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931.
根据2007年3月至2008年2月在舟山朱家尖蜈蚣客运码头进行的污损生物挂板试验,对该海域污损生物的种类组成、附着季节、生物量分布及生态特点进行了初步研究。结果表明:该海域共鉴定出污损生物85种,其中,藻类13种,腔肠动物13种,苔藓虫4种,多毛类12种,软体动物8种,甲壳类22种和其它13种。优势种为中胚花筒螅Tubularia mesembryanthemum、泥藤壶Balanus uliginosus、白脊藤壶Balanus albicostatus、僧帽牡蛎Saccostrea cucullata、近江牡蛎Crassostrea rivularis、马尔他钩虾Melita sp.、圆鳃麦杆虫Caprella acutifrons、长鳃麦杆虫C.equilibra和盘管虫Hydroides sp.。朱家尖海域全年都有污损生物繁殖附着,其中6—10月为附着盛期,表层和中层月板生物量的高峰值均出现在7月,最低值分别出现在2月和1月,表层月板全年附着总生物量为2 006.1g/m2,月平均生物量为167.18g/m2;中层月板全年附着总生物量为2 388.15g/m2,月平均生物量为199.01g/m2;季度板污损生物生物量按高低依次为:夏季>秋季>春季>冬季;上半年板污损生物的生物量>下半年板。在垂直分布上,除季度板外,其它试板的生物量和附着密度均为中层>表层。根据污损生物的生态习性、分布特征及对盐度的适应,可将舟山朱家尖海域主要污损生物定义为河口低盐种。水温是影响调查海域污损生物分布的主要因素,水体盐度则对朱家尖海域污损生物的种类及指标种分布具有决定性作用。  相似文献   
932.
Vegetation evapotranspiration (ET) induced soil water suction reduces hydraulic conductivity and increases shear strength of slopes. Several field studies have been conducted to investigate suction distribution in vegetated slopes. However, these studies were conducted on natural slopes, which are prone to heterogeneity in vegetation and soil conditions. Moreover, studies quantifying the effect of different vegetation species, root characteristics (root depth and root area index) and transpiration reduction function (Trf) on suction in slopes under natural variation are rare. This study investigated the suction distribution and root characteristics in recompacted slopes vegetated with two different species, i.e. Cynodon dactylon (Bermuda grass) and Schefflera heptaphylla (ivy tree). Bare slope served as a control. Suction distributions during different seasons and rainfall events were monitored. It is found that during the dry season, slope vegetated with young Schefflera heptaphylla seedlings have substantially higher suction within the root zone compared with bare slope and slope vegetated with Cynodon dactylon. This is because Schefflera heptaphylla has a higher root biomass, Trf and ET than Cynodon dactylon. It was also found that suctions within root zones of vegetated slopes and bare slope were completely destroyed under rainfall events corresponding to 2 years and 20 years return period. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   
933.
祁乐  高明  杨来淑  王丹  邓炜 《中国岩溶》2015,34(1):86-94
文章以重庆市丰都县三坝乡土地整理项目为例,分别对土地整理前(2012年12月)52个采集点和土地整理后(2013年3月)28个采集点,采用野外采样和室内分析相结合的方法,研究了土地整理对岩溶区土壤微生物群落结构、土壤微生物生物量碳(SMBC)、氮(SMBN)及酶活性(过氧化氢酶、脲酶、蔗糖酶)的影响,结果表明:(1)土地整理对土壤微生物影响显著,土地整理后比整理前土壤中的放线菌数量降低,真菌数量增加。(2)在0~20 cm土层,整理前后SMBC和SMBN含量变化显著,SMBC含量整理后比整理前降低了20.33%,SMBN含量整理后比整理前减少了47.84%;土地整理改变了整理前SMBC、SMBN含量随土层深度变化递减的规律,使SMBC、SMBN含量分别在亚表层(20~40 cm)出现最小值68.34 mg/kg和最大值33.58 mg/kg。(3)整理前后土壤脲酶和过氧化氢酶均在0~20 cm和20~40 cm同一土层差异显著,蔗糖酶活性在各土层差异均显著。土地整理使土壤脲酶和过氧化氢酶活性降低,蔗糖酶活性提高。(4)有机质对表层SMBC、SMBN含量和脲酶活性呈显著正相关,pH值与土壤酶活性呈显著正相关。   相似文献   
934.
荒漠草原2种植物群落土壤微生物及土壤酶特征   总被引:7,自引:2,他引:5  
测定和分析了甘肃省金昌市金川区荒漠草原土壤微生物数量、微生物生物量和土壤酶活性。结果表明:同层土壤3大类微生物(真菌、细菌和放线菌)数量、土壤微生物量碳和氮含量及4类土壤酶(蔗糖酶、脲酶、磷酸酶和过氧化氢酶)活性均表现为盐爪爪(Kalidium foliatum)群落大于骆驼刺(Alhagi sparsifolia)群落,而土壤微生物量磷含量相反;同一植物群落,不同层土壤微生物数量(除骆驼刺群落中的真菌亚表层最高外)、土壤微生物量碳、氮、磷含量及土壤酶活性(除骆驼刺群落中脲酶呈现高-低-高-低趋势外)均呈现随土层的加深而降低的趋势;金川区荒漠草原不同植物群落不同空间层次土壤微生物数量、微生物生物量和各种酶之间有不同程度的相关性。  相似文献   
935.
森林净初级生产力(NPP)反映了森林植被固定和转换光合产物的能力,表示了森林碳汇功能强度,也是评价森林植被的演替状况以及陆地生态系统承载力的主要指标。基于遥感、清查资料等方法估算NPP已经取得了一些进展,但传统的研究方法受限于观测(调查)年份,难以有效获取长时间尺度的区域森林种群或群落年际NPP。树轮资料较为有效地反映了历史时期森林植被的逐年生长状况,从而在估算高精度且长时间尺度区域森林种群及群落NPP中具有较大的优势。本文对利用树轮资料重建区域森林NPP的两种主要方法进行了总结,第一种方法主要是依据树轮资料提供的立木逐年生长量进行生物量以及NPP的估算;第二种方法则是利用树轮指数与其他植被指数的相关性间接反演过去时间段区域森林群落NPP的变化。上述两种估算NPP的方法均存在较多的限制性,未来利用树轮资料估算NPP的时空精度仍有待提高。  相似文献   
936.
Forests play an important role in the global carbon cycle and have a potential impact on global climatic change.Monitoring forest biomass is of considerable importance in understanding the hydrological cycle.Because of the problem of dense forest cover,no reliable method with which to retrieve soil moisture in forest areas from the microwave emission signature has been established.All of these issues relate to the microwave emissivity and transmissivity characteristics of a forest.The microwave emission contribution received by a sensor above a forest canopy comes from both the soil surface and the vegetation layer.To analyze the relationship of forest biomass and forest emission and transmissivity,a high-order emission model,the matrix-doubling model,which consists of both soil and vegetation models,was developed and then validated for a young deciduous forest stand in a field experiment.To simulate the emissivity and transmissivity of a deciduous forest in the L and X bands using the matrix-doubling model,the parameters of components of deciduous trees when the leaf area index varies from 1 to10 were generated by an L-system and a forest growth model.The emissivity and transmissivity of a forest and the relationships of these parameters to forest biomass are presented and analyzed in this paper.Emissivity in the L band when the leaf area index is less than 6 and at viewing angles less than 40°,and transmissivity in the L band are the most sensitive parameters in deciduous forest biomass estimation.  相似文献   
937.
938.
Among the potential effects of climate change on subalpine forest ecosystems during the winter season, the shift in snowline towards higher altitudes and the increase in frequency of rain events on the snowpack are of particular interest. Here, we present the results of a 2‐year field experiment conducted in a forest stand (Larix decidua) in NW Italy at 2020 m a.s.l. From 2009 to 2011, we monitored soil physical characteristics (temperature and moisture), and soil and soil solution chemistry, in particular carbon (C) and nitrogen (N) forms and their change in time, as affected by simulated late snowpack accumulation and rain on snow events. Late snowpack accumulation determined a stronger effect on soil thermal and moisture regimes than rain on snow events. Also soil chemistry was significantly affected by late snowfall simulation. Although microbial biomass C and N were not reduced by soil freezing, soil contents of the more labile dissolved organic carbon and inorganic N increased when the soil was affected by mild/hard freezing. Variations in the soil solution were shifted with respect to those observed in soil, with an increase in N‐NO3? concentrations occurring during spring and summer. This study highlights the potential N loss in subalpine soils under changing environmental conditions driven by a changing climate. Copyright © 2013 John Wiley & Sons, Ltd.  相似文献   
939.
多枝柽柳和疏叶骆驼刺幼苗生物量分配及根系分布特征   总被引:11,自引:3,他引:8  
以塔克拉玛干沙漠南缘荒漠-绿洲过渡带上两种主要建群种植物多枝柽柳(Tamarix ramosissima)和疏叶骆驼刺(Alhagi.sparsifolia SHAP.)的一年生幼苗为研究对象,采用人工壕沟全根挖掘法,研究同一生境条件下两种植物幼苗在生物量分配、根冠比、根系分布特征对极端干旱环境的适应特征.结果表明:(1)两种植物幼苗生物量分配策略明显不同.多枝柽柳幼苗把更多的生物量分配到地上,其根冠比为0.75;而疏叶骆驼刺幼苗把更多的生物量分配到地下,其根冠比为1.73.(2)两种植物幼苗地上/地下生物量属于典型的幂函数异速生长关系,异速生长模型的相关系数都在0.83以上.(3)两种植物幼苗根系分布各异.多枝柽柳幼苗根系多由垂直的主根和水平扩展的侧根组成,根长在垂直剖面上近似"丰"字形分布;骆驼刺幼苗根系在土壤中呈网状分布,根长在垂直剖面上近"古"字形分布.  相似文献   
940.
Land-use and soil management affects soil organic carbon (SOC) pools, nitrogen, salinity and the depth distribution. The objective of this study was to estimate land-use effects on the distribution of SOC, labile fractions C, nitrogen (N) and salinity in saline-alkaline wetlands in the middle reaches of the Heihe River Basin. Three land-use types were selected: intact saline-alkaline meadow wetland, artificial shrubbery (planting Tamarix) and farmland (cultivated for 18 years) of soils previously under meadow wetland. SOC, easily oxidized carbon, microbial biomass carbon, total N, NO3--N and salinity concentrations were measured. The results show that SOC and labile fraction carbon contents decreased significantly with increasing soil depth in the three land-use wetlands. The labile fraction carbon contents in the topsoil (0-20cm) in cultivated soils were significantly higher than that in intact meadow wetland and artificial shrubbery soil. The aboveground biomass and soil permeability were the primary influencing factors on the contents of SOC and the labile carbon in the intact meadow wetland and artificial shrubbery soil, however, the farming practice was a factor in cultivated soil. Agricultural measures can effectively reduce the salinity contents; however, it caused a significant increase of NO 3--N concentrations which posed a threat to groundwater quality in the study area.  相似文献   
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