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1.
铬污染对土壤环境质量生物特征指标的影响研究   总被引:2,自引:0,他引:2  
土壤微生物生物量碳、微生物生物量氮、微生物熵、代谢熵、土壤酶活性等是表征土壤质量的重要生物学指标,以辽宁省沈阳市新城子铬渣堆存区附近土壤为研究对象进行了土壤生物学指标的测定。污染土壤的重金属元素主要是铬,对土壤的脲酶和过氧化氢酶活性具有不同程度的抑制作用,有效铬与微生物量氮、微生物熵均呈显著负相关,而与代谢熵呈显著正相关。  相似文献   

2.
以铜锌冶炼厂附近的水稻土为例 ,研究了重金属复合污染对土壤微生物群落的影响 .结果表明 ,有效铜、锌、镉、铅与微生物生物量碳、微生物生物量氮、微生物商、微生物生物量氮 全氮均呈显著负相关 .重金属污染均能降低细菌、真菌和放线菌的数量 .用BIOLOG生态盘研究了重金属污染对微生物群落结构的影响 ,发现重金属污染明显影响了微生物群落结构 ,反映在典型变量 1(CV1)与重金属元素含量呈极显著正相关 ,因此认为典型变量 1是反映重金属污染程度的有效指标 .经逐步回归分析发现 ,有效铜是影响典型变量 1最主要的因素 .  相似文献   

3.
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   

4.
茂兰保护区小生境土壤微生物活性研究   总被引:4,自引:2,他引:2  
以茂兰国家级自然保护区内三种植被(原生林、次生林、灌木林)下的土壤为研究对象,探讨了小生境土壤微生物数量、微生物量碳(BC)、微生物量氮(BN)、微生物熵(qSMBC)、基础呼吸及代谢熵(qCO2)的变化特征。结果表明:微生物数量、BC、BN、基础呼吸、qSMBC基本呈现石沟〉土面的趋势,qCO2则表现为土面〉石沟,即...  相似文献   

5.
水位梯度对小叶章湿地土壤微生物活性的影响   总被引:5,自引:1,他引:4  
通过3 a野外控制试验,研究了不同水位梯度(-10~30 cm)条件下,小叶章湿地植物地上生物量和0~15 cm以及15~50 cm土壤总有机碳(TOC)、微生物量碳(MBC)、基础呼吸(BR)、微生物商(Cmic/Corg)、代谢商(qCO2)的变化规律.结果表明,不同水位条件下植物地上生物量差异显著(p0.05),积水水位10 cm的植物地上生物量最高,且积水水位0~20 cm保持较高的生产力;积水水位变化对土壤TOC、MBC、BR、Cmic/Corg、qCO2影响显著(p0.05).土壤TOC和BR对积水水位变化的响应趋势一致,0~15 cm土壤TOC和BR在零积水水位最高;15~50 cm土壤TOC和BR随着积水水位的升高而降低,与土壤MBC和Cmic/Corg的变化趋势相同,其中MBC变化最为明显;而qCO2随着积水水位的增加而增大.随着积水水位的增加,土壤微生物群落发生改变和土壤微生物活性降低,其中积水水位30 cm的土壤微生物活性最低,对有机碳的累积与分解过程产生影响.  相似文献   

6.
不同植被恢复模式对黄土丘陵区侵蚀土壤微生物量的影响   总被引:23,自引:0,他引:23  
为了解侵蚀环境下植被恢复对土壤微生物量的影响,以典型侵蚀环境黄土丘陵区纸坊沟流域生态恢复30年植被长期定位试验点为研究对象,选取坡耕地为参照,分析了植被恢复过程中土壤微生物量、呼吸强度、代谢熵及理化性质的演变特征。结果表明,侵蚀环境下植被恢复后土壤微生物量碳、氮、磷显著增加,增幅分别为109.01%~144.22%、34.17%~117.09%和31.79%~79.94%,微生物呼吸强度增加26.78%~87.59%,代谢熵降低57.45%~77.49%,微生物量的增大和活性增强进一步促进了土壤性状的改善。相关性分析结果显示微生物量碳、磷、呼吸强度与土壤养分相关性极为密切,显然,土壤微生物量可以作为评价土壤质量的生物学指标。不同植被恢复模式对土壤质量改善作用不同,总体来说混交林作用效果最好,刺槐和柠条纯林次之,荒草地和油松纯林较差,在人工促进生态恢复过程中应持以混交林为主,纯林为辅的原则。  相似文献   

7.
土壤微生物活性对石油原油、铅镉及其复合污染的响应   总被引:9,自引:1,他引:8  
随着工农业生产的迅猛发展、石油原油及重金属等原材料的广泛开采与使用,使石油原油、重金属及其复合污染日趋加重,对环境及人类的危害也越来越大.采用室内培养试验,利用人工模拟污染土壤,研究石油原油、铅镉及其复合污染胁迫对土壤微生物活性的影响.试验设置4个处理:1新鲜土壤(S)作为对照;21000 mg·kg~(-1)石油原油污染土壤(SP);3500 mg·kg~(-1)铅和50 mg·kg~(-1)镉污染土壤(SH);41000mg·kg~(-1)石油原油污染、500 mg·kg~(-1)铅和50 mg·kg~(-1)镉复合污染土壤(SPH).结果表明:与对照相比,SH、SP、SPH处理土壤基础呼吸强度最高分别增加约100.99%、36.61%、25.80%,铅镉污染(SH)对土壤基础呼吸影响最显著,反映出重金属污染对土壤基础呼吸的激活作用最强;石油原油污染(SP)与石油原油及铅镉复合污染(SPH)刺激土壤微生物量碳增加,SP处理最高增加了90.25%,而铅镉污染(SH)则使土壤微生物量碳减少.不同土壤酶对污染处理的响应不同,其中,石油原油污染(SP)对FDA水解酶及脱氢酶活性表现为激活作用;石油原油或石油原油及铅镉复合污染(SP、SPH)对脲酶及过氧化氢酶活性主要表现为激活作用,而铅镉污染(SH)对脲酶及过氧化氢酶活性主要表现为抑制作用.该研究表明,石油原油及铅镉复合污染对土壤微生物活性的影响与石油原油或铅镉污染的影响不同,它们之间存在着明显的交互作用.  相似文献   

8.
不同海拔对干热河谷土壤微生物量及活性的影响   总被引:2,自引:0,他引:2       下载免费PDF全文
薛萐  李鹏  李占斌  刘国彬  郑郁 《中国环境科学》2011,31(11):1888-1895
以四川宁南县金沙江下游的河谷地带为研究区域,选择不同海拔下的土壤为研究对象,研究不同海拔下土壤微生物量及其活性的变异特征.结果表明,在干热河谷区,海拔对微生物量、基础呼吸强度、诱导呼吸强度(SIR)影响显著,且随着海拔高度的升高,上述指标呈显著线性增加.在海拔705~1005m处随着干热风影响的减少,微生物量及其活性逐渐增加,其后随着海拔的继续升高,干热风影响降低,微生物量及其活性总体趋于稳定.海拔1005~1400m可以作为是干热风影响的过渡区.微生物量、基础呼吸强度、SIR具有明显的干湿季变化且变化规律相似,其中干季微生物量及其活性显著低于湿季.干季代谢商(qCO2)随海拔先降低后升高并趋于稳定,湿季没有显著差异.干季和湿季土壤微生物量与理化属性具有较强的相关性,可以作为评价土壤肥力的指标.上述研究结果表明,在金沙江干热河谷区,干热风是影响土壤微生物量及其活性的主要因子之一,从生态恢复角度出发,应该尽可能的减少干热风和水分对土壤和植被的胁迫作用,促进该区域生态的可持续性发展.  相似文献   

9.
All the regulations that define a maximum concentration of metals in the receiving soil are based on total soil metal concentration. However, the potential toxicity of a heavy metal in the soil depends on its speciation and availability. We studied the effects of heavy metal speciation and availability on soil microorganism activities along a Cu/Zn contamination gradient. Microbial biomass and enzyme activity of soil contaminated with both Cu and Zn were investigated. The results showed that microbial biomass was negatively affected by the elevated metal levels. The microbial biomass-C (Cmic)/organic C (Corg) ratio was closely correlated to heavy metal stress. There were negative correlations between soil microbial biomass, phosphatase activity and NH4NO3 extractable heavy metals. The soil microorganism activity could be predicted using empirical models with the availability of Cu and Zn. We observed that 72% of the variation in phosphatase activity could be explained by the NH4NO3-extractable and total heavy metal concentration. By considering different monitoring approaches and different viewpoints, this set of methods applied in this study seemed sensitive to site differences and contributed to a better understanding of the effects of heavy metals on the size and activity of microorganisms in soils. The data presented demonstrate the relationship between heavy metals availability and heavy metal toxicity to soil microorganism along a contamination gradient.  相似文献   

10.
The addition of simple substrates could affect the microbial respiration in soils. This substrate-induced respiration is widely used to estimate the soil microbial biomass, but little attention has been paid to its influence on the changes of community-level physiological profiles. In this study, the process of microbial communities responding to the added substrate using sole-carbon-source utilization (BIOLOG) was investigated. BIOLOG is biased toward fast-growing bacteria; this advantage was taken to detect the prompt response of the active microbial communities to the added substrate. Four soil samples from agricultural fields adjacent to heavy metal mines were amended with L-arginine, citric acid, or D-glucose. Substrate amendments could, generally, not only increase the metabolic activity of the microbial communities, but also change the metabolic diverse patterns compared with no-substrate control. By tracking the process, it was found that the variance between substrate-induced treatment and control fluctuated greatly during the incubation course, and the influences of these three substrates were different. In addition, the application of these induced changes to discriminate soil microbial communities was tested. The distance among all samples was greatly increased, which further showed the functional variance among microbial communities in soils. This can be very useful in the discrimination of microbial communities even with high similarity.  相似文献   

11.
1Introduction1.1BasicconceptofmicrobialbiomasSoilmicrobialbiomasisdefinedasthelivingpartofsoilorganicmater,excludingplantroot...  相似文献   

12.
五氯酚(PCP)污染土壤模拟根际的修复   总被引:10,自引:0,他引:10       下载免费PDF全文
模拟根际环境条件下,研究了根系分泌物对五氯酚(PCP)污染土壤的修复效应及其机理.结果表明,PCP的土壤残留消解行为随根系分泌物添加剂量的不同显现相应差异.土壤中微生物生物量碳(Cmic),氮(Nmic),碳氮比(Cmic/Nmic),微生物商及酶等土壤生化指标与PCP的消解均存在一定程度的相关性.低剂量(13.38TOCmg/kg)处理,PCP土壤甲醇可提态残留量最小,修复效应最佳,此时土壤微生物生物量碳,氮,微生物商,脱氢酶活性等显现最大响应,为最适根系分泌物添加剂量.修复机理可能在于其诱导的土壤环境质量友好演变过程.逐步回归分析结果显示,微生物生物量氮,微生物商及脱氢酶活性可作为表征根际修复PCP污染土壤时土壤环境质量友好演变过程的敏感生物学指标.  相似文献   

13.
通过在石油污染土壤中接种不同种类食细菌线虫,探究土壤微生物活性和多样性的变化.本试验设置5个处理:杀灭线虫土壤(NFS)、石油污染土壤(SP)、在石油污染土壤中分别接种不同线虫,即秀丽隐杆线虫(Caenorhabditis elegans,SPN1)、头叶属线虫(Cephalobus persegnis,SPN2)和小杆属线虫(Rhabditis marina,SPN3).结果表明,经过168d试验,和NFS相比,SP的土壤基础呼吸和脲酶活性增大,而微生物量碳含量和蔗糖酶活性减小.和SP相比,SPN1、SPN2、SPN3的基础呼吸增大,微生物量碳减少了34.59%~72.48%,蔗糖酶活性增加了15.66%~22.89%.SP、SPN1、SPN2和SPN3的微生物的丰富度(S)分别下降了5.00,7.25,2.50和9.75,Shannon-Wiener指数(H')分别显著下降了0.18,0.15,0.15和0.23.不同种类的食细菌线虫可通过捕食作用对石油污染土壤微生物活性及多样性产生影响并有种间差异,有利于提高石油污染土壤微生物活性,促进石油降解.  相似文献   

14.
Heavy metal pollution has received increasing attention in recent years mainly because of the public awareness of environmental issues. In this study we have evaluated the effect of cadmium (Cd) on enzymes activity, substrate utilization pattern and diversity of microbial communities in soil spiked with 0, 20, 40, 60, 80, and 100 mg/kg Cd, during 60 d of incubation at 25℃. Enzyme activities determined at 0, 15, 30, 45, and 60 d after heavy metal application(DAA) showed marked declines for various Cd treatments, and up to 60 DAA, 100 mg/kg Cd resulted in 50.1%, 47.4%, and 39.8% decreases in soil urease, acid phosphatase and dehydrogenase activities, respectively to control. At 60 DAA, substrate utilization pattern of soil microbial communities determined by inoculating Biolog ECO plates indicated that Cd addition had markedly inhibited the functional activity of soil microbial communities and multivariate analysis of sole carbon source utilization showed significantly different utilization patterns for 80 and 100 mg/kg Cd treatments. The structural diversity of soil microbial communities assessed by PCR-DGGE method at 60 DAA, illustrated that DGGE patterns in soil simplified with increasing Cd concentration, and clustering of DGGE profiles for various Cd treatments revealed that they had more than 50% difference with that of control.  相似文献   

15.
Elevated atmospheric CO2 can influence soil C dynamics in agroecosystems. The e ects of free-air CO2 enrichment (FACE) and N fertilization on soil organic C (Corg), dissolved organic C (DOC), microbial biomass C (Cmic) and soil basal respiration (SBR) were investigated in a Chinese wheat field after expose to elevated CO2 for four full years. The results indicated that elevated CO2 has stimulative e ects on soil C concentrations regardless of N fertilization. Following the elevated CO2, the concentrations of Corg and SBR were increased at wheat jointing stage, and those of DOC and Cmic were enhanced obviously across the wheat jointing stage and the fallow period after wheat harvest. On the other hand, N fertilization did not significantly a ect the content of soil C. Significant correlations were found among DOC, Cmic, and SBR in this study.  相似文献   

16.
红河州某矿区周围采集土壤样品。研究矿区样品的土壤呼吸作用、酶活性等部分生物学指标。实验结果表明矿区周围土壤的微生物学指标随距离矿区的远近呈现出一定的变化特征。  相似文献   

17.
Impacts of newly added organic carbon (C) and inorganic nitrogen (N) on the microbial utilization of soil organic matter are important in determining the future C balance of terrestrial ecosystems. We examined microbial responses to cellulose and ammonium nitrate additions in three soils with very different C and N availability. These soils included an organic soil( 14.2% total organic C, with extremely high extractable N and low labile C), a forest soi1(4.7% total organic C, with high labile C and extremely low extractable N), and a grassland soil(1.6% total organic C, with low extractable N and labile C). While cellulose addition alone significantly enhanced microbial respiration and biomass C and N in the organic and grassland soils, it accelerated only the microbial respiration in the highly-N limited forest soil. These results indicated that when N was not limited, C addition enhanced soil respiration by stimulating both microbial growth and their metabolic activity, New C inputs lead to elevated C release in all three soils, and the magnitude of the enhancement was higher in the organic and grassland soils than the forest soil. The addition of cellulose plus N to the forest and grassland soils initially increased the microbial biomass and respiration rates, but decreased the rates as time progressed. Compared to cellulose addition alone, cellulose plus N additions increased the total C-released in the grassland soil, but not in the forest soil. The enhancement of total C- released induced by C and N addition was less than 50% of the added-C in the forest soil after 96 d of incubation, in contrast to 87.5% and 89.0% in the organic and grassland soils. These results indicate that indigenous soil C and N availability substantially impacts the allocation of organic C for microbial biomass growth and/or respiration, potentially regulating the turnover rates of the new organic C inputs.  相似文献   

18.
退耕地养分和微生物量对土壤酶活性的影响   总被引:3,自引:0,他引:3       下载免费PDF全文
王兵  刘国彬  薛萐 《中国环境科学》2010,30(10):1375-1382
为了解侵蚀环境下植被恢复土壤酶活性对土壤养分和微生物量指标的响应规律,以典型侵蚀环境黄土丘陵区纸坊沟流域生态恢复1~50年撂荒地长期定位试验点为研究对象,采用典型逐步回归和非线性拟合来分析各指标间的耦合关系.结果表明,土壤酶活性除a淀粉酶外,均与土壤养分因子和微生物量指标有较高的相关性(P<0.05).在土壤酶活性和养分因子间,尿酶和纤维素酶主要受总氮影响,碱性磷酸酶、过氧化氢酶、蔗糖酶和多酚氧化酶主要受可利用氮影响,蔗糖酶和多酚氧化酶还受到有机质的影响;在土壤酶活性和微生物量指标间,尿酶主要受微生物量磷影响,碱性磷酸酶、过氧化氢酶、蔗糖酶和多酚氧化酶均受微生物量碳影响,纤维素酶则受微生物量氮影响,但多酚氧化酶与可利用氮、有机质和微生物量碳呈负相关;此外,它们之间均存在良好的对数关系(y=b+alnx, P<0.05).  相似文献   

19.
土壤-青菜系统中铅污染对土壤微生物活性及多样性的影响   总被引:14,自引:1,他引:14  
采用盆栽方法研究了青菜种植条件下2种不同类型的人为铅污染土(黄松田土和黄红壤)中不同处理对土壤微生物生物量、生理生态参数以及群落结构的影响.结果表明,2种土壤在外源铅含量为100和300 mg·kg-1时,土壤微生物生物量有微小增加,而高浓度铅污染使土壤微生物生物量显著降低.在高浓度铅污染土壤中,微生物生理生态参数发生明显变化,微生物生物量碳/土壤有机质碳(Cmic/Corg)逐渐下降,代谢熵(qco2)明显上升,表明土壤微生物群落处于胁迫状态.结果还显示,铅污染对土壤微生物的影响与不同的管理方式(青菜种植情况)以及土壤中有机质、粘粒含量等有关,在种植青菜、有机质和粘粒含量高的土壤中,土壤微生物各项参数变化要小.对21种磷脂脂肪酸(PLFA)的图谱进行分析,结果表明,受铅污染土壤的微生物群落结构组成伴随着功能参数的变化而发生了改变;随着铅污染程度的增强,指示真菌和放线菌类的脂肪酸增加,而革兰氏阳性菌与革兰氏阴性菌脂肪酸比值下降.  相似文献   

20.
采用原位化学固定法,通过向土壤中添加修复剂磷肥和稻草,研究其对土壤中重金属形态、植物有效性和土壤微生物活性的影响.结果表明:添加磷肥和稻草可改变土壤中重金属Cu、Cd、Zn和Pb的形态分布,使土壤中重金属高植物有效性的酸提取态比例降低;其中以磷肥+稻草组下降最多,酸提取态Cu比例从对照的50.4%降至8.7%,酸提取态Cd从56.2%降至29.5%,酸提取态Zn从32.9%降至25.1%,酸提取态Pb从21.1%降至检测限以下.磷肥、稻草及磷肥+稻草修复土壤后,4种重金属在油菜(Brassica napus L.)中的含量显著降低,且油菜干生物量由对照的0.46 g分别增至0.97、1.53和2.28 g.同时土壤中微生物活力得到提高,土壤微生物生物量碳由对照的19.16 mg/kg最高增至966.71 mg/kg,而代谢呼吸率由对照的21.95 mg/(kg.h)最大升至158.63 mg/(kg.h).证明磷肥和稻草可降低重金属对油菜和土壤微生物的毒性胁迫,改善污染土壤质量,促进植物和土壤微生物的生长.   相似文献   

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