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1.
长春市城市土壤中重金属元素的积累及其微生物特性研究   总被引:10,自引:2,他引:10  
由于人为活动的影响,长春市城市土壤中重金属Cu、Zn、Pb、Cd已有了显著积累。在重金属的胁迫下,土壤微生物特征发生了明显变化,微生物代谢活动明显增强,但微生物生物量却有较大的降低。微生物生理生态参数土壤微生物量碳与总有机碳的比值(Cmic/Corg)和代谢商QCO2(微生物呼吸作用强度与微生物量碳的比值)变化异常。研究表明,微生物特性可作为城市土壤环境中重金属含量变异的有效指标。  相似文献   

2.
对中国东部不同纬度带的6个地区的土壤微生物碳进行了研究。结果表明土壤微生物碳的分布受地理位置的影响较为明显:由北向南,东北地区的土壤微生物碳要高于其他地区。作为土壤有机质变化的灵敏度指标———微生物熵(微生物碳/总有机碳),在同一耕作方式下,其在不同地区的变化受土壤利用方式的影响较为明显:在连作系统下,菜地>粮地;而在轮作系统下,粮食-蔬菜轮作>蔬菜-蔬菜轮作。利用相关性分析寻求影响微生物碳分布的环境因素,结果表明,微生物碳(Micro-C)与土壤有机碳(TOC)、全氮(TN)、土壤含水率呈极显著正相关,而有机碳和全氮的分布主要受地理位置的影响。对不同土壤类型的微生物碳和微生物熵进行相关性分析,结果显示pH、年均温、含水率、TOC和TN是主要影响因素,关键影响因素因土壤类型不同而各异。  相似文献   

3.
以小兴安岭湿地土壤为研究对象,基于室内分析和冻融实验,分析了冻融作用下不同年代排水造林湿地土壤微生物量、酶活性以及有机碳密度的变化趋势,探讨了不同年代排水造林湿地土壤微生物活性与有机碳密度之间的相关关系,以期为深入认识冻融期间高寒高纬度地区土壤碳循环过程提供参考依据。结果表明:(1)冻融次数对土壤微生物量碳、氮含量影响显著(P<0.05),经历9次冻融循环后,土壤微生物量碳、氮含量比冻融前明显减少;在三种不同年代排水造林的湿地中,排水时间越短,土壤微生物量碳、氮含量下降幅度越大,表明长时间的反复冻融交替可能导致土壤微生物量的进一步减少。(2)冻融前后,土壤蔗糖酶和淀粉酶活性均表现为下降趋势,且多次冻融交替后,-25~5℃冻融处理比-5~5℃冻融处理酶活性更低,表明较大的冻融温差更能降低土壤酶的活性度。(3)随着冻融次数和冻融温度的变化,四种湿地的土壤有机碳密度基本保持稳定,但其与土壤微生物量、酶活性却存在着高度的正相关性,通过探究微生物活性所调控的土壤过程,可以直接或间接了解土壤有机碳密度的变化趋势,便于从本质上验证其响应机制。  相似文献   

4.
彭艳  李心清  程建中  邢英  闫慧 《地球化学》2010,39(3):266-273
土壤微生物特性是土壤修复的指示因子,近年来西南喀斯特地区退化土壤的相关研究较多,但不同植被类型的土壤微生物特性的变化研究相对较少。对贵阳郊区耕作土壤、灌丛、女贞人工纯林和马尾松人工纯林表层土壤(0~10cm)微生物生物量碳(SMBC)、微生物呼吸(MR)和微生物代谢熵(qCO2)的研究结果表明,土壤SMBC和MR均表现为次生林高于耕作土壤,灌丛最高;与qCO2相反,马尾松林土壤微生物活动显著弱于其他样地,不同植被类型土壤微生物活动均表现为在秋季相对较强。与植被类型的显著影响相比,季节变化、植被与季节的交互作用对SM—BC和MR的影响不明显。SMBC与土壤温度不相关,与土壤含水量呈极显著相关而土壤含水量季节变化不明显。MR与土壤温度和含水量均无显著相关性可能是季节变化对两者影响不明显的主要原因,但需要大量区域样本进一步证实。认为演替初期的灌丛比人工阔叶或针叶纯林更有利于土壤微生物群落的生长,土壤有机质积累较快,植被自然恢复是喀斯特退化土壤恢复初期更适合的徐径.  相似文献   

5.
为了研究马衔山多年冻土区和非多年冻土区土壤微生物碳氮、土壤酶活性的差异,选取多年冻土区、季节冻土区和交界区为对象,分析了0~30 cm土层微生物碳氮和转化酶、脲酶、中性磷酸酶、淀粉酶、过氧化氢酶、多酚氧化酶酶活性不同季节的变化特征。结果表明:全氮、总有机碳、微生物量碳氮与多数土壤酶之间呈显著相关关系。在不同区域,土壤微生物碳氮均在0~10 cm含量最高,10~20 cm次之,20~30 cm最低。土壤微生物碳氮在生长季表现为含量逐渐增加,但是多年冻土区与季节冻土区差异不大。土壤酶活性在深度方面表现与微生物碳氮含量变化一致。土壤酶并无的季节变化规律。在多年冻土区,转化酶、多酚氧化酶和磷酸酶活性明显高于非多年冻土区。本研究表明,尽管多年冻土区的植被和土壤总有机碳明显高于非多年冻土区,其土壤微生物碳氮含量相当,且一些土壤酶活性也相当。说明非多年冻土区土壤的生物地球化学相对强度较大。因此,多年冻土退化后可能会导致生态系统的退化。  相似文献   

6.
大坝运行对水库消落带土壤环境影响研究进展   总被引:2,自引:0,他引:2  
周紫璇  陆颖  钟荣华  毕晓静  袁旭  敦越 《水文》2019,39(1):15-19
水库消落带土壤环境对水库水位变化的响应非常明显。通过分析大坝运行下水库消落带土壤理化性质、重金属、微生物特性和土壤侵蚀变化特征,总结水位波动对消落带土壤性质的影响过程与趋势。研究表明水库消落带土壤历经长时期干湿交替过程后,其物理性质发生较大改变,但具体变化过程和趋势仍存争议。土壤化学性质中,碳、氮和磷元素迁移转化趋势明显,但各不相同。土壤重金属元素时空分异特征改变。土壤微生物总体上呈减少趋势,并且在海拔梯度上差异显著。土壤侵蚀是消落带面临的主要环境问题。未来应采用物理模型方法,定量分析水位与土壤性质相关关系,并加强对西南高山峡谷区高坝大库消落带的研究。  相似文献   

7.
青藏公路沿线土壤微生物数量变化及其影响因素研究   总被引:4,自引:3,他引:1  
以青藏公路沿线土壤为研究对象, 研究了土壤可培养微生物数量的变化特征及影响因子. 结果表明: 青藏公路沿线土壤可培养微生物数量为0.77×106~2.44×107CFU·g-1dw; 沿青藏公路从南(申格里贡山)到北(西大滩), 土壤可培养细菌与真菌数量表现为先迅速减少, 然后渐趋平缓; 可培养放线菌数量先减少后增加; 土壤总氮、 有机碳和含水量逐渐降低, 而pH值逐渐升高. C/N比率与真菌/细菌比率变化趋势相似, 均为先增加后减少. 土壤可培养微生物数量与理化因子的相关性分析结果表明: 青藏公路沿线土壤微生物数量主要受纬度和土壤理化性质的影响, 表现为微生物数量与纬度和pH值显著负相关, 而与总氮、 有机碳和含水量极显著正相关.  相似文献   

8.
以广西平果喀斯特生态系统国家野外科学观测研究站及周边地块的三种土地利用方式(退耕林地、退耕草地、耕地(甘蔗地和玉米地))为研究对象,通过采集0~15 cm表层土壤,分析土壤的理化性质和土壤碳、氮、磷全量与易利用组分及其关系,以期能更加准确地理解和把握退耕还林还草、土地利用方式转变对喀斯特地区土壤碳、氮、磷全量及易利用组分的影响。结果表明:(1)与耕地相比,退耕后林地和草地土壤pH值显著升高,大团聚体、速效氮显著增加,微团聚体、速效磷显著减少。(2)退耕后林地和草地土壤有机碳较耕地显著增加,林地和草地分别是甘蔗地的1.98和1.88倍,分别是玉米地的2.15和2.04倍。林地和草地土壤微生物生物量碳、全氮、微生物生物量氮较耕地也明显提高。对于磷,草地全磷(1.04 g·kg-1)最高,其次玉米地(0.81 g·kg-1),且甘蔗地和玉米地的可溶性磷均显著高于林地和草地。在土壤碳氮磷生态化学计量比方面,林地的OC/TP、TN/TP显著高于草地和耕地,而草地和耕地没有显著差异。(3)土壤容重、团聚体结构、pH、速效氮、速效磷都与土壤碳、氮、磷全量与...  相似文献   

9.
在气候变暖背景下,围栏封育是常见的草地生态系统管理手段,明确变暖和围封对土壤有机碳的积累过程,对于认识草地生态系统碳源汇效应十分重要。本文以氨基糖为有机碳组分的标识物表征死亡的微生物量,选择连续15年增温和围栏封育处理下的样地,分析增温和围栏封育对高寒草原区微生物残体碳积累的影响。结果表明:相比对照,增温+围封和围封处理细菌、真菌来源碳无显著差异,但细菌残体碳比真菌残体碳对土壤有机碳相对贡献大;增温+围封和围封处理与对照相比,氨基糖总量影响不显著,但是显著降低了土壤中微生物碳长期周转,短期周转不显著;总氨基糖、真菌来源碳、细菌来源碳与电导率、含水率、土壤有机碳(SOC)、全氮(TN)显著正相关。综上所述,细菌残体碳比真菌残体碳对土壤有机碳相对贡献大,增温和围栏封育对微生物残体碳影响不显著。  相似文献   

10.
退化喀斯特植被的恢复机理一直是近年来土壤学和生态学研究的热点。通过分析退化喀斯特植被恢复过程中土壤微生物数量、土壤生化作用强度、土壤微生物生物量,研究了贵州花江喀斯特高原生态综合治理示范区内土壤微生物活性的变化。结果表明:退化喀斯特植被恢复过程中土壤的微生物活性存在较大差异。随着退化喀斯特植被的恢复,土壤细菌、真菌、放线菌三大微生物数量及微生物总数明显上升,表现为乔木群落阶段〉灌木群落阶段〉草本群落阶段〉裸地阶段,且细菌较真菌和放线菌相比占绝对优势,其在微生物总数中分别占95.95%,93.49%,92.32%和92.48%;各主要生理类群的数量呈上升趋势,且氨化细菌〉固氮菌〉纤维素分解菌〉硝化细菌,土壤生化作用强度增强;土壤微生物生物量碳明显增加,微生物生物量碳与土壤有机碳(P〈0.01)呈显著正相关关系。土壤微生物是表征退化喀斯特植被恢复过程中土壤质量的重要特征之一,反映出随着退化喀斯特植被的恢复土壤质量也在逐渐恢复。   相似文献   

11.
Urban soil research has invoked great interest in recent years.Previous studies were mainly focused on urban soil physics and chemistry,and soil geography to constrain the source,distribution,transport and deposition of pollutants such as heavy metals and health-hazardous organic matter,bu t litte has been done on soil microbiology.In this paper,the authors reported the variation of microbial features in urban soils compared with those from adjacent rual areas.The results show great changes in basal respiration rates microbial biomass and ecophysiological parameters have taken place in urban environment because of the anthropogenic stress, thus activating the microorganisms.As a result,much more energy,carbon is consumed at a low utilization efficiency.So microbial biosensors can be used to indicate urban environmental pollution effectively.  相似文献   

12.
Biolog研究表明,英国阿伯丁市城市土壤的微生物群落结构显著有别于农村土壤,并使微生物对碳源的消耗量增加,消耗速度加快。城市土壤中不仅重金属Cu,Pb,Zn,Ni的含量明显高于农村土壤,而且其化学形态的主成分分析表明,有效态Pb,Zn,Cu及有机态Ni和Cu是导致城市土壤区分于农村土壤的主要因子。相关性分析表明,Biolog的这种变化规律与重金属的上述化学形态密切相关;典型变量分析表明,重金属对城市土壤微生物群落结果的这种损伤具有长期性效应及不可恢复性。  相似文献   

13.
Theeco environmentalpollutioncausedbyminingdevelopmentisaworldwideproblem ,whichhasarousedever increasingattentionofscientists.Inadditiontovegetationdestructionanderosionofcultivatedlanddirectlycausedbyminingdevelopment,scientistshaveplacedmorefocusontheenvironmentalproblemsinducedbythereleaseofharmfulsubstances ( particularlyheavymetals) .Especiallyundersurfaceconditions,thepiled upminewastes (minetailings)undergoweatheringundertheactionofaseriesofgeochemicalfactorssuchasthemineralogyofmineta…  相似文献   

14.
岩溶石山地区土壤退化与恢复的成因和机理一直是近年来土壤学和生态学研究的热点。以贵州西南部贞丰—关岭岩溶石山区为对象,选择了区内退化地、农用地、恢复地等生态样块以及与未退化地为对照,采集了其中的表层和亚表层土壤,分别进行了土壤的养分库量、微生物活性与功能和土壤酶活性等化学分析。研究表明土壤养分库是土壤中微生物活性基础,微生物量碳随土壤养分库容的退化或恢复而相应变化,退化岩溶地植被恢复3~6年后,主要养分总库容得到明显恢复(恢复程度55%~65%),因而带动了微生物量碳的恢复(平均恢复程度60%以上),但养分的活性(有效磷)、微生物的功能(呼吸熵及土壤脲酶和磷酸酶活性)并没有得到相应程度的恢复(平均恢复程度仅在25%~40%)。这些结果提示,限制性养分活性和微生物功能的恢复是植被恢复下生态系统健康水平的重要指示。因此,在分析岩溶土壤和生态系统退化过程的本质以及评价生态恢复的效应时,不仅应将微生物量碳和总养分库指标作为岩溶土壤退化恢复的指标,更应将微生物区系的质量和功能指标纳入关键评价内容。   相似文献   

15.
Urban soil nitrogen and phosphorus have significant implications for the soil and water quality in urban areas. The concentrations of total nitrogen (TN) and total phosphorus (TP) of soil samples collected from six types of land use, which included residential area (RA), business area (BA), classical garden (CG), culture and education area (CEA), public green space (PGS) and roadside area (RSA) of Beijing urban area, were investigated. Results showed that the geometric mean of TP (857 mg/kg) in urban soils was slightly higher than that (745 mg/kg) in rural soils of Beijing. The concentration of soil TP was higher in the center of the city, and showed an increasing trend with the age of the urban area. The TP concentrations in the six types of land use followed the sequence of CG > BA > RSA > RA > CEA > PGS, which were affected by the use and disposal of phosphorus-containing materials in each type of land use. However, the geometric mean of TN (753.8 mg/kg) in urban soils was much lower than that (1,933.3 mg/kg) in rural soils. TN level in urban soils of Beijing had no correlation with the city’s urbanization history, and was influenced by the coverage of natural vegetation and human activities in each type of land use. This study suggested that the city’s urbanization history and land use were the main factors affecting the distribution of nitrogen and phosphorus in urban soils.  相似文献   

16.
The urban environment is of growing concern as its continued population increase in China. Due to the urbanization and industrialization, heavy metals have been continuously discharged into the soil recently, and creating the anthropogenic contamination. This study investigated heavy metals contamination in urban and suburban soils in Zhangzhou City, Fujian, China. Multivariate analysis and geographical information system technology were employed in source identification and contamination assessment of heavy metals in the city soils. The survey results indicated that the urban soils were contaminated by heavy metals, especially by Hg, Cd and Pb. The multivariate analysis demonstrated that the distribution of Cu, Zn, Cr and Ni was controlled by pedogenesis, Cd and Pb had been disturbed by industrialization in some urban locations, and Hg was mainly influenced by the hot-spring in some urban park sites. The distribution of heavy metals and soil pollution index suggested the soils of Zhangzhou City have been affected by human activities.  相似文献   

17.
This study presents a combined geochemical and mineralogical survey of urban surface soils. Many studies on urban soils are restricted to purely chemical surveys in order to investigate soil pollution caused by anthropogenic activities such as traffic, heating, industrial processing, waste disposal and many more. In environmental studies, chemical elements are often distinguished as lithogenic and anthropogenic elements. As a novel contribution to those studies, the authors combined the analysis of a broad set of chemical elements with the analysis of the main mineralogical phases. The semi-quantification of mineralogical phases supported the assignment of groups of chemical elements to lithogenic or anthropogenic origin. Minerals are important sinks for toxic elements. Thus, knowledge about their distribution in soils is crucial for the assessment of the environmental hazards due to pollution of urban soils. In Pforzheim, surface soils (0–5 cm depth) from various land use types (forest, agriculture, urban green space, settlement areas of various site densities) overlying different geological units (clastic and chemical sediments) were investigated. Urban surface soils of Pforzheim reflect to a considerable degree the mineral and chemical composition of parent rocks. Irrespective of the parent rocks, elevated concentrations of heavy metals (Zn, Cu, Pb, Sn, Ag) were found in soils throughout the whole inner urban settlement area of Pforzheim indicating pollution. These pollutants will tend to accumulate in inner urban surface soils according to the available adsorption capacity, which is normally higher in soils overlying limestone than in soils overlying sandstone. However, inner urban surface soils overlying sandstone show elevated concentrations of carbonates, phyllo-silicates and Fe and elevated pH values compared with forest soils overlying sandstone. Thus, in comparison to forest soils overlying sandstones, inner urban soils overlying sandstone affected by pollution concurrently possess elevated concentrations of mineral phases typically providing relatively high adsorption capacities for heavy metals.  相似文献   

18.
This study assesses the origin and pollution of trace metals in surface soils in a region with contrasting land uses (urban vs. rural). Principal component analysis (PCA) reveals that Cr and Ni are predominantly of geogenic origin. These two trace metals are also the only ones with statistically significant correlations with soil particle size and organic matter content. Copper, Pb and Zn, and possibly Hg, are of anthropogenic origin, but their concentrations rarely reach levels described as strongly polluted by pollution indexes. The concentrations of these anthropogenic trace metals are statistically not different in urban and rural areas, except for Pb that is higher in the urban area. This general lack of a difference between the two land uses indicates that the influence of this small urban area on trace metal concentrations in soils is minor. Lead and Zn have the most, but still a modest number, of strongly polluted sites, mainly in an industrial part of the city. GIS analysis shows that, based on the pollution load index (PLI), overall concentrations of trace metals also reach their highest levels in that industrial area. These observations indicate that the influence of industry on trace metal pollution in soil exceeds that of other urban activities in the region. Local background concentrations were found to be very different from general crustal background concentrations. This demonstrates the importance of the careful selection of a background type in studies like this.  相似文献   

19.
The nature of selected soil-chemical and microbial properties influenced by tsunami affected and non-affected areas along the border areas of the alluvial Andaman Island in India were investigated. Soils of these areas have turned saline and saline-sodic due to the ingression of sea water. The electrical conductivity of the saturation extract of the surface soil varied from 11.2 to 23.8 dS m?1 in 2005, and it was decreased to 0.8–10.3 dS m?1 in 2006 due to the heavy rain in the following year after the tsunami. Soil quality indicators, like microbial biomass C, microbial metabolic quotient, microbial respiration quotient and fluorescein diacetate hydrolyzing activity, decreased in the tsunami affected soil in 2005, but slightly increased in 2006. All microbial parameters were significantly negatively correlated with the electrical conductivity, sodium absorption ratio and exchangeable sodium percentage. Suppression of microbial biomass and their activities in the soils due to the increased-salinity is of great agronomic significance and needs suitable intervention for sustainable crop production. Significant differences were found in soil-chemical and microbial characteristics between tsunami affected and non-affected areas. Hierarchical clustering algorithm on the basis of different soil-chemical and microbial characteristics revealed that there is significant difference in grouping between tsunami affected and non-affected zones. From this study, it can be concluded that the sea water ingression detrimentally influenced the microbial properties of tsunami affected soil.  相似文献   

20.
Effects of heavy metal pollution on the soil microbial activity   总被引:8,自引:8,他引:0  
The effects of heavy metals on soil microbial processes were investigated over a period of six weeks. Analytical grade (Sigma) sulphate salts of copper, zinc and nickel were added individually and in combinations to soil samples and incubated in different plastic pots. Samples were taken from the pots forthnightly and the rates of microbial carbon and nitrogen mineralization, microbial biomass carbon and respiration were measured. The results showed the effect of metals on the measured parameters were significant (P<0.05.). By the 6th week postreatment, the rates of carbon accumulated were high in the copper (6.03 %) and copper:Zinc (5.80 %) treatments but low in the nickel and zinc (4.93 % and 5.02 % respectively). The rates of Nitrogen mineralization were 0.41 and 0.44 % in samples treated with copper and copper:zinc compared to 0.22 %–0.24 % obtained at the beginning of the experiments. Soil microbial biomass carbon declined from average value of 183.7–185.6 μg/g before treatment to as low as 100.8 and 124.6 μg/g in samples treated with copper:zinc and copper respectively.The rate of respiration of the soil microbial populations was equally inhibited by the metals. From an average rate of 2.51–2.56 μg of C/g respiration of the soil microbes declined to 0.98, 1.08 and 1.61 μg of C/g in the copper:zinc, copper and zinc treated soils by the end of the experiment. The results suggest additive or synergistic effects of the metals.  相似文献   

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