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1.
绿洲―荒漠交错带土壤水分变化特征初步研究   总被引:36,自引:0,他引:36       下载免费PDF全文
 以甘肃省的民勤绿洲为例,选择土壤水分最为亏缺的7月,对白刺(Nitraria tangutorum)沙包不同迎风面,以及绿洲和荒漠交错地带的土壤水分进行了取样分析。结果表明,对于白刺沙包而言,其上层和深层土壤水分是迎风坡大于背风坡,中间层次(40~80 cm)则刚好相反。在绿洲与荒漠的交错带上,灌丛沙包与沙丘间低地水分变化有很大的不同,总体而言,丘间地水分含量大于灌丛沙包,但在距离绿洲406 m处,二者均出现一个土壤水分的最低值。在丘间地表层,水分变化是距离绿洲愈近,土壤含水量愈高;而深层土壤水分的变化趋  相似文献   

2.
以甘肃省的民勤绿洲为例,选择土壤水分最为亏缺的7月,对白刺(Nitraria tangutorum)沙包不同迎风面,以及绿洲和荒漠交错地带的土壤水分进行了取样分析。结果表明,对于白刺沙包而言,其上层和深层土壤水分是迎风坡大于背风坡,中间层次(40~80 cm)则刚好相反。在绿洲与荒漠的交错带上,灌丛沙包与沙丘间低地水分变化有很大的不同,总体而言,丘间地水分含量大于灌丛沙包,但在距离绿洲406 m处,二者均出现一个土壤水分的最低值。在丘间地表层,水分变化是距离绿洲愈近,土壤含水量愈高;而深层土壤水分的变化趋  相似文献   

3.
差巴嘎蒿灌丛土壤和根系含水量对降雨的响应   总被引:5,自引:0,他引:5  
以科尔沁沙地半固定沙丘灌木差巴嘎蒿(Artemisia halodendron)为对象,用土钻取样法和壕沟法研究了2006年生长季降雨后差巴嘎蒿周围土壤和根系含水量的时空分布特征及其相互关系,并计算了该灌丛的水量平衡.结果表明:该灌丛在降雨后对水分有暂时存储作用;降雨结束后,灌丛主干的茎流作用使得灌丛中心位置的土壤含水量高于灌丛丛幅垂直投影1/4和3/4处的土壤含水量;雨后6 h灌丛根系含水量与灌丛中心位置的土壤含水量呈极显著的负相关(r=-0.89,P<0.01);灌丛根系含水量在雨后126 h内出现胁迫脉冲间歇反应.水量平衡计算表明,灌丛边缘外1 m处土壤蒸散量高于灌丛覆盖区的蒸散量,灌丛覆盖可降低土壤水分蒸散速率.  相似文献   

4.
白刺沙包浅层土壤水分动态及其对不同降雨量的响应   总被引:3,自引:0,他引:3  
李新乐  吴波  张建平  辛智鸣  董雪  段瑞兵 《生态学报》2019,39(15):5701-5708
以乌兰布和沙漠典型白刺沙包为研究对象,使用EC-5土壤水分传感器对其浅层(0—50 cm)土壤水分进行长期连续监测,分析了白刺沙包不同深度土层对不同降雨量的响应及整个生长季的土壤水分动态特征。结果表明:降雨是乌兰布和沙漠白刺沙包土壤水分的最重要补给源,降雨量大小是影响浅层土壤水分补给深度的决定因素。小于10 mm的降雨完全被表层(0—10 cm)土壤吸收,无法补给10 cm以下土壤水分;10—20 mm的降雨对土壤水分的补给深度达到20 cm;20—30 mm的降雨对土壤水分的补给深度达到40 cm,大于30 mm的降雨补给深度可达到50 cm,甚至更深土层。在研究区降雨量以小于20 mm降雨为主的情况下,20 cm以下土层土壤水分逐步恶化,久之将有利于浅根系草本植物的生长,不利于白刺的生长繁殖。因此,这种降雨格局将对浅层土壤水分及植被演替产生重要影响。  相似文献   

5.
荒漠-绿洲区不同土地利用类型土壤呼吸对温湿度的响应   总被引:1,自引:0,他引:1  
明确荒漠-绿洲过渡区土壤呼吸及其温湿度敏感性特征,对了解干旱、半干旱地区土壤碳循环有重要意义。本研究采用LI-8100土壤呼吸观测系统对河西走廊典型荒漠-绿洲过渡区荒漠梭梭林地、绿洲农田、人工杨树林地3种不同土地利用类型的土壤呼吸进行1年的观测。结果表明,3种土地利用类型全年平均土壤呼吸为人工杨树林地(2.20μmol CO_2·m~(-2)·s~(-1))绿洲农田(1.61μmol CO_2·m~(-2)·s~(-1))荒漠梭梭林地(0.40μmol CO_2·m~(-2)·s~(-1)),造成不同土地利用类型土壤呼吸显著差异的原因主要与土壤有机碳含量有关。Lloyd-Taylor指数模型能够较好拟合土壤呼吸季节性变化与温度的关系。3种不同土地利用类型的土壤呼吸均在低温时(非生长季)较高温时(生长季)对温度变化更敏感。在全年尺度上,不同土地利用类型的土壤呼吸与土壤温度呈极显著正相关(P0.01);荒漠梭梭林地、绿洲农田的土壤呼吸与土壤水分呈极显著正相关(P0.01),人工杨树林地土壤水分低于6%时和高于6%时,土壤呼吸与土壤水分分别呈极显著正相关(P0.01)和显著负相关(P0.05)。本研究结果为干旱区绿洲化过程土壤碳循环的研究提供了基础数据。  相似文献   

6.
掌握土壤水分动态变化规律是绿洲地区水资源管理与生态建设的关键.本文在黑河中游绿洲与荒漠交错地带设置面积约50 km2的研究区域,持续监测2012—2014年间植被生长季节土壤水分含量,利用地统计分析与时间稳定性分析探索土壤水分的时空分布特征.结果表明: 黑河北岸绿洲-荒漠过渡带土壤蓄水量8月最大、10月最小,0~2 m土层土壤平均蓄水厚度约367 mm.绿洲-荒漠过渡带土壤水分梯度除受河流影响外,还与土地利用方式密切相关.不同土地利用类型土壤蓄水量依次为农地>乔木林地>灌木林地>荒漠,农地土壤蓄水量平均高出外围荒漠土壤蓄水量300%以上.研究区内各采样点土壤水分时间稳定性具有明显的空间差异,不同土地利用类型土壤水分稳定程度依次为灌木林地>荒漠>农地>乔木林地.河流对沿岸绿洲土壤水分的直接影响集中在3 km以内,在河岸绿洲与新垦沙地农田之间存在一条土壤水分较为稳定的样带,可以用于指示绿洲生态系统的发展与演变.  相似文献   

7.
科尔沁沙地人工小叶锦鸡儿植被水分入渗动态研究   总被引:12,自引:1,他引:11  
通过对科尔沁沙地不同年龄人工小叶锦鸡儿固沙植被降雨入渗的研究 ,阐明植被对沙地水分入渗的影响。结果表明 ,在降雨量 4 3 4mm ,降雨强度 3 9mm·h-1时 ,降雨后 12 0h内流动沙丘和 5年生人工小叶锦鸡儿植被的水分入渗深度分别为 180cm和 15 0cm ,15年生人工小叶锦鸡儿植被降雨入渗深度为 10 0cm。流动沙丘降雨后土壤水分变化剧烈 ;有植被沙地降雨后土壤水分变化平缓 ,水分下渗浅 .随着植被年龄的增加 ,浅层土壤截留降雨能力不断加强 ,最终形成不透水土层。降雨后短期内流动沙丘浅层土壤中含水量高 ,后期有植被沙丘深层土壤含水量高  相似文献   

8.
民勤绿洲-荒漠过渡带植被梯度特征及其土壤水环境   总被引:1,自引:0,他引:1  
民勤绿洲-荒漠过渡带的植被和土壤水环境随着与绿洲距离的增加具有明显的空间异质性,在景观分异角度沿绿洲至荒漠方向可划分为4个区段。本文研究了各景观区段上的植被特征以及各区段丘间地及灌丛沙包土壤水分特征。结果表明:过渡带植被总盖度约为36%,灌木盖度为18.7%,草本盖度为18.0%,物种丰富度为19。区段1至区段4,物种组成、植被盖度、优势种、建群种均表现出与各区段立地条件相适应的特征,呈现出大灌木→草本→小灌木→草本的格局,对应的地貌呈现出固定→半流动→半固定→流动的格局。各区段丘间地土壤含水量垂直分布差异较大,5~60cm为降水主要持水层;因弱透水层的出现,区段1至区段3在60~180cm含水量出现了第二次波动,水分在弱透水层上的积累为地上植物的生存提供了重要的补给。沙包内土壤含水量从区段1到区段3显著减少。  相似文献   

9.
荒漠-绿洲过渡带是绿洲向沙漠系统的过渡地带,荒漠植物是绿洲扩展或荒漠化加速的缓冲器,土壤环境是影响植物演变的重要影响因素,土壤环境因素是整个过渡带演化的重要驱动力。通过对阜康荒漠-绿洲过渡带荒漠植物群落实地调查,利用通用植物数量分析软件CANOCO 5.0中冗余度分析(RDA),探讨过渡带影响荒漠植物群落数量特征指标的土壤驱动因子。结果表明:(1)土壤含水量、全N、全P和有机质是影响荒漠植物群落数量特征的主要驱动力因子,环境解释量累计达到69%,而总盐、p H和全K对荒漠植物群落数量特征影响较弱;(2)4个土壤主要驱动力对荒漠植物群落数量特征重要性大小顺序:土壤含水量有机质全N全P;(3)荒漠植物群落数量特征与土壤含水量、有机质和全P呈正相关,但与全N为负相关关系,揭示了土壤含水量、有机质和全P是利于荒漠植物群落稳定的正驱动力,而全N为抑制荒漠植物生长的负驱动力。综上所述,土壤各因子的驱动力作用不尽相同,存在正、负差异,协同维护荒漠植物群落数量特征的稳定和发展。  相似文献   

10.
白刺沙堆退化与土壤水分的关系   总被引:1,自引:0,他引:1  
近几十年来,我国西北干旱区白刺沙堆退化严重,导致固定沙丘活化,流沙掩埋绿洲,造成了严重危害。如何尽可能长期保持白刺沙堆的稳定、防止白刺沙堆活化成为绿洲保护和沙漠化防治急需解决的问题。在多年野外观察的基础上,提出了"土壤水分收支不平衡所导致的土壤水分减少是白刺沙堆退化的主要原因"的研究假设。但是,由于缺少长期的野外观测试验,这个假设一直未被很好地证明。为了证明这个假设,在甘肃民勤的绿洲外围选择了雏形、发育、稳定和死亡四个退化阶段的白刺沙堆,于2008年1月至2012年6月利用中子水分仪和土壤烘干称重法对土壤水分进行了长期观测。结果表明:各样地的土壤含水量均呈现出2008年最大,2009年和2011年次之,2010年最小的趋势。年内变化是春季土壤含水量最低,夏季逐渐增加,随后逐渐减小。在不同发育阶段,雏形阶段的土壤含水量最大,且降水容易下渗。稳定和死亡阶段的白刺沙堆土壤含水量很低,降水难以下渗,只有大的降水事件发生时,水分才可以下渗。因此,稳定和死亡阶段白刺沙堆的土壤水分经常在植物的凋萎点之下,是造成白刺沙堆退化重要原因。证明了"土壤水分减少是白刺沙堆退化的原因"的研究假设。研究结果对今后的植物固沙实践活动会有积极的参考意义。  相似文献   

11.
Vegetation patterns are strongly influenced by sand mobility in desert ecosystems. However, little is known about the spatial patterns of Artemisia ordosica, a dominant shrub in the Mu Us desert of Northwest China, in relation to sand fixation. The aim of this study was to investigate and contrast the effects of sand dune stabilization on the population and spatial distribution of this desert shrub. Spatial autocorrelation, semi-variance analysis, and point-pattern analysis were used jointly in this study to investigate the spatial patterns of A. ordosica populations on dunes in Yanchi County of Ningxia, China. The results showed that the spatial autocorrelation and spatial heterogeneity declined gradually, and the distance between the clustered individuals shortened following sand dune fixation. Seedlings were more aggregated than adults in all stage of dune stabilization, and both were more aggregated on shifting sand dunes separately. Spatial associations of the seedlings with the adults were mostly positive at distances of 0–5 m in shifting sand dunes, and the spatial association changed from positive to neutral in semi-fixed sand dunes. The seedlings were spaced in an almost random pattern around the adults, and their distances from the adults did not seem to affect their locations in semi-fixed sand dunes. Furthermore, spatial associations of the seedlings with the adults were negative in the fixed sand dune. These findings demonstrate that sand stabilization is an important factor affecting the spatial patterns of A. ordosica populations in the Mu Us desert. These findings suggest that, strong association between individuals may be the mechanism to explain the spatial pattern formation at preliminary stage of dune fixation. Sand dune stabilization can change the spatial pattern of shrub population by weakening the spatial association between native shrub individuals, which may affect the development direction of desert shrubs.  相似文献   

12.
绿洲-荒漠交错带环境特征初步研究   总被引:20,自引:0,他引:20  
以甘肃省石羊河下游的民勤绿洲为例,对其绿洲外围与荒漠交错地带的植被和植被关系密切的灌丛沙包特征进行了系统研究,结果表明,由于生态交错带边缘效应的存在,植被盖度的变化呈现绿洲附近与交错带外围靠近流沙的地方较低,而位于流沙和绿洲之间的部分相应较高,植被盖度较高的部位主要集中于自流动沙丘至绿洲外600m处,而非紧靠近绿洲、这与地下水自沙漠向绿洲方向运移有关,在绿洲外缘300~600m的范围内植被盖度出现下降,原因可能与绿洲荒漠交错带界外区的形成有关,说明研究区绿洲0~600m范围即是该区域绿洲界外区的存在区域,灌丛沙包上的裸沙率以绿洲界外区为最大,大量沙包裸露,可致沙子的活动性增强,因此该地带是对绿洲土地造成沙质荒漠化的最大流沙来源。  相似文献   

13.
黑河流域中游地区荒漠-绿洲景观区啮齿动物群落结构   总被引:2,自引:0,他引:2  
2005年4–5月和9月对黑河流域中游地区荒漠-绿洲景观区不同生境中啮齿动物群落结构进行了研究。在甘肃省张掖市高台县黑泉乡选择流动沙丘、含砾沙漠、固定沙地、荒漠灌丛、防护林带、灌耕草地、灌耕农田和河岸草地等8种代表性生境,采用活捕法(4,800铗日)共捕获啮齿动物254只,隶属于3科8属9种。利用捕获记录计算了群落结构特征指数,进一步利用Pearson相关系数考察了不同生境啮齿动物群落的相似性,并在此基础上对不同生境的啮齿动物群落作了聚类分析。群落结构特征指数表明,啮齿动物物种多样性(用Shannon-Wiener指数测度)在灌耕草地中最低(0.6859),在固定沙地中最高(1.7036);物种均匀度(用Pielou均匀度指数测度)在流动沙丘中最低(0.6531),在河岸草地中最高(1.0000)。聚类分析结果显示,研究区啮齿动物群落可以分成荒漠型群落和绿洲型群落两大类。三趾跳鼠(Dipussagitta)在荒漠型生境中密度较高,总体上具有优势地位,尤其是在流动沙丘生境中占据绝对优势;黑线仓鼠(Cricetulusbarabensis)在植被较好的绿洲型生境中占据优势地位,但在流动沙丘外的其他荒漠型生境中也有发现。除五趾跳鼠(Allactagasibirica)外,其他种类的跳鼠只在荒漠型生境中发现。本次调查没有在防护林内部生境中捕获啮齿动物,但在林缘区域仍有捕获记录。啮齿动物群落物种多样性指数与捕获率间无显著关联(r=0.240,P=0.566)。本研究提示人为干扰可能对维持研究区域的啮齿动物多样性有积极意义。  相似文献   

14.
The rain-fed sand-binding vegetation which stabilizes the migrating desert dunes in the Shapotou area at the southeastern edge of the Tengger Desert was initiated in 1956. The shrubs initially employed were predominantly Caragana korshinskii, Hedysarum scoparium, and Artemisia ordosica, and a desert shrub ecosystem with a dwarf shrub and microbiotic soil crust cover on the stabilized sand dunes has since developed. Since 1956 the success of this effort has not only ensured the smooth operation of the Baotou–Lanzhou railway in the sand dune area but has also played an important role in the restoration of the local eco-environment; therefore, it is viewed as a successful model for desertification control and ecological restoration along the transport infrastructure in the arid desert region of China. Some of the effects of recovery from desertification and ecological restoration on soil properties are shown by the increase in the distribution of fine soil particles, organic matter, and nutrients. The physical surface structure of the stabilized sand dunes, and inorganic soil crusts formed by atmospheric dust, have also led to the gradual formation of microbiotic soil crusts. Sand dune stabilization is associated with: (1) decreased soil particle size, (2) increased total N, (3) increased thickness of microbiotic crusts, (4) increased thickness of subsoil, and (5) an increase in volumetric soil moisture in the near-surface environment. After 17 years of dune stabilization, both the number of shrubs and community biomass decreased. The number of microbes, plant species and vegetation cover, all attained a maximum after the dunes had stabilized for 40 years. There is a significant positive correlation between the fractal dimension of soil particle size distribution (PSD) and the clay content of the shallow soil profile in the desert shrub ecosystem; the longer the period of dune stabilization, the greater the soil clay content in the shallow soil profiles (0–3 cm), and the greater the fractal dimension of soil PSD. This reflects the fact that during the revegetation processes, the soil structure is better developed, especially in the upper profile. Hence, the migrating sand dune becomes more stabilized. Therefore, the fractal model can be used to describe the texture and fertility of the soil, and, along with the degree of stability of the previously migrating sand dunes, can be used as an integrated quantitative index to evaluate the revegetation practice in the sand dune areas and their stabilization.  相似文献   

15.
In the semi-arid Kerqin Sandy Land of north China, land desertification and frequent sand storms in the spring strongly affect the growth of grassland vegetation and crops, and give rise to large reductions in yield as a result of wind erosion and sand dune movement. To bring desertification under control and reduce its influence on grassland and farmlands, many measures have been developed and implemented for stabilizing mobile sand dunes and restoring desertified grasslands. This study was conducted from 1996 to 2003 to evaluate the effectiveness of desert land restoration after implementation of sand-fixing measures. The results showed that construction of straw checkerboards and planting of shrub seedlings significantly enhances topsoil development on the dune surface, increasing silt and clay content and facilitating accumulation of soil carbon and total N, as well as accelerating an increase in plant diversity, vegetation cover and plant density. These findings suggest that using straw checkerboards and planting shrubs are successful methods for mobile sand dune stabilization and desertified grassland restoration in semiarid regions. The mechanism creating these changes is a reduction in wind erosion and improvement of the soil environment for plants. In addition, our results showed that construction of straw checkerboards was slightly more effective in vegetation and soil restoration in comparison with planting shrub seedlings, especially at the primary stage.  相似文献   

16.
不同水分下准噶尔无叶豆分株种群特征和生物量分配差异   总被引:1,自引:0,他引:1  
王建成  施翔  张道远  尹林克 《生态学报》2009,29(12):6475-6481
准噶尔无叶豆是豆科无叶豆属小半灌木,在中国仅片断化分布于新疆古尔班通古特沙漠局部区域.该种自然种群种子萌发率极低(<3%),主要靠克隆繁殖维持种群.为研究克隆生长在异质性生境中的可塑性特征及其生态适应意义,对生境土壤含水量存在差异的两个准噶尔无叶豆自然种群(河边种群,沙漠种群)的分株种群特征、生物量及其分配比重进行了比较,研究发现:①在分株种群特征上,河边种群的分株显著高于沙漠种群,分株间距也显著大于沙漠种群.沙漠种群分株密度和根的密度显著大于河边种群,但每一分株拥有根的概率显著小于河边种群;②在生物量分配方面,河边种群具有比沙漠种群大的根生物量,但根茎生物量则要显著的小于沙漠种群;③在植株各部分生物量比重随植株大小的变化趋势上,河边种群各部分的比重随植株大小变化的趋势平缓,而沙漠种群各部分的比重变化趋势则较为急剧,表明河边准噶尔无叶豆分株种群随着植株的大小变化,资源分配比例并没有发生很明显的变化,而沙漠种群变化较大.结果表明,准噶尔无叶豆种群对所处生境水分条件存在可塑性响应,并通过分株种群特征变化和生物量分配差异应对水分条件的变化,形成自身的适应对策.  相似文献   

17.
荒漠绿洲边缘区泡泡刺种群对风沙干扰的响应   总被引:10,自引:2,他引:8  
李秋艳  赵文智  李启森  常学礼 《生态学报》2004,24(11):2484-2491
研究了位于黑河中游荒漠绿洲外缘 (荒漠与绿洲过渡带 )戈壁与沙漠两种生境下泡泡刺种群对风沙干扰的响应。结果表明 ,因风沙干扰的响应 ,泡泡刺种群以斑块状格局形式存在 ;独立灌丛沙堆的形成途径主要有 4种 :种子发育、根蘖繁殖、较大的沙堆退化 (生境破碎化 )和邻近沙堆的兼并。水分条件是泡泡刺种群生长的重要制约因素 ,长期对有限的水分资源竞争 ,使其大小和空间分布都形成了明显的特征。绿洲与戈壁交错带 (类似戈壁生境 )样地的泡泡刺种群的沙埋深度、种群高度、种群盖度、种群大小、生物量都小于绿洲与沙漠交错带 (类似沙漠生境 )样地的泡泡刺种群的相应的种群特征变量 ,而绿洲与戈壁交错带样地的泡泡刺种群密度却大于绿洲与沙漠交错带样地的相应的种群特征变量。绿洲与戈壁交错带样地的泡泡刺种群密度为33.3株 / m2 ,而绿洲与沙漠交错带样地的泡泡刺种群密度为 2 5 .4株 / m2 。两样地泡泡刺种群的沙埋深度、种群高度、盖度、密度及大小存在着显著差异 ,只有生物量无显著差异。两样地中泡泡刺的沙埋深度对泡泡刺种群特征的影响明显 ,无论戈壁还是沙漠生境 ,沙埋深度与种群高度、种群大小、种群生物量明显正相关。适度沙埋可以促进泡泡刺种群的生长 ,但当沙埋深度超过10 0 cm时 ,又会对泡泡刺种群  相似文献   

18.
In a desert environment dew can serve as an important source of moisture for plants, biological crusts, insects and small animals. A measurement programme was carried out within a sand dune belt situated in the northwestern Negev desert, Israel, to measure daily amounts of dew deposition as well as micro-meteorological conditions during the dew formation and early-morning drying process. Dew quantities were measured by micro-lysimeters along a 200-m transect as well as by the eddy-correlation technique at a reference location. A simple physical model was constructed to simulate the dew deposition process as well as early-morning drying for the interdune area and the north- and south-facing dune slopes. Measurements carried out during September and October 1997 showed that the daily amounts of dew ranged between 0.1 mm/night and 0.3 mm/night within the interdune area. On the slopes, the amounts of dew were about 50% lower. Simulated results agreed well with the field data. Received: 7 June 1999 / Revised: 9 November 1999 / Accepted: 17 November 1999  相似文献   

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