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1.
青藏铁路格尔木至安多段沿线高寒植被、土壤特性与人工植被恢复研究 总被引:4,自引:3,他引:4
对青藏铁路格尔木至安多段沿线不同海拔梯度下高寒植被与土壤特征进行研究。沿线高寒植被的主要分布种有91个,主要建群种为:紫花针茅(Stipa purpurea)、青藏苔草(Carex moorcroftii Falc)、藏异燕麦(Helictotrichon tibeticum)、黄芪(Astragalus)、棘豆(Oxytropis)、粗壮嵩草(Kobresia robusta Maximowicz)、矮嵩草(Kobresia robusta Maximowicz)等。高寒植被物种数、平均盖度、地下生物量和总生物量与海拔呈正相关性,而平均高度和地上生物量与海拔呈负相关性。沿线高寒植物群落主要可划分为海拔小于4 000 m的高寒荒漠植被、海拔4 000~4 500 m的高寒河谷灌丛植被、海拔4 500~4 700 m的高寒草原植被、海拔4 700~4 800 m的高寒垫状植被、海拔4 800~4 900 m的高寒草甸植被和海拔5 000 m左右的高寒沼泽和高寒流石坡植被。土壤全氮和有机质含量都与海拔高度呈正相关性,但全磷、全钾及pH值则在高海拔地区达到最低。沿线土壤颗粒组成主要以中、细沙(d<0.4 mm)为主,占到了总含量的85%以上,因此,中、细沙是构成沿线土壤的最主要颗粒。沿线植被恢复比较有效的方法是选择紫花针茅、垂穗披碱草、燕麦、棘豆、黄芪、蒿草、梭罗草等当地草种,采取原生植物种子异地繁殖,再经沿线播种或栽培抚育,从而达到植被恢复的目的。该研究对青藏铁路沿线的植被恢复与植物防沙工程具有一定的指导意义。 相似文献
2.
Soil degradation is perceived as a major threat in the Mediterranean region due to changes in land-use and possible future climate change. Soil aggregation parameters are used here to demonstrate their potential as a key-indicator for land degradation studies. The monitoring of these indicators offers a means of establishing the vulnerability and resilience of geo-ecosystems. Soil aggregation stability and distribution were studied on soils with an open shrubby vegetation cover, from several places in southeastern Spain and southern France, by applying drop tests and determining aggregate size distributions. Aspect and vegetation cover were incorporated in the soil sampling. Several indices were derived from these analyses to indicate the degree of soil aggregation. This was done by referencing to a base level of aggregation (bare soil aggregation). It was found that soil aggregates were more stable and were often coarser under vegetation, when compared to their immediate surrounding bare areas. A similar, slightly less clear effect was noted on N-facing exposed slopes when compared to S-facing exposed slopes. Long-term changes were found by studying cultivated land, abandoned fields and land covered by semi-natural vegetation, on comparable substrate and comparable land units. It is clear that soil aggregation and aggregate stability increases with time (years). It is argued that soil aggregation indices can be used as a key-indicator for degradation processes at a fine scale with implications for runoff and sediment generating processes at the hillslope scale. 相似文献
3.
基于植被盖度和高度的不同退化程度高寒草地地上生物量估算 总被引:1,自引:0,他引:1
由于气候变化和不合理的人类活动,20世纪80年代以来青藏高原高寒草地发生严重退化。地上生物量是评价草地退化的直观指标。通常采用植被盖度和高度来估算草地地上生物量,但草地退化后,植被盖度和高度与地上生物量之间的关系是否会发生变化目前还不清楚,这影响着退化草地生物量估算的精度。通过多元回归分析研究了青藏高原中部和东北部高寒草甸、高寒草原在不同退化程度下植被盖度和高度与地上生物量的关系。结果表明:(1)高寒草甸与高寒草原地上生物量整体上及不同退化阶段都没有显著差异(P>0.05)。(2)随着退化程度的加剧植被盖度和高度对地上生物量的影响也发生改变,体现在未退化阶段地上生物量主要受植被高度影响,退化后主要受植被盖度影响。(3)无论是高寒草甸还是高寒草原分退化程度的回归模型估算结果都较不分退化程度模型估算的生物量更接近实测值。我们建议在退化高寒草地研究中采用盖度和高度估算生物量时,根据退化阶段采用不同的估算模型。 相似文献
4.
高寒植被类型及其植物生产力的监测 总被引:30,自引:1,他引:30
监测并分析了高寒草甸二种不同植被类型的生态环境条件、植物种类组成、生物量变化规律及其差异。研究表明:距离相近且海拔高度基本相同的矮蒿草草甸和金露梅灌丛草甸二种群落内部,由于受地形部位影响,虽然降水基本相同,但地表受热及蒸发量不同,土壤湿度存在明显差异。受上述环境条件特别是受土壤温湿度条件的限制,二种群落内的植物种类不同,地下、地上生物量的变化也不同,一般在山地阴坡主要分布着以金露梅灌丛为优势种外,多以线叶蒿草、小蒿草、羊茅、及其它杂草类为伴生种的金露梅灌丛草甸植被类型,而主要分布于滩地的矮蒿草草甸多以垂穗披碱草等植物为伴生种的湿中性植被类型,属典型的高寒草甸植被类型。生物量监测结果的比较分析表明,群落的地上生物量为:矮蒿草草甸 > 金露梅灌丛草甸;地下生物量随植被类型的不同,其峰值与谷值出现时间不一致。年内地下净生产量为:金露梅灌丛草甸 > 矮蒿草草甸。地下生产量周转值为:矮蒿草草甸 > 金露梅灌丛草甸。 相似文献
5.
不同植被类型覆盖下土壤CO2浓度对洞穴景观的影响 总被引:10,自引:0,他引:10
土壤中的CO2 通过影响土壤水对碳酸盐岩的溶蚀能力控制洞穴滴水中的Ca2 +初始含量 ,同时它进入洞穴水体后溶解度的变化也会影响洞穴景观的形成。研究表明 ,不同植被类型对土壤CO2 浓度会产生不同影响。本文通过模拟分析认为 ,在一定范围内 ,地表生态系统的改善有利于土壤中CO2 的增加和洞穴中碳酸钙沉积景观的发育 ,但是若超过一定的阈值 ,即土壤中的CO2 浓度过高 ,使喀斯特水中的CO2 不能在洞穴顶部碳酸盐岩体渗流过程中完全被消耗时 ,洞穴滴水的酸性会对碳酸钙产生溶蚀作用 ,易形成洞穴溶蚀景观。 相似文献
6.
基于2000-2014年MODIS NDVI数据及气象数据,运用累计降水利用效率变化差异(CRD,cumulative rain use efficiency differences)估算模型和基于地形要素降水量插值法,探讨2000-2014年黄土高原RUE(降水利用效率rain use efficiency)对植被变化的响应,以期为黄土高原生态可持续发展提供数据支撑。结果表明:黄土高原大部分地区植被覆盖得以改善,其面积约占总面积的81%,区域边缘植被覆盖退化严重。黄土高原降水利用效率RUE与累计NDVI的相关性总体表现为“东南呈正相关,西北为负相关”的空间格局,全区相关系数以正相关为主。黄土高原CRD与植被变化趋势的相关性显著,其中,植被退化背景下,植被退化程度越严重,RUE越低;植被恢复背景下,RUE受“退耕还林还草”作用显著,2000-2005年,RUE呈上升趋势,2007年后,随着退耕还林还草政策的工作重心转移,RUE呈波动变化。 相似文献
7.
Ecosystems can simultaneously provide multiple functions and services. Knowledge on the combinations of such multi-dimensional functions is critical for accurately assessing the carrying capacity and implementing sustainable management. However, accurately quantify the multifunctionality of ecosystems remains challenging due to the dependence and close association among individual functions. Here, we quantified spatial patterns in the multifunctionality of alpine grassland on the Tibetan Plateau by integrating four important individual functions based on data collected from a field survey and remote sensing NDVI. After mapping the spatial pattern of multifunctionality, we extracted multifunctionality values across four types of grassland along the northern Tibet Plateau transect. Effects of climate and grazing intensity on the multifunctionality were differentiated. Our results showed that the highest values of multifunctionality occurred in the alpine meadow. Low values of multifunctionality were comparable in different types of grassland. Annual precipitation explained the large variation of multifunctionality across the different types of grassland in the transect, which showed a significantly positive effect on the multifunctionality. Grazing intensity further explained the rest of the variation in the multifunctionality (residuals), which showed a shift from neutral or positive to negative effects on multifunctionality across the different types of grassland. The consistently rapid declines of belowground biomass, SOC, and species richness resulted in the collapse of the multifunctionality as bare ground cover amounted to 75%, which corresponded to a multifunctionality value of 0.233. Our results are the first to show the spatial pattern of grassland multifunctionality. The rapid decline of the multifunctionality suggests that a collapse in the multifunctionality can occur after the vegetation cover decreases to 25%, which is also accompanied by rapid losses of species and other individual functions. Our results are expected to provide evidence and direction for the sustainable development of alpine grassland and restoration management. 相似文献
8.
半干旱黄土丘陵区人工植被深层土壤干化效应 总被引:11,自引:1,他引:11
科学评估不同植被恢复模式的土壤干化效应是目前黄土高原生态恢复一个亟需解决的关键问题。本文以半干旱黄土丘陵区14种典型人工植被为例,通过构建土壤水分相对亏缺指数CSWDI和样地土壤水分相对亏缺指数PCSWDI,定量评估了不同植被深层土壤干化效应。研究发现:除农地和撂荒草地外,各植被深层土壤水分均随土层深度的增加而升高,深层土壤水分含量同土层深度之间呈一元线性关系。不同人工植被深层土壤相对干化程度存在差异,以油松林地最高,杨树侧柏混交林地最低。不同植被类型受其自身蒸腾耗水、根系特征和耕作等影响,土壤干化的程度在剖面上存在差异,但总体趋势为随深度增加而降低。针阔叶植被配置模式土壤水分状况要稍好于阔叶纯林的配置模式。 相似文献
9.
137Cs示踪法研究青藏高原草甸土的土壤侵蚀 总被引:5,自引:0,他引:5
运用137Cs示踪法对青藏高原高寒草甸典型的两个小流域的土壤侵蚀进行了研究,结果表明:高寒草甸植被区的土壤137Cs在土壤剖面中呈指数型分布,分布深度一般在20cm左右;坡顶部由于风蚀、冻融侵蚀和水蚀较强,致使侵蚀强于下部,除坡顶部外其他坡位侵蚀强度都符合坡上部<坡中部<坡下部的规律;高寒草甸植被覆盖度与土壤侵蚀强度呈显著的负相关关系(p<0.01),土壤平均侵蚀模数随植被覆盖度的增加呈线性降低的趋势,相关系数R2达到0.997以上。高寒草甸退化程度越高,土壤侵蚀越强。退化较强的草甸区的平均侵蚀模数是退化较弱区的2.23倍,最大侵蚀模数可达2960.22t/(km2.a)。 相似文献
10.
以渭-库绿洲为例,基于Landsat8 OLI遥感数据,考虑到短波红外特征与土壤水分有很好的关联,将短波红外波段引入可见光-近红外波段构成的传统植被指数中,旨在建立新的植被指数监测土壤水分。基于改进前后共8种植被指数,通过灰色关联分析(GRA)筛选出3种高关联度植被指数,再用偏最小二乘回归(PLSR)进行建模,然后用该模型对研究区土壤水分反演,并对其空间分布格局进一步分析。结果显示:(1)在传统植被指数的基础上引入信息量较大的短波红外,可大幅度降低植被指数间的VIF,消除其多重共线性。(2)通过GRA分析可知,改进后的植被指数与土壤水分之间的关联度均要高于传统植被指数。(3)通过GRA分析筛选出3种高关联度植被指数建立得到精度较高,稳定性较好的PLSR模型,并反演研究区土壤水分分布状况,土壤水分总体上至西向东,由北到南降低,然而土壤水分最小值主要分布在绿洲—荒漠交错带,使得交错带成为“生态裂谷”。研究表明:将短波红外波段引入到可见光-近红外植被指数中,建立的新植被指数可获得较好的土壤水分空间分布反演结果。 相似文献
11.
WANG Fang HE Yongtao FU Gang NIU Ben ZHANG Haorui LI Meng WANG Zhipeng WANG Xiangtao ZHANG Xianzhou 《资源与生态学报(英文版)》2020,11(3):290-297
Enclosure is one of the most widely used management tools for degraded alpine grassland on the northern Tibetan Plateau, but the responses of different types of grassland to enclosure may vary, and research on these responses can provide a scientific basis for improving ecological conservation. This study took one site for each of three grassland types (alpine meadow, alpine steppe and alpine desert) on the northern Tibetan Plateau as examples, and explored the effects of enclosure on plant and soil nutrients by comparing differences in plant community biomass, leaf-soil nutrient content and their stoichiometry between samples from inside and outside the fence. The results showed that enclosure can significantly increase all aboveground biomass in these three grassland types, but it only increased the 10-20 cm underground biomass in the alpine desert. Enclosure also significantly increased the leaf nutrient content of the dominant plants and contents of total nitrogen (N), total potassium (K), and organic carbon (C) in 10-20 cm soil in alpine desert, thus changing the stoichiometry between C, N and P (phosphorus). However, enclosure significantly increased only the N content of dominant plant leaves in alpine steppe, while other nutrients and stoichiometries of both plant leaves and soil did not show significant differences in alpine meadow and alpine steppe. These results suggested that enclosure has differential effects on these three types of alpine grasslands on the northern Tibetan Plateau, and the alpine desert showed the most active ecological conservation in the responses of its soil and plant nutrients. 相似文献
12.
陆面过程在气候变化中具有重要作用,其中土壤水文过程是陆面过程的重要内容,然而目前陆面模式中土壤水力学参数仅依赖于土壤质地,并未考虑植被类型对其影响,这与自然过程不符,从而导致对大规模植被恢复的水文、气候效应认识不充分.为揭示植被恢复对土壤物理参数的影响,改进陆面模式中土壤参数的精度,论文以黄土高原为研究对象,收集整理了... 相似文献
13.
The 26 plots including natural forestland, secondary forestland, shrub-grassland, sloping cropland, artificial forest and abandoned field, were selected to discuss the impact of land cover on the soil characteristics in the three karst districts of Chongqing. The results showed that: (1) After the vegetation turned into secondary vegetation or artificial vegetation, or reclamation, soil physical properties would be degraded. In the surface-layer soil of sloping cropland, the contents of > 2 mm water-stable aggregates decreased obviously with apparent sandification. (2) The contents of soil organic matter and total nitrogen are controlled completely by vegetation type and land use intensity. The increasing trend is rather slow in the early days when over-reclamation is stopped and the land is converted to forest and pasture. (3) Herbaceous species increase and woody plants species decrease with the increase of land use intensity, therefore, the soil seed banks degrade more seriously. (4) The soil degradation index has been set up to describe the relative soil degradation degree under the conditions of different vegetation types. (5) Land cover has a significant effect on karst soil characteristics, land degradation in the karst ecosystem is essentially characterized by the different degradation of soil functions that serve as water banks, nutrient banks and soil seed banks. 相似文献
14.
黄土高原植被破坏前后土壤团粒结构分形特征 总被引:45,自引:1,他引:45
应用分形理论的相关模型对黄土高原子午岭地区林地及不同开垦年限的农地土壤团粒结构分形特征进行了研究。结果表明 :林地和不同开垦年限的农地土壤团粒结构分形维在 2 .32~ 2 .91之间 ,表现为 >0 .2 5mm的团聚体含量越低 ,其结构的分形维越高。分形维与水稳性团聚体含量之间呈显著线性关系。林地和不同开垦年限农地表层土壤的物理性质随土壤团聚体的分形维变化而变化 ,即分形维越小 ,>0 .2 5mm的团粒含量越高 ,土壤容重也越小 ,土壤疏松 ,土壤通气度大 ,土壤涵蓄水分与供应作物生长所需水分的能力越好 ;分形维越大 ,>0 .2 5mm的团粒含量低 ,土壤容重也越大 ,土壤紧实 ,土壤通气度小 ,则土壤涵蓄水分与供应作物所需水分的能力越差。上述结果在一定程度上表明 ,植被遭到破坏、不合理的人为开垦 ,是土壤退化和生态环境恶化的主要原因 ;恢复和重建植被 ,增加地面覆盖 ,应为加速黄土高原综合治理的基本内容。 相似文献
15.
基于无人机遥感的高寒草原沙化模型及等级划分 总被引:1,自引:0,他引:1
高寒草原是青藏高原草地生态系统的主要组成,在防风固沙、野生动物保育等方面具有重要作用。近年来,在全球气候变化和人为干扰加剧的背景下,高寒草原沙化加剧,基于时空尺度监测范围及程度是防治高寒草地沙化的前提。以青海三江源区玛多县的高寒草原为研究区,结合大疆“精灵3”和“经纬M100”旋翼无人机和地面调查,探讨基于无人机遥测的植被指数在草地沙化调查方面的适宜性,以此为基础制定了高寒草原沙化模型及等级划分标准。结果显示:(1)通过对VDVI(Visible-Band Difference Vegetation Index)、ENDVI(Enhanced Normalized Difference Vegetation Index)和NGRDI(Normalized Green-Red Difference Index)指数与草地沙化指数GDI(Grassland Desertification Index)的相关分析,选取出高寒草地沙化研究最优植被指数为VDVI(R=0.9055);(2)GDI与VDVI的关系模型为VDVI=0.3024GDI2-0.0335GDI+0.0119(R2=0.9326)。模型相对误差为1.779%(RMSE=0.165,R2=0.7447),拟合精度较高;(3)基于无人机遥感植被指数的聚类分析,将研究区高寒草原沙化划分为5个等级,即无明显沙化(VDVI>0.2247)、轻度沙化(0.1493 < VDVI < 0.2246)、中度沙化(0.0924 < VDVI < 0.1492)、重度沙化(0.0692 < VDVI < 0.0923)和极度沙化(VDVI<0.0692)。 相似文献
16.
若尔盖高寒湿地土壤氮矿化对温度和湿度的响应 总被引:11,自引:0,他引:11
采用原状土矿化培养方法研究了温度和湿度及其交互作用对青藏高原若尔盖湿地土壤(沼泽土和泥炭土)氮矿化的影响。研究表明,氮矿化速率在5~15℃之间对温度的反应较弱,而超过15℃时矿化速率则明显增加;泥炭土的氮矿化速率对温度的响应比沼泽土要敏感;氮矿化速率对淹水和非淹水响应敏感;除了在淹水条件下土壤的温度系数Q10在15~25℃之间较大(4.4左右)外,其余温度和湿度下大致在1~2之间,说明了淹水条件下氮矿化对温度响应最敏感的范围在15~25℃之间。 相似文献
17.
重庆喀斯特地区土地覆被类型对土壤特征的影响 总被引:2,自引:0,他引:2
1 Introduction The karst region of Southwest China, with Guizhou Province as the center, extends across Yunnan Province, Guangxi Zhuang Autonomous Region, Sichuan Province, Chongqing, western Hunan Province, Hubei Province, and Guangdong Province, coveri… 相似文献
18.
The effects of vegetation on runoff and soil loss: Multidimensional structure analysis and scale characteristics 总被引:5,自引:0,他引:5
This review summarizes the effects of vegetation on runoff and soil loss in three dimensions: vertical vegetation structures (aboveground vegetation cover, surface litter layer and underground roots), plant diversity, vegetation patterns and their scale characteristics. Quantitative relationships between vegetation factors with runoff and soil loss are described. A framework for describing relationships involving vegetation, erosion and scale is proposed. The relative importance of each vegetation dimension for various erosion processes changes across scales. With the development of erosion features (i.e., splash, interrill, rill and gully), the main factor of vertical vegetation structures in controlling runoff and soil loss changes from aboveground biomass to roots. Plant diversity levels are correlated with vertical vegetation structures and play a key role at small scales, while vegetation patterns also maintain a critical function across scales (i.e., patch, slope, catchment and basin/region). Several topics for future study are proposed in this review, such as to determine efficient vegetation architectures for ecological restoration, to consider the dynamics of vegetation patterns, and to identify the interactions involving the three dimensions of vegetation. 相似文献
19.
土壤呼吸的微小变化会对大气CO2浓度产生重大影响,尤其在极端干旱区。通过对黑河下游额济纳旗四道桥的混合林、胡杨、柽柳、农田及裸地的土壤呼吸进行研究,结果表明:2014 年夏季5 种不同植被类型的土壤呼吸速率大小排序:胡杨柽柳混合林 > 柽柳 > 农田 > 胡杨 > 裸地,各类型的5 cm处土壤温度和湿度无明显变化规律,土壤温度在22~35 ℃,土壤湿度集中在13%~61%的变化范围。探究了5 种不同植被类型的土壤呼吸速率与土壤温度、土壤湿度、地表温度、空气温度及空气湿度的线性相关关系,发现它们的土壤呼吸速率与土壤温度、土壤湿度、空气温度、空气湿度之间无显著相关(P>0.05),表明水热因子对土壤呼吸的影响具有很大的不确定性。 相似文献
20.
伊犁河谷不同植被带下土壤有机碳分布 总被引:10,自引:0,他引:10
结合2008年和2009年野外实地调查与室内分析的资料,运用方差分析等方法对伊犁河谷高山草甸、草甸草原、典型草原、荒漠草原、温性针叶林等9种不同植被条件下的土壤有机碳含量分布及其储量进行了分析估算.研究结果表明:伊犁河谷土壤有机碳含量因植被类型变化而不同.在0~50 cm土层范围,高山草甸、草甸草原土壤有机碳含量较高,其次是温性针叶林和典型草原,含量最低的是隐域植被和荒漠植被土壤.除隐域植被外,各植被类型下土壤有机碳含最基本呈随着土层深度增加而降低的,变化趋势.有机碳密度同样是高山草甸、草甸草原和温性针叶林土壤有机碳密度较高且比较相近,荒漠植被下土壤有机碳密度最低.伊犁河谷草地表层土壤有机碳含量高、密度大,因此应重视对伊犁河谷草地的保护,尤其要保护草地表层土壤以降低浅层土壤有机碳发生变化的可能性,维护土壤碳库的稳定性. 相似文献