4,自引:0,他引:4  
采用4室根箱培养系统,探讨了Cu、Zn、Pb、Cd 4种重金属复合污染土壤中,丛枝菌根菌对三叶草生长及吸收、累积重金属的作用,结果表明:重金属Cu 100mg/kg、Zn 600mg/kg、Pb 300mg/kg、Cd 10mg/kg的复合污染对三叶草生物量影响较小,但土壤重金属处理使丛枝菌根菌Glomus intraradices和Glomus caledonium对三叶草的侵染率分别降低53%和56%,菌种G.intraradice的菌丝密度降低73%;接种菌根真菌能明显减少重金属复合污染土壤中三叶草对Cu、Cd和Pb的吸收,并强化根系在限制重金属Pb和Cd向地上部运输中的作用,地上部Pb和Cd含量分别下降24.2%~55.3%和65%~97.9%,使三叶草地上部Cd和Pb含量均低于我国牧草重金属安全含量,提高了三叶草可食部分的质量;不同菌根真菌对三叶草吸收、累积及分配重金属的影响有明显差异,Glomus intraradices对减少三叶草对重金属的吸收及其在地上部可食部分的累积的作用大于Glomus caledonium。丛枝菌根菌对于强化三叶草根系对重金属的固持作用,调节生态系统中重金属的生物循环,减轻重金属对食物链的污染风险方面起着重要作用。  相似文献   

9.
研究禁牧封育和水平沟生态恢复措施下黄土丘陵区典型草原土壤生物学特性变化,以期为该区草地生态建设提供依据。采用空间梯度代替时间梯度的方法,在宁夏黄土丘陵区典型草原,选取未封育(放牧)、封育3~15a、水平沟整地后1~15a的土壤,分析0—10,10—20,20—30,30—40cm土壤微生物数量、微生物生物量碳、量氮和土壤酶活性的变化特征及其相关性。结果表明:(1)试验区土壤微生物类群以放线菌为主,达到86.18%~94.43%,数量表现为放线菌细菌真菌,土壤微生物总数、细菌和放线菌数、微生物生物量碳、量氮含量,脲酶、蛋白酶、磷酸酶、蔗糖酶活性随着草地封育年限增加呈上升变化,但水平沟措施下随着整地年限延长呈上升—下降—上升的趋势,2种措施下土壤过氧化氢酶活性变化趋势与其他指标相反,真菌数在封育6a和水平沟6a较低,分别为11.33,4.67cfu/g;(2)各处理下,0—40cm土壤微生物和酶活性整体呈现上层土壤高于下层土壤,土壤微生物、酶活性与有机碳等主要养分含量相关性显著(p0.05);(3)相近恢复年限下,土壤微生物数量、微生物生物量碳、微生物生物量氮以及酶活性总体为封育草地高于水平沟(p0.05);研究认为,禁牧封育较水平沟措施更有利于黄土丘陵区典型草原土壤微生物和酶活性的增加。  相似文献   

10.
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   

11.
Physicochemical properties, total and DTPA (diethylenetriaminepentaacetic acid)-extractable Cu, Zn, Pb and Cd contents, microbial biomass carbon (C) content and the organic C mineralization rate of the soils in a long-term trace metal-contaminated paddy region of Guangdong, China were determined to assess the sensitivity of microbial indices to moderately metal-contaminated paddy soils. The mean contents of total Cu, Zn, Pb and Cd were 251, 250, 171, and 2.4 mg kg-1 respectively. DTPA-extractablc metals were correlated positively and significantly with total metals, CEC, and organic C (except for DTPA-extractable Cd), while they were negatively and highly significantly correlated with pH, total Fe and Mn. Metal stress resulted in relatively low ratios of microbial biomass C to organic C and in remarkable inhibition of the microbial metabolic quotient and C minera]ization rate, which eventually led to increases in soil organic C and C/N. Moreover, microbial respiratory activity showed a stronger correlation to DTPA-extractable metals than to total metal content. Likewise, in the acid paddy soils some "linked" microbial activity indices, such as metabolic quotient and ratios of basal respiration to organic C, especially during initial incubation, were found to be more sensitive indicators of soil trace metal contamination than microbial biomass C or basal respiration alone.  相似文献   

12.
采用添加外源重金属和室内培养的方法,研究了Cu、Cd、Pb、Zn对1个酸性耕作土壤中脲酶、蛋白酶和过氧化物酶活性的影响。Cu添加浓度为50、100、200、400、600mg·kg^-1,Cd添加浓度为1、5、10、15、20mg·kg^-1,Pb添加浓度为100、300、500、800、1200mg·kg^-1,Zn添加浓度为50、100、200、400、800mg·kg^-1。结果表明,Cu、Cd、Pb、Zn对脲酶以抑制作用为主,4种重金属对酶毒性大小依次为Cu〉Cd〉Zn≥Pb,但在培养末期抑制作用都趋于减弱。Ph、Cu、Cd、Zn在前17d的培养中使蛋白酶酶活性急剧降低,以后蛋白酶活性维持在此较低水平上。短时间内(3d)Zn对过氧化物酶具有强烈的抑制作用,但总体看来4种重金属对过氧化物酶活性的影响均较小。上述结果表明,脲酶对农田土壤Cu污染具有指示作用,蛋白酶对农田土壤4种重金属污染都具有指示作用,过氧化物酶仅对土壤Zn的短期污染具有指示作用。  相似文献   

13.
粤北铅锌矿区土壤生态系统微生物特征及其重金属含量   总被引:1,自引:0,他引:1  
粤北大宝山金属矿产资源的开发给生态环境带来了严重危害。对该铅锌矿区土壤的微生物特征进行研究。结果表明:五节芒植物中的元素含量表现为Zn>Pb>Cu>Cd,Zn与土壤元素的相关性最为显著,其次为Pb。与对照土壤相比,矿区土壤的微生物基础呼吸作用增强,但微生物生物量却显著降低,微生物生理生态参数Cmic/Corg、qCO2值明显升高。随着矿区土壤的重金属含量增加,矿区(1#、2#)土壤的生化作用强度明显下降,生化作用表现为与土壤重金属含量呈显著负相关。与非矿区(6#)土壤相比,其中土壤氨化作用、硝化作用、固N作用和纤维素分解作用强度分别下降43.19%~70.01%,70.71%~92.02%,58.54%~87.76%和55.00%~79.60%。生化作用表现为与土壤中重金属含量呈显著负相关。土壤微生物活性下降是矿区土壤生态系统遭受破坏的重要标志之一,也是矿区土壤微生物生态演变的重要因素之一。土壤微生物活性降低削弱了矿区土壤中C、N营养元素的循环速率和能量流动。  相似文献   

14.
Soil samples were collected to a depth of 0 to 10 cm from several sites near a secondary Pb smelter during the summer of 1976 in order to determine heavy metal concentrations of soil and enumerate soil microorganisms and earthworms. Chemical analyses indicated that abnormally high concentrations of Pb, As, Cd, and Cu decreased with increasing distance from the source and population counts of bacteria, actinomyces, fungi, nematodes and earthworms increased with increasing distance from the smelter. The negative correlation coefficients between bacteria, actinomyces, fungi, and nematodes and the level of Pb, As, Cd, and Cu in the soil were statistically significant. The microflora of the contaminated soil was altered and the marked quantitative reduction or elimination of organisms were attributable to heavy metal pollution emission from the secondary Pb smelter.  相似文献   

15.
Three soil types-Calcaric Phaeozem, Eutric Cambisol and Dystric Lithosol-in large container pots were experimentally contaminated with heavy metals at four different levels (light pollution: 300 ppm Zn, 100 ppm Cu, 50 ppm Ni, 50 ppm V and 3 ppm Cd; medium pollution: twofold concentrations; heavy pollution: threefold concentrations; uncontaminated control). We investigated the prognostic potential of 16 soil microbial properties (microbial biomass, respiration, N-mineralization, 13 soil enzymes involved in cycling of C, N, P and S) with regard to their ability to differentiate the four contamination levels. Microbial biomass and enzyme activities decreased with increasing heavy metal pollution, but the amount of decrease differed among the enzymes. Enzymes involved in the C-cycling were least affected, whereas vartous enzyme activities related to the cycling of N, P and S showed a considerable decrease in activity. In particular, arylsulfatase and phosphatase activities were dramatically affected. Their activity decreased to a level of a few percent of their activities in the corresponding unpolluted controls. The data suggest that aside from the loss of rare biochemical capabilities-such as the growth of organisms at the expense of aromatics (Reber 1992)-heavy metal contaminated soils lose very common biochemical propertities which are necessary for the functioning of the ecosystem. Cluster analysis as well as discriminant analysis underline the similarity of the enzyme activity pattern among the controls and among the polluted soils. The trend toward a significant functional diversity loss becomes obvious already at the lowest pollution level. This implies that concentrations of heavy metals in soils near the current EC limits will most probably lead to a considerable reduction in decomposition and nutrient cycling rates. We conclude that heavy metal pollution severely decreases the functional diversity of the soil microbial community and impairs specific pathways of nutrient cycling.Dedicated to Professor J. C. G. Ottow on the occasion of his 60th birthday  相似文献   

16.
[目的]揭示全膜覆土穴播种植方式对土壤微生态环境的影响,为其进一步推广应用提供参考依据。[方法]采用田间试验,研究不同覆膜种植方式对冬小麦各生育期土壤微生物数量和微生物量的影响。[结果]全膜覆土穴播方式可明显增加冬小麦各生育期的土壤微生物数量(除自生固氮细菌)以及微生物量C和N。与传统栽培方式相比,全膜覆土穴播方式和全膜不覆土穴播方式土壤细菌、放线菌、真菌分别平均提高32.07%和10.23%,31.27%和10.57%,44.56%和26.51%;氨化细菌和硝化细菌分别平均提高32.54%和37.80%,79.20%和107.22%;微生物量C和N含量分别平均提高29.90%,20.68%%和29.41%,18.02%。各处理土壤微生物数量和微生物量整体从小麦返青期开始升高,到拔节期或抽穗期达到峰值,生长后期有所下降。[结论]全膜穴播方式下土壤微生物数量和微生物量土壤随土层的加深呈减少的趋势。全膜覆土穴播方式有利于冬小麦土壤微生物数量和微生物量的提高。  相似文献   

17.
采用盆栽试验,在红壤和潮土中分别施入土壤重量5%、10%和15%的鸡粪或垃圾有机肥,研究其对苋菜(Amaranthustricoclor L.)生长、土壤化学性状及重金属含量的影响。结果表明,与对照相比,施入鸡粪或垃圾有机肥显著增加苋菜的鲜重、主根长和株高;土壤有机质、EC值、速效磷和速效钾含量均大幅增加,但土壤全氮含量无明显变化。与对照相比,潮土中施用两类有机肥使苋菜植株Cu和Zn含量分别增加26.3%~36.0%和1.2%~20.3%,但未超出国家食品卫生标准对Cu和Zn的允许含量;Cd、Cr和Pb含量都较对照降低,没有出现积累现象。红壤施用两类有机肥,苋菜植株中Zn、Cd和Pb分别下降42.7%~59.9%、0~48.9%和4.1%~71.3%,达到显著水平。有机肥的施入量为5%时,两类土壤中重金属都没有出现明显积累;当施入量为10%和15%时,两类土壤的Cu、Cd、Cr和Pb含量显著增加,出现明显积累趋势,其中除了施用鸡粪使土壤有效Cu含量下降外,两种有机肥均增加了两类土壤中重金属Zn、Cd、Cr和Pb的有效态含量。试验结果提示,从土壤培肥与环境质量安全综合考虑,有机肥的用量应控制在一个适宜范围内。  相似文献   

18.
The size of the microbial biomass and dehydrogenase activity were measured in air-dried and rewetted apple orchard surface soils with accumulation of Cu, Pb, and As due to the application of Bordeaux mixtures and lead arsenate. The largest amounts of total Cu, Pb, and As found in the soils used were 1,108, 1,271, and 209 mg kg-1 soil, respectively. The amounts of 0.1 M HCl-extractable heavy metals were strongly correlated with the total amounts, while those of 0.1 M CaCl2-extractable heavy metals, except for As, increased significantly with decreasing soil pH. The amounts of microbial biomass C and N, expressed on a soil organic C and total N basis, respectively, were each negatively correlated with the amounts of total and 0.1 M HCl-extractable Cu. On the other hand, the dehydrogenase activity was not affected by the amounts of total and 0.1 M HCl-extractable heavy metals, and was negatively correlated with the amount of 0.1 M CaCl2-extractable Cu and positively with the soil pH. Higher significant correlations were observed when the dehydrogenase activity was calculated per unit of soil organic C. Thus the microbial biomass was adversely affected by the slightly soluble fractions of Cu accumulated in apple orchard soils, whereas the dehydrogenase activity was affected by the water-soluble and exchangeable Cu of which amount depended on the soil pH. It is suggested that the microbial biomass and dehydrogenase activity expressed on a soil organic matter basis could become useful indicators for assessing the effects of heavy metals on the size and activity of the microbial biomass in soils differing in organic matter contents.  相似文献   

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