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61.
井冈山国家级自然保护区森林土壤养分含量的空间变化   总被引:6,自引:0,他引:6  
张继平  张林波  王风玉  刘伟玲  沃笑 《土壤》2014,46(2):262-268
以井冈山国家级自然保护区为研究区,采集了57个土壤剖面的5个不同深度(0~10、10~20、20~40、40~60、60 cm)的土壤样品,对土壤样品的有机碳、全氮、全磷和全钾等指标进行了测定,并结合森林类型数据和DEM高程数据,对不同森林类型及高程条件下的土壤养分状况进行比较分析。结果表明:①土壤有机碳含量最大,全磷含量最小,各土壤养分含量均随土壤深度的增加而递减;②土壤类型的空间分布呈现海拔梯度特征,黄棕壤的分布海拔最高,依次为黄壤、黄红壤,红壤的分布海拔最低;③全磷、有机碳及C/N随着海拔高度的上升呈增加趋势。全钾含量随着海拔高度的上升呈下降趋势;④不同森林类型土壤养分存在差异,常绿阔叶林、落叶阔叶林和常绿落叶阔叶混交林的各土壤养分含量均较高;山顶矮林和温性针叶林除全氮和全钾含量外,其他土壤养分值显著高于其他林型;竹林及灌木林的土壤养分条件相对较差;⑤不同森林类型土壤养分含量的空间分布规律与其分布的海拔高度范围有关。  相似文献   
62.
黄土高原植被净初级生产力时空变化及其影响因素   总被引:8,自引:3,他引:8  
为了探明黄土高原地区植被生产力变化的驱动机制,该文基于MODIS传感器获得的MOD17A3数据,分析了黄土高原2000-2010年间植被净初级生产力(net primary productivity,NPP)的时空变化及其主要影响因素,并借助多元统计分析方法对引起NPP变化的自然和人为因素进行量化分析。结果表明:黄土高原植被总NPP从2000年的119 Tg(以C计)增加到2010年的144 Tg(以C计),年增速4.57 g/(m2·a)(P0.05)(以C计)。黄土高原约91%的区域NPP呈增加趋势,37%的区域增加趋势显著,主要分布在陕西、青海大部分地区、甘肃南部及宁南山区。整个黄土高原近11 a间NPP变化受自然和人为因素共同影响,其中退耕还林还草累计面积、帕尔默干旱指数(palmer drought severity index,PDSI)、耕地面积和人口数量是影响NPP变化的主要因素。退耕还林还草累计面积占四者总贡献率的43%,PDSI占40%,耕地面积和人口数量分别占13%和4%。对区域而言,由退耕还林还草工程引起的土地利用覆被变化是退耕区(陕北、甘肃东南部等)NPP增加的主要因素,而近年来干旱情况的缓解(PDSI呈上升趋势)则是青海、内蒙古等地NPP增加的主要因素。该研究对于黄土高原各区域生态资源管理,以及生态系统的建设具有一定的指导和借鉴意义。  相似文献   
63.
为了直观地反映天然林资源保护工程所带来的生态效益,体现重大生态工程的巨大作用,实现林业及生态的可持续发展,依据LY/T1721-2008《森林生态服务功能评估规范》,应用分布式测算方法,对东北和内蒙古重点国有林区天保工程保育土壤物质量及价值量进行评估.结果表明:1)截至2015年,9个优势树种固土和保肥总量分别为13.17亿t/a和8 203.72万t/a,比天保工程实施前分别增加2.36亿t/a和1 738.23万t/a;2)9个优势树种固土和保肥总价值分别为905.29和2 408.92亿元/a,比天保工程实施前分别增加455.44和699.69亿元/a;3)桦木林和阔叶混交林固土效益突出,而红松林和樟子松林固土效益不显著;落叶松林和阔叶混交林保肥效益均最好,樟子松林保肥效益较差;4)对森林实施保护,能有效改善其生态系统服务功能,使森林保育土壤生态效益得到相应的提升.研究为评估天保工程区森林的其他生态服务功能,以及后续天保工程的实施提供科学依据.  相似文献   
64.
In order to examine the effects of disturbance, vegetation type, and microclimate on denitrification and denitrifier community composition, experimental plots were established at the H. J. Andrews Experimental Forest in the Cascade Mountains of Oregon. Soil cores were reciprocally transplanted between meadow and forest and samples were collected after 1 and 2 years. Denitrifying enzyme activity (DEA) was measured using the acetylene block assay and terminal restriction length polymorphism profiles were generated with nosZ primers that target the gene coding for nitrous oxide reductase. Nitrate concentrations, C mineralization, and water content were measured to gain additional insights into soil properties controlling DEA. Meadow soils were significantly higher in DEA than forest soils, and the highest DEA levels were observed in cores transferred from the meadow into the forest. Nitrate concentrations were also different between forest and meadow soils, but did not correlate to DEA. DEA was higher in open versus closed cores, suggesting an association between denitrification and the rhizosphere. Denitrifier communities of undisturbed forest and meadow soils shifted through a 4-year period but remained distinct from each other. Similarly, denitrifier communities clustered by vegetation type of origin regardless of manipulation, suggesting that the overall denitrifier communities are well buffered against environmental changes.  相似文献   
65.
Coastal rainforests of southeast Alaska have relatively simple species composition but complex structures with high diversity of tree ages, sizes and forest canopy layers, and an abundant understory plant community. Wildlife and fisheries resources also play an important role in the ecological functioning of forest and aquatic systems. Clearcutting has greatly altered these forest ecosystems with significant decreases in structural diversity of forest stands and greatly reduced wildlife habitat. This paper synthesizes information on management options in older forests that have never been actively managed, and in younger forests to increase diversity of stand structures and their associated effects on biodiversity. Light to moderate levels of partial cutting in old-growth forests can maintain the original diversity of overstory stand structures and understory plant communities. In younger forests that develop after clearcutting, mixed alder-conifer stands provide more heterogeneous structures and significantly higher understory biomass than in pure conifer forests. Research has shown that red alder increases diversity and abundance of understory plants, and provides forage for deer and small mammals. Results also show a clear linkage between alder and improved invertebrate diversity in aquatic systems. A combination of light partial cutting in older forests along with inclusion of red alder in conifer-dominated forests could provide the greatest amount of diversity and maintain the complex stand structures that are an important component of these forest ecosystems.  相似文献   
66.
Summary The effect of liming on in-situ N transformations was studied in two stands of different ages of each of Scots pine (Pinus sylvestris L.), Douglas fir [Pseudotsuga menziesii (Mirb.) Franco], and common oak (Quercus robur L.). The stands were located on acid sandy soils in an area with high atmospheric N input. The organic matter of the upper 10-cm layer of the soil, including the forest floor, had a relatively high N content (C: N ratio <25) in all stands. Using a sequential core technique, N transformations were measured in both control plots and plots that had been limed 3 years previously with 3 t ha-1 of dolomitic lime. Limed plots had a higher net NO inf3 sup- production and a higher potential for NO inf3 sup- leaching than the controls in all stands except that of the younger oak. Net N mineralization did not differ significantly between limed and control plots in oak stands and younger coniferous stands but was significantly lower in the limed plots of the older coniferous stands. It is concluded that long-term measurements of net N mineralization in limed forest soils are needed to evaluate the effect of liming with respect to the risk of groundwater pollution.  相似文献   
67.
Summary Microbial biomass in the upper 7 cm of soil and needle decomposition on the forest floor were measured seasonally for 10 months in a mountain hemlock (Tsuga mertensiana) old-growth forest and in a regrowth forest after Phellinus weirii, a root-rot pathogen infection, had caused disturbance. The microbial biomass was higher in the old-growth forest soil than in the regrowth forest soil. However, T. mertensiana needle decomposition rates were higher in the regrowth than in the old-growth forest. Total N, Ca, Fe, Cu, and Zn concentrations in needles increased during the 1st year of decomposition in both the old and the regrowth forests, but P, K, Mg, Mn, and B concentrations decreased. N, P, K, Mg, Cu, and Zn concentrations were lower in regrowth than in old-growth decomposing needles. During mineralization, needles in the regrowth forests released more N, P, and K as a result of higher needle decomposition rates. Our results suggest that higher needle decomposition rates increased the mineralization of N, P, and K, which may lead to increased soil fertility and faster tree growth rates in the regrowth forest.  相似文献   
68.
利用层次分析与Fuzzy数学相结合方法,对辽宁省东部山区5种森林植被类型水源涵养能力进行了多目标综合评判。首先利用层次分析法确定了评价因子林冠截留、林冠蒸散、枯落物蓄水、土壤容重、非毛管孔隙度、初渗速率、稳渗速率、土壤总蓄水和土壤有效水的权重集为C=(0.0245,0.0051,0.1993,0.0109,0.0762,0.0565,0.2827,0.0573,0.2866),然后利用最大模糊熵原则确定了评价因子的隶属函数,最后利用Fuzzy综合评判得出油松、落叶松、红松、柞木林、杂木林评价结果模糊子集为B=(0.4686,0.3784,0.4145,0.6128,0.4808),结果表明阔叶林水源涵养效益高于针叶林,其中柞木林效益最佳。  相似文献   
69.
对上海市郊外环林带两侧总悬浮颗粒物浓度(简称TSP)和可吸入颗粒物浓度(简称PM10)同步测定表明:林带的防尘效应与风向有关,下风向处的TSP与PM10日均浓度均分别比上风向低19%-44%和39%-61%。林带边粒径分布测定结果表明:下风向处较大粒径颗粒物的相对含量比上风向处小一些;冬季的粒子谱分布呈现较大粒子和较小粒子重量累积百分比较高、中等粒子的重量累积百分比较低的态势;而春季则相反,中等粒子的重量累积百分比较高、较大粒子和较小粒子则比较低。说明冬春不同风向条件下上海市郊的大道旁林带区具有一定的防尘效应。  相似文献   
70.
以庄浪县5种林草间作模式为对象,在田间采用张力计法测定各模式地的低吸力段土壤水分特征曲线,分析各模式地的土壤持水性能,比较不同模式地的比水容量,结果表明,各模式地土壤含水率随吸力变化较快;五种模式不同土层土壤持水力存在明显差异,表层土壤持水力较大,60cm土层土壤持水能力最差。仁用杏+红豆草模式地土壤持水能力和供水能力最强,是最为耐旱模式,油松+紫花苜蓿模式供水能力最差。  相似文献   
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