首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 203 毫秒
1.
 以中国东北样带(NECT)为依托,基于沿样带的野外观测和土壤实测数据,分析了沿样带的土壤碳、氮、磷的空间分布格局及其与年降水、年均温之间的关系。结果表明:样带内土壤有机碳、土壤全氮、土壤有效氮、土壤全磷、土壤有效磷沿经度均呈现出东高西低的分布趋势;降水量和温度对土壤碳、氮、磷的作用强度顺序分别为土壤有效氮、土壤有机碳、土壤全氮、土壤全磷和土壤有效磷;并建立了土壤有机碳、土壤全氮、土壤有效氮、土壤全磷、土壤有效磷与年降水、年均温之间的多项式回归方程,为样带陆地碳收支评估及养分循环提供基础资料。  相似文献   

2.
黄土高原森林草原区退耕地植被自然恢复与土壤养分变化   总被引:59,自引:3,他引:56  
研究了黄土高原森林草原区退耕地植被自然恢复过程与土壤养分变化.结果表明,在显域生境下,植被自然演替过程虽然趋向于该区原有植物群落类型,但经过40~0年的时间,仍未形成灌丛或稀树等群落,分布较多的仍是长芒草、铁杆蒿、白羊草、大针茅和达乌里胡枝子等群落类型.从植被恢复时间对土壤养分变化的影响来看,除全P外(P>0.0),有机质、全N、速效氮、速效钾的变化极显著(P<0.001),速效磷变化较显著(0.0<P<0.01),并随植被恢复时间的延长而呈增加趋势.除恢复时间外,养分含量变化也随土壤剖面深度而变化,其中除全P含量变化较显著外(P<0.0),其余各养分含量变化都达极显著水平(P<0.001).土壤养分变化具有明显的表聚性.相关分析表明,土壤有机质、全N、有效氮与速效钾相互间相关极显著(P<0.001),而与全P与速效磷相关性不明显(P>0.0),全P与速效磷二者相关性也不明显(P>0.0).  相似文献   

3.
以三江源地区主要草地类型为研究对象,分析了不同草地类型土壤有机碳和全氮的变化特征及其与环境因子、土壤特征等的相互关系。结果表明:沿着海拔的逐渐升高,土壤有机碳和全氮含量均呈现出 “V"字形变化规律,即土壤有机碳氮含量在海拔最高处(5 120 m)和最低处(4 176 m)比较高,而在中间海拔梯度较低,土壤有机碳与全氮含量极显著相关( r=0.905)且高寒草甸土壤碳、氮含量高于高山草原土壤碳、氮含量;土壤中有机碳含量和全氮含量均随着土壤含水量的增加而增加,偏相关分析结果表明:对0~30 cm土层中土壤有机碳和土壤全氮影响最大的是土壤含水量,偏相关系数为0.946 5、0.905 9(p<0.01);土壤有机碳含量和全氮含量与植被盖度和草地生产力存在正相关趋势;土壤有机碳含量和全氮含量与土壤pH值和全盐量存在负相关趋势。  相似文献   

4.
以民勤绿洲—荒漠过渡带20种主要植物为研究对象,通过对叶片6个功能性状的测定,分析荒漠植物叶性状的变异及相关性,比较不同功能群植物叶性状的差异性,探讨荒漠植物对环境的适应性,为该地区植被的恢复和重建提供理论依据。结果表明:①叶性状存在种间差异且变异程度不同,变异范围为14.11%~47.63%,叶绿素含量(ChlC)变异系数最大,叶片全氮含量(LCC)变异系数最小。②叶干物质含量(LDMC)与ChlC、LCC均呈极显著正相关(P<0.01),ChlC与LCC呈极显著正相关(P<0.01),其他叶性状间相关性不显著。③不同功能群植物叶性状存在显著差异。其中,豆科植物叶片LDMC、ChlC、LCC极显著高于藜科植物(P<0.01)。草本植物叶片比叶面积(SLA)极显著高于灌木植物叶片(P<0.01)。一年生植物叶片SLA、LNC显著高于多年生植物(P<0.05);多年生植物叶片LDMC极显著高于一年生植物(P<0.01);多年生植物叶片C含量显著高于一年生植物(P<0.05)。C3植物叶片LDMC、ChlC显著高于C4植物(P<0.05);C4植物叶片δ13C极显著高于C3植物 (P<0.01);C3植物叶片LCC极显著(P<0.01)高于C4植物。  相似文献   

5.
若尔盖不同地下水位泥炭湿地土壤有机碳和全氮分布规律   总被引:3,自引:0,他引:3  
以若尔盖典型泥炭湿地为研究对象,选择不同地下水位的样地,对各样地不同土壤剖面的土壤有机碳含量、全氮含量的分布规律及土壤容重、pH等影响因素进行了研究.结果表明:0 ~ 50 cm土层范围内,土壤有机碳含量和全氮含量与地下水位呈指数相关,随着水位的降低,土壤有机碳含量和全氮含量减少,且变异系数呈显著增加趋势,表明泥炭地排水、降低地下水位是泥炭地土壤有机碳和全氮丧失的重要原因.土壤有机碳和全氮含量间存在显著正相关,但与土壤pH和容重均呈极显著负相关.4个水位梯度下的土壤碳氮比的变动幅度在15.76 ~18.16,相对较低,表明在若尔盖气候条件下有机碳的分解速度较慢,而土壤碳氮比并没有受到地下水位和pH值的显著影响.  相似文献   

6.
以连续5年不同CO2浓度(开顶箱700μmol·mol-1、500μmol·mol-1、对照箱和裸地)处理的长白赤松和红松幼苗为研究对象,在2003年7~9月分别对幼苗根际土壤细菌、真菌、放线菌数量进行比较研究.结果表明,高浓度CO2处理对长白赤松幼苗根际土壤细菌数量起显著的(P≤0.001)促进作用,对根际真菌和放线菌数量的促进作用却不明显;对红松来说,除8月份700μmol·mol-1CO2处理和7月份500μmol·mol-1CO2处理之外,在各月份中受高浓度CO2处理的根际土壤细菌数量均较对照箱和裸地显著增多(P≤0.001),而根际土壤真菌数量变化除9月份(P≤0.001)外均不明显,放线菌数量受高浓度CO2的影响亦不明显.  相似文献   

7.
以贵州省盘县3种林龄(19、28和45年生)云南松林为对象,研究了林地土壤有机碳和全氮含量的垂直分布、积累特征及其与土壤容重的关系.结果表明: 不同林龄云南松林土壤剖面的有机碳和全氮含量变化规律一致,表层呈富集现象,随着土层的加深而逐渐减少.随着林龄的增加,林地土壤的有机碳和全氮储量增加,19、28和45年生林地土壤有机碳储量分别为96.24、121.65和148.13 t·hm-2,全氮储量分别为10.76、12.96和13.08 t·hm-2.土壤有机碳与全氮含量呈极显著正相关,二者均与土壤容重呈极显著负相关.不同生长阶段林地土壤有机碳和全氮的积累速率有所差异,其中19~28年生林地的土壤有机碳和全氮含量积累速率高于28~45年生林地.
  相似文献   

8.
城市化梯度带绿地土壤碳氮的空间分布特征   总被引:1,自引:0,他引:1  
城市化导致自然用地和农业用地向城市用地转变,频繁而持续的人为干扰导致城市绿地土壤有机碳和全氮含量分布发生空间分异。本文以成都-温江这一典型的"中心城-郊区-卫星城"梯度带为研究区,采用滑动窗口分析法,根据建筑密度、道路密度和距城市中心距离等指标,探究城市发展对绿地土壤有机碳、全氮空间分布的影响。结果表明:土壤有机碳、全氮平均含量以及碳氮比均值分别为15.80 g·kg-1、1.24 g·kg-1和13.04;土壤有机碳、全氮含量在"中心城-郊区-卫星城"样带呈先降低后增加趋势;不同绿地类型土壤有机碳、全氮含量无显著性差异(P0.05),但公园绿地土壤的碳氮比显著高于交通绿地(P0.05);土壤有机碳、全氮含量随距城市中心距离增加呈显著指数降低趋势(P 0.05);样带内土壤有机碳含量随建筑密度和道路密度增加呈显著线性增加趋势(P0.05);全氮含量与建筑密度无显著相关关系,但随道路密度增加呈显著线性增加趋势(P0.05);碳氮比与距城市中心距离、建筑密度和道路密度均无显著相关性。该研究结果揭示了城市发展有利于土壤有机碳和全氮的累积,距城市中心距离、建筑密度和道路密度不同程度上影响土壤有机碳和全氮的空间分布。  相似文献   

9.
肖列  刘国彬  李鹏  薛萐 《生态学杂志》2017,28(10):3251-3259
采用人工气候室和盆栽控水试验研究黄土丘陵区典型草本植物白羊草在倍增CO2浓度(800 μmol·mol-1)下和充分供水(75%~80%的田间持水量)、轻度干旱胁迫(55%~60%的田间持水量)和重度干旱胁迫(35%~40%的田间持水量)下根际和非根际土壤碳氮含量和微生物群落结构及其根际效应.结果表明: CO2浓度升高和干旱胁迫对白羊草根际和非根际土壤有机碳、全氮和水溶性有机碳(DOC)含量及其根际效应均无显著影响.轻度干旱胁迫下CO2浓度升高显著促进了根际土壤水溶性有机氮(DON)的消耗,导致DOC/DON升高,提高了DON的负根际效应和DOC/DON的正根际效应.干旱胁迫和CO2浓度升高对土壤总磷脂脂肪酸(总PLFA)和细菌PLFA的根际效应无显著影响.CO2浓度升高条件下干旱胁迫显著提高了根际土壤G+/G- PLFA,降低了非根际土壤G+/G- PLFA,导致其根际效应显著提高,表明根际微生物群落由自养微生物群落向异养微生物群落的转变.  相似文献   

10.
肖列  刘国彬  李鹏  薛萐 《应用生态学报》2017,28(10):3251-3259
采用人工气候室和盆栽控水试验研究黄土丘陵区典型草本植物白羊草在倍增CO2浓度(800 μmol·mol-1)下和充分供水(75%~80%的田间持水量)、轻度干旱胁迫(55%~60%的田间持水量)和重度干旱胁迫(35%~40%的田间持水量)下根际和非根际土壤碳氮含量和微生物群落结构及其根际效应.结果表明: CO2浓度升高和干旱胁迫对白羊草根际和非根际土壤有机碳、全氮和水溶性有机碳(DOC)含量及其根际效应均无显著影响.轻度干旱胁迫下CO2浓度升高显著促进了根际土壤水溶性有机氮(DON)的消耗,导致DOC/DON升高,提高了DON的负根际效应和DOC/DON的正根际效应.干旱胁迫和CO2浓度升高对土壤总磷脂脂肪酸(总PLFA)和细菌PLFA的根际效应无显著影响.CO2浓度升高条件下干旱胁迫显著提高了根际土壤G+/G- PLFA,降低了非根际土壤G+/G- PLFA,导致其根际效应显著提高,表明根际微生物群落由自养微生物群落向异养微生物群落的转变.  相似文献   

11.
中国东北样带植被净初级生产力时空动态遥感模拟   总被引:9,自引:0,他引:9       下载免费PDF全文
 中国东北样带(Northeast China Transect, NECT)是中纬度半干旱区的国际地圈-生物圈计划(IGBP)陆地样带之一, 是全球变化研究的 重要手段与热点。该研究应用生态系统碳循环过程CASA(Carnegie-Ames-Stanford Approach)模型分析了NECT从1982~1999年植被净初级生产力 (Net primary productivity, NPP)的时空变异及其影响因子。结果表明, 1) 1982~1999年NECT植被NPP为58 ~ 811 g C·m–2·a–1, 平均为426 g C·m–2·a–1, 大体上呈现由东向西逐渐递减的趋势; 2)研究时段内NECT的总NPP变异范围是0.218 ~ 0.325 Pg C, 平均为0.270 Pg C (1 Pg = 1015 g); 3) NECT的总NPP在过去18年内整体呈显著性增加趋势, 其中从1982~1990年样带NPP呈显著性增加趋势, 而后期1991~1999样带NPP没 有显著性变化趋势; 4)沿NECT不同植被类型对气候变化的响应特征是不同的, 在研究时段内, 农田、典型草原和草甸草原表现出最大的NPP增加 量, 而典型草原、荒漠草原对气候变化表现出高的敏感性; 5) NECT植被NPP的空间分布格局是由年降水量的分布格局所决定, 而NPP的时间变异 则由年降水量、年太阳总辐射的变化所影响驱动。  相似文献   

12.
 本文应用室内模拟与野外实地调查相结合的方法,对中国东北森林草原样带上生物群区及其过渡带的位置与面积进行了判定,并预测了未来全球变化条件下生物群区及过渡带可能的变化趋势。结果表明:中国东北样带内的生物群区和过渡带可由基于气候数据和Ho1dridge方法的数量模型较确切地判定出,与实际调查的结果吻合较好。在未来气候变化下,过渡带面积呈扩大化趋势;森林区对降水量的变化反应敏感;草原区地理分布位置变动很大,但其相对面积变化较小;荒漠灌丛对全球变化的反应最为剧烈。  相似文献   

13.
中国东北样带的梯度分析及其预测   总被引:52,自引:1,他引:52  
陆地样带研究已成为国际地圈-生物圈计划(IGBP)全球变化研究的重要手段与热点。中国东北样带(NECT)已被列为IGBP国际全球变化陆地样带之一。该样带在东经112°与130°30'之间沿北纬43°30'设置,长约1600km,是一条中纬度温带以降水为驱动因素的梯度,具有由温带针阔叶混交林向温带草原的3个亚地带——草甸草原、典型草原与荒漠草原过渡的空间系列。该样带上有4个生态实验站。在大量的固定样地、实验调查研究资料与数据的基础上给出了样带的初步梯度分析及在全球变化图景下的预测,包括其地理位置、设置意义、地形地貌、气候梯度、土壤类型、植被类型和土地利用格局,一个遥感数据驱动的模型和NPP模型在整个样带上运行过。今后NECT将在生物地球化学循环(水、C、N、P等与痕量气体CO_2、CH_4等)、生态系统结构、功能与动态、生物多样性、土地利用与土地覆盖、动态全球植被模型(DGVM)以及高分辨率遥感数据应用等方面得到加强,将成为我国全球变化与陆地生态系统(GCTE)与其它IGBP核心项目研究的前沿阵地。  相似文献   

14.
The Northeast China Transect (NECT) along a precipitation gradient wasused to calculate the carbon balance of different vegetation types, land-use practices and temporal scales. NECT consists of mixed coniferous-broadleaved forest ecosystems, meadow steppe ecosystems and typical steppe ecosystems. Analyses of the C budget were carried out with field measurement based on dark enclosed chamber techniques and alkali absorption methods, and the application of the CENTURY model. Results indicated that: (1) soil CO2 flux had a strong diurnal and seasonal variation influenced by grassland type and land-use practices. However, the seasonal variation on soil CO2 fluxes did not show obvious changes between non-grazing and grazing Leymus chinensis dominated grasslands. (2) Hourly soil CO2 fluxes mainly depended on temperature, while daily CO2 fluxes were affected bothby temperature and moisture. (3) NPP of the three typical ecosystems showed linear relationships with inter-annual precipitation, but total soil carbon of those ecosystems did not. NPP and total soil carbon values decreased westward with decreasing precipitation. (4) Model simulation of NPP and total soil carbon showed that mean annual precipitation was the major limiting factor for ecosystem productivity along NECT. (5) Mean annual carbon budget is the largest for the mixedconiferous- broadleaved forest ecosystem (503.2 gC m-2 a-1), followed by the meadow steppe ecosystem (227.1 gC m-2 a-1), and the lowest being the typical steppe ecosystem (175.8 gC m-2 a-1). This study shows that concurrent field measurements of terrestrial ecosystems including the soil and plant systems with surface layer measurements along the water-driven IGBP-NECT are valuable in understanding the mechanisms driving the carbon cycle in different vegetation types under different land-use practices. Future transect research should be emphasized.  相似文献   

15.
Carbon balance along the Northeast China Transect (NECT-IGBP)   总被引:6,自引:0,他引:6  
The Northeast China Transect (NECT) along a precipitation gradient was used to cal-culate the carbon balance of different vegetation types, land-use practices and temporal scales. NECT consists of mixed coniferous-broadleaved forest ecosystems, meadow steppe ecosystemsand typical steppe ecosystems. Analyses of the C budget were carried out with field measurement based on dark enclosed chamber techniques and alkali absorption methods, and the application of the CENTURY model. Results indicated that: (1) soil CO_2 flux had a strong diurnal and seasonal variation influenced by grassland type and land-use practices. However, the seasonal variation on soil CO_2 fluxes did not show obvious changes between non-grazing and grazing Leymus chinensis dominated grasslands. (2) Hourly soil CO_2 fluxes mainly depended on temperature, while dailyCO_2 fluxes were affected both by temperature and moisture. (3) NPP of the three typical ecosys-tems showed linear relationships with inter-annual precipitation, but total soil carbon of those eco-systems did not. NPP and total soil carbon values decreased westward with decreasing precipita-tion. (4) Model simulation of NPP and total soil carbon showed that mean annual precipitation was the major limiting factor for ecosystem productivity along NECT. (5) Mean annual carbon budget is the largest for the mixed coniferous- broadleaved forest ecosystem (503.2 gC m~(-2)a~(-1)), followed bythe meadow steppe ecosystem (227.1 gC m~(-2)a~(-1)), and the lowest being the typical steppe eco-system (175.8 gC m~(-2)a~(-1)). This study shows that concurrent field measurements of terrestrial ecosystems including the soil and plant systems with surface layer measurements along the wa-ter-driven IGBP-NECT are valuable in understanding the mechanisms driving the carbon cycle in different vegetation types under different land-use practices. Future transect research should be emphasized.  相似文献   

16.
 基于中国东北样带2001年考察采集土样的实测数据及CO2浓度升高和干旱胁迫的模拟试验资料,分析了土壤活性有机碳的分布特征及其对气候变化的响应。结果表明,样带土壤活性有机碳与土壤有机碳之间呈极显著正相关关系(相关系数R=0.993,p<0.001)。表层土壤活性有机碳平均为(3.5  相似文献   

17.
G. Zhou  Y. Wang  S. Wang 《植被学杂志》2002,13(3):361-368
Abstracts. The Northeast China Transect (NECT) has been used to study how water availability influences the composition of plant functional types, soil organic matter, net primary production, trace gas flux, and land‐use patterns. We discuss relations of plant species number, soil C and N and above‐ground biomass with a precipitation gradient and interactions with land‐use practices (grassland fencing, mowing and grazing), on the basis of data from the west part of NECT. The results indicate: 1. The above‐ground biomass of grassland communities has a linear relationship with precipitation under three land‐use practices, while plant species number, soil C, and total soil N have linear relationships with precipitation under fencing and mowing; under grazing the relationships are non‐linear. 2. Plant species number, soil C and total soil N have strong linear relationships with above‐ground biomass under both fencing and mowing, while they seem to have nonlinear relationships under grazing. 3. Land‐use practices along the precipitation gradient result not only in changes in grassland communities but also in qualitative changes of their structure and function. 4. Grasslands are more vulnerable to changes in climate under mowing than under fencing, and are more capable to store C in soil and plants. 5. At a given precipitation level, number of plant species, above‐ground biomass, and soil C are higher under low to medium intensity of human activities (mowing and grazing). A better understanding of how different intensities of human activities will affect the structure and function of grassland will require further research.  相似文献   

18.
比较了沿 1 6 70km长的中国东北样带 (NECT)分布的在繁殖习性上不同的植物功能型 ,克隆植物 (clonalplant)与非克隆植物 (non_clonalplant)的光合作用、蒸腾作用、气孔导度、水分利用效率。所测定的 2 1 8种植物中有1 1 5种属于克隆植物。对于灌木和草本植物功能型而言 ,净光合速率 (Pn)和水分利用效率 (WUE)在样带东西两端较低 ,在样带中间较高 ;蒸腾速率在温带荒漠植物分布的西端出现升高的趋势。在森林乔木、森林灌木、森林草本、草甸草原灌木、草甸草原草本、典型草原灌木、典型草原草本、荒漠草原灌木、荒漠草原草本等不同功能型的植物中 ,典型草原灌木和草本植物的光合生理指标较高。在相同的生长环境中 ,克隆植物比非克隆植物表现出较高的Pn 以及其他生理指标。克隆植物的光合速率、蒸腾速率、气孔导度、水分利用效率分别比非克隆植物高出 2 2 %、1 5 %、2 3%和 1 4 %。这种现象表明克隆植物在CO2 、光能和水分资源利用能力上优于非克隆植物  相似文献   

19.
Wang  R.Z. 《Photosynthetica》2004,42(1):71-79
Natural occurrence of C4 species, life forms, and their longitudinal distribution patterns along the Northeast China Transect (NECT) were studied. Six vegetation regions experiencing similar irradiation regimes, but differing in longitude, precipitation, and altitude were selected along the NECT from 108 to 131 °E, around altitude of 43.5 °N. Seventy C4 species were identified in 41 genera and 13 families. 84 % of the total C4 species were found in four families: Gramineae (38 species), Chenopodiaceae (11 species), Cyperaceae (5 species), and Amaranthaceae (5 species). C4 grasses make up 54 % of the total identified C4 species along the NECT and form the leading C4 family in meadow, steppe, and desert along the NECT. C4 Chenopodiaceae species make up about 16 % of the C4 species and become less important, particularly in the meadow and the eastern end of the NECT. 57 % of the total C4 species are therophytes and 37 % are hemicryptophytes, which is consistent with floristic composition and land utilization. In general, the number of C4 species decreased significantly from the west to the east or from dry to moist areas along the NECT, and was remarkably correlated with annual precipitation (r 2= 0.677) and aridity (r 2= 0.912), except for salinized meadow region. The proportion of C4 species from all the six vegetation regions was considerably correlated with these two climatic parameters (r 2= 0.626 or 0.706, respectively). These findings suggest that the natural occurrence of C4 species varies significantly along the large-scale longitudinal gradient of the NECT. The notable relationship of C4 species number and proportion in the flora with variations in annual precipitation and aridity suggest that these two climatic parameters are the main factors controlling the longitudinal distribution patterns of C4 species along the NECT.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号