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21.
In Malaysia, the main land change process is the establishment of oil palm plantations on logged‐over forests and areas used for shifting cultivation, which is the traditional farming system. While standing carbon stocks of old‐growth forest have been the focus of many studies, this is less the case for Malaysian fallow systems and oil palm plantations. Here, we collate and analyse Malaysian datasets on total carbon stocks for both above‐ and below‐ground biomass. We review the current knowledge on standing carbon stocks of 1) different forest ecosystems, 2) areas subject to shifting cultivation (fallow forests) and 3) oil palm plantations. The forest ecosystems are classified by successional stage and edaphic conditions and represent samples along a forest succession continuum spanning pioneer species in shifting cultivation fallows to climax vegetation in old‐growth forests. Total carbon stocks in tropical forests range from 4 to 384 Mg C/ha, significantly wider than the range of total carbon stocks of oil palm plantations, 2 to 60 Mg C/ha. Conversion of old‐growth forest areas to oil palm plantations leads to substantial reduction in carbon storage, while conversion of forest fallows to oil palm plantations may sustain or even increase the standing carbon stock.  相似文献   
22.
Understanding of biomass and water allocation in plant populations will provide useful information on their growth pattern and resource allocation dynamics. By direct measurement, the biomass and water...  相似文献   
23.
通过对闽江河口湿地芦苇(Phragmites australis)和互花米草(Spartina alterniflo-ra)群落特征和生物量的调查,结果表明:2种植物株高和密度呈显著负相关.芦苇地上部各构件生物量最大值出现在夏季,其值为1 524.8±78.85 g.m-2;互花米草最大值出现在秋季,其值为3 037.2±248.78 g.m-2.互花米草地上生物量显著大于芦苇(P<0.05),但立枯量无显著差异(P>0.05).2种植物地下生物量均为0~15 cm>15~30 cm>30~60 cm;芦苇夏季各层生物量极显著大于其他季节(P<0.05),互花米草地下各层生物量在冬季达到最大,生长季节逐渐下降,夏季最小.芦苇和互花米草总生物量积累动态呈典型的单峰值曲线,总生物量互花米草高于芦苇,但二者差异不显著.随着入侵时间推移,互花米草总生物量还要持续增长.  相似文献   
24.
在江苏盐城新洋港滩涂由海向陆建立样地:零星米草斑块(SAP)、稳定米草滩下边缘(SAFI)、2003年米草定居处(SAF03)、1989年米草定居处(SAF89),对互花米草(Spartina alterniflora)的生物量动态变化进行了研究。结果表明:1)除SAF03样地外,其他样地互花米草叶生物量随时间的推移都有不同程度的减少,SAF03叶生物量始终都显著高于其他样地(P<0.05);各样地茎和繁殖器官生物量均有所增加,繁殖前期SAFI处茎生物量增长最快,达18.97g.m2.d-1;离海越近繁殖器官生物量增加越大;11月份SAF89样地各器官生物量顺序为:叶>茎>繁殖器官,其他样地:茎>叶>繁殖器官。2)各次调查中,随着时间的推移各样地叶生物量分配减少,而茎生物量与繁殖器官生物量分配增多;由陆向海各样地叶生物量分配减少,而茎生物量与繁殖器官生物量分配增加。3)SAFI处互花米草地下/地上生物量的比值为2.39,极显著高于其他样地(P<0.01)。  相似文献   
25.
水分是干旱区生态过程的第一非生物限制因子,土壤氮由于直接影响着生物生产力和土壤生态过程而被认为是仅次于水分的限制因子。利用人工施加氮肥的控制试验研究了荒漠植被草本层片植物在多度、物种丰富度、高生长以及地上部分生物量等群落学特征对不同施肥处理的响应。结果表明,在施肥量分别为12.5、25、50 g·m-2时,样方植物多度和物种丰富度在施肥当年和第二年较对照均有不同程度的降低,且施肥量越高,降低越明显,这一结果支持来自典型草地和森林植被生物多样性对氮素增加或氮降沉增加响应的结论,即氮素的增加会使生物多样性减少。地上部分生物量对施氮肥的响应在施肥当年(年降水量为多年平均值的1.4倍)和第二年(年降水量为多年平均值的0.7倍)表现出相反的规律,即施肥当年随着施肥量的增加生物量显著增加,而在第二年则显著减小,说明水肥耦合同样有利于荒漠生态系统生物生产力的提高。氮素对植物高生长的影响不明显,各施肥梯度与对照相比均无显著性差异(P>0.05),这可能主要取决于荒漠草本植物本身固有的生物学特性。  相似文献   
26.
The large‐scale forest fires that occurred during the major El Niño event in 1997 can be counted among the worst environmental disasters in Southeast Asia. This study investigates atmospheric mesoscale features over Sumatra and the Klang Valley in Peninsular Malaysia during the resultant haze episode of September 1997 utilizing a limited area mesoscale three‐dimensional meteorological and dispersion model, The Air Pollution Model (TAPM). Mesoscale features that would not be highlighted by global numerical prediction models, such as the daily land and sea breeze conditions at the selected air pollution stations located near the west coast of Peninsular Malaysia, were predicted with an Index of Agreement of 0.3, which implied a moderate conformity between the predicted and observed values. Tracer analysis of air particles at a selected location in the Straits of Malacca verified the existence of the landward and shoreward movement of the air during the simulation of the low‐level wind field. Air pollutants from the burning areas of neighbouring Sumatra just across the straits were transported towards the Klang valley during the daytime and seawards during the nighttime, highlighting the recirculation features of aged and newer air particles over the seven days (13–18 September) of the model simulation. The presence of the central Main Range east of the Klang valley to a certain extent limited further eastward movement of the air particles. Near calm conditions at low levels were simulated from midnight to midday on 14 September, where the movement of the polluted air particles from the uncontrolled burning in Sumatra was confined within the Straits of Malacca. Turbulence within the planetary boundary layer in terms of the total kinetic energy was found to be weak from 14 to 15 September, congruent with the weak strength of low level winds that reduced the ability of the air to transport the pollutants during the period of severe smoke haze. Statistical evaluation showed that parameters such as the systematic RMSE (root mean square error) and unsystematic RMSE for the zonal wind component were slightly higher than for the meridional one, indicating higher errors between the observed and simulated zonal values. Otherwise, the equatorial meteorological parameters such as wind speed and temperature were successfully simulated by the model with comparatively high correlation coefficients, lower RMSEs and moderately high indices of agreement with observed values.  相似文献   
27.
喀斯特石漠化小生境对大型土壤动物群落结构的影响   总被引:2,自引:0,他引:2  
叶岳  周运超 《中国岩溶》2009,28(4):413-418
对花江流域喀斯特地区小生境(土面、石槽、石沟)的土壤动物进行了研究。结果表明:喀斯特石漠化地区小生境共捕获大型土壤动物平均为276.7只,分别隶属3门7纲24类。其中,优势类群蚂蚁占总数的56.75%。 土面生境土壤动物的多样性指数为1.199,石沟的为1.592,石槽的为1.962; 均匀性指数为0.616,石沟的为0.989,石槽的为1.095; 土面生境土壤动物的优势度为0.545,石沟的为0.353,石槽的为0.245。利用统计软件SPSS13.0进行相关分析,结果说明不同小生境和土层对土壤动物个体数量和类群数影响均不显著,组间的均方差(F值)分别为0.834和1.226,但小生境对土壤动物的生物量有显著的影响,F值为3.844。三种小生境中,石沟生境比较有利于土壤动物生存。   相似文献   
28.
开垦对内蒙古温带草地土壤不同有机碳组分的影响(英文)   总被引:3,自引:2,他引:1  
Cultivation is one of the most important human activities affecting the grassland ecosystem besides grazing, but its impacts on soil total organic carbon (C), especially on the liable organic C fractions have not been fully understood yet. In this paper, the role of cropping in soil organic C pool of different fractions was investigated in a meadow steppe region in Inner Mongolia of China, and the relationships between different C fractions were also discussed. The results indicated that the concentrations of different C fractions at steppe and cultivated land all decreased progressively with soil depth. After the conversion from steppe to spring wheat field for 36 years, total organic carbon (TOC) concentration at the 0 to 100 cm soil depth has decreased by 12.3% to 28.2%, and TOC of the surface soil horizon, especially those of 0-30 cm decreased more significantly (p<0.01). The dissolved organic carbon (DOC) and microbial biomass carbon (MBC) at the depth of 0-40 cm were found to have decreased by 66.7% to 77.1% and 36.5% to 42.4%, respectively. In the S.baicalensis steppe, the ratios of soil DOC to TOC varied between 0.52% and 0.60%, and those in the spring wheat field were only in the range of 0.18%-0.20%. The microbial quotients (qMBs) in the spring wheat field, varying from 1.11% to 1.40%, were also lower than those in the S. baicalensis steppe, which were in the range of 1.50%-1.63%. The change of DOC was much more sensitive to cultivation disturbance. Soil TOC, DOC, and MBC were significantly positive correlated with each other in the S. baicalensis steppe, but in the spring wheat field, the correlativity between DOC and TOC and that between DOC and MBC did not reach the significance level of 0.05.  相似文献   
29.
在非淹水、淹水两种水分条件下模拟氮沉降变化(分别相当于氮沉降0g/(m2.a)、1g/(m2.a)、3g/(m2.a)、5g/(m2.a))对三江平原典型湿地植物小叶章生物量及其分配的影响。结果表明,不同水分状况下氮沉降均促进小叶章生物量的积累,且以N5水平下生物量增加最多(p<0.05)。小叶章各器官生物量增长程度对氮沉降的响应并不一致:非淹水条件下根生物量平均增长最大(54.5%),其次是叶(31%)、茎(19.2%);淹水条件下小叶章各部位的生物量增长更为显著,其中根生物量平均增长124.7%,叶、茎生物量分别增长62%和61.1%。氮沉降明显促进了根生物量的积累,提高根生物量的分配比例。生长季的氮沉降对于改变湿地的营养状况、刺激植物生长具有直接的生态意义。  相似文献   
30.
 格局和过程与异质性有关。以呼伦贝尔克氏针茅草原不同放牧强度下的演替群落为对象,开展群落植被空间分布格局及土壤有机质空间异质性研究。结果显示,不同放牧强度样地群落结构和群落种类组成存在明显差异。轻度放牧样地样方内有8种植物,群落优势种为克氏针茅(Stipa krylovii);中度放牧样地样方内有12种植物,群落优势种为糙隐子草(Cleistogenes squyarrosa);而重度放牧样地样方内只有7种植物,群落优势种为多根葱(Allium polyrhizum)。随放牧强度的增强,植被地上生物量及其变异系数逐渐降低;土壤有机质含量表现为轻度放牧>中度放牧>重度放牧,而其变异系数表现为中度放牧>轻度放牧>重度放牧。从植被地上生物量和土壤有机质含量变异函数分析来看,随放牧压力的增大,植被地上生物量空间自相关性增强,空间异质性变大;土壤有机质含量空间分布自相关性先增强,然后减弱,空间变异性先变大,然后变小。在10 cm×10 cm的微尺度上,重牧群落植被地上生物量和土壤有机质含量之间表现出明显的相关性(P<0.05)。  相似文献   
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