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1.
放牧对古尔班通古特沙漠南部 沙垄地表性质的影响   总被引:2,自引:0,他引:2  
分别于2002 年和2005 年对古尔班通古特沙漠南部的同一条半固定沙垄, 进行了放牧前后的地表覆盖(包括植物和生物结皮)、沙面活动强度和土壤理化性质的系统监测和研究。 主要结论如下: 2002 年, 自然沙垄80%以上的地表被植物和生物结皮所覆盖, 除沙垄顶部外, 其他部位基本处于稳定状态。2005 年受放牧干扰的影响, 生物结皮破损率达到80%以上, 同期植物覆盖不及2002 年的1/5, 特别是短命植物变化最明显。2005 年输沙势只有2002 年的1/3, 但沙面活动强度是2002 年的2.6 倍, 活动区域也从垄顶部扩展至整个沙垄表面。 放牧后地表组成物中的中沙含量增加了13.9%, 而细沙和极细沙含量分别减少了7.4%和 8.0%, 沙垄各部位有机质含量在放牧后一个风季即下降了近1/2。可见, 放牧造成地表保护条件的多重损害, 使沙漠地表稳定性趋于丧失。其细粒物质及有机质的大量流失, 也将对我国温带荒漠生态系统的可持续发展产生重要影响。  相似文献   

2.
 通过研究春、夏 、秋3季古尔班通古特沙漠典型沙垄藻类物种多样性、种类组成和生物量的变化,分析了典型沙垄中藻类的时空分布特征。结果表明:①地貌部位和不同土层对物种多样性指数影响极显著(P<0.01); 在垂直层次中,藻类物种多样性指数由表及里逐渐降低。②在不同地貌部位和季节中,藻类的种类组成亦表现出一定的差异。垄间低地和背风坡球形藻类和丝状藻类丰富,迎风坡以丝状藻类占优势,垄顶藻类的种类和数量都有明显的下降。③地貌部位、垂直层次和季节对藻类生物量的影响均极显著(P<0.01)。藻类在沙漠典型沙垄的分布具有空间异质性,将影响到生物结皮的发育,使其处于不同的发育阶段,而它们在生物结皮中的地位和作用亦不同。  相似文献   

3.
古尔班通古特沙漠腹地半固定沙垄顶部风沙运动规律   总被引:7,自引:2,他引:5  
利用DETI可移动测风系统,结合多向集沙、阶梯式积沙和总体沙面活动强度观测,系统研究了古尔班通古特沙漠腹地半固定沙垄表面风沙运动规律。结果表明:沙漠腹地沙垄两坡和垄间多被植被与生物结皮覆盖,地表处于稳定状态,地表输沙主要集中于垄顶部至两坡上部。系统性天气条件下,气流以净风状态在迎风坡持续加速,至垄顶迎风侧边缘流速增至最大并开始起沙,风沙流越过垄顶后受植被阻挡和回旋涡流的双重影响,在垄顶背风侧上部急剧减速并发生沙物质沉积,此后气流速度又逐渐恢复。起沙风由沙垄两侧交替入射,不断将沙物质从垄顶一侧搬运到另一侧。流动带两侧沙面活动剧烈,流动带中部作为过沙床面,蚀积变化低于两侧。垄顶输沙量沿垂线方向呈指数分布,输沙率、各高度层输沙量以及沙物质输移高度都随着风速的增大而增大。垄顶部距地表6 cm和10 cm以内的输沙量分别占总输沙量的80%和90%。垄顶输沙势与实测输沙量之间具有良好的相关性,初步推测1VU的输沙风能在垄顶1 m的过沙宽度上可以产生25 kg的输沙。  相似文献   

4.
在不同类型的生物土壤结皮中,苔藓结皮蓄水能力、抗机械干扰和固沙的能力最强,在受损沙地的人工修复中发挥着更为重要的生态作用。通过挖掘具固氮、固沙等功能的重要菌株资源可改善苔藓结皮的土壤结构、增强苔藓植物抗旱性、提高苔藓生长。前期工作中发现集中分布于垄间低地的苔藓结皮中微生物数量远高于沙垄其它部位的结皮,但究竟是哪些特殊类群的细菌对苔藓结皮的生态功能产生影响尚不清楚。本文对苔藓结皮中数量占绝对优势的细菌多样性进行了进一步的分析,结果表明:(1)分离、纯化的25株菌可初步归为3门3纲4目6科6属,未见新属。其中,芽孢杆菌属(Bacillus)占绝对优势(52%);(2)进一步的blast同源性分析表明,25株菌可归为18个OTUs(OperationalTaxonomicUnit),未见疑似新种(同源性均97%),其中芽孢杆菌属OTU比例最高(39%);(3)将结果与前期工作中地衣结皮可培养细菌多样性进行了对比分析,发现该沙漠苔藓结皮中的可培养细菌Shannon-Wiener多样性指数为2.77,高于地衣结皮(2.55)。这与苔藓结皮具有更强的抗风蚀能力和更高的蓄水能力有关。而硅酸盐细菌在两类结皮中均存在,该类菌株将与苔藓植物协同固沙,推进生物土壤结皮的发育。  相似文献   

5.
分析了沙坡头段防护体系生物土壤结皮类型、地表紧实度和沉积物机械组成的空间分布及其对风沙环境的指示意义。结果显示,沿主风向生物土壤结皮从无发育、斑块状分布,到连续分布;类型由地衣-藻结皮为主逐渐演变为苔藓结皮与其交错分布,地表紧实度逐渐增大。表层沉积物粒径随防护距离增大逐渐变细,悬移组分含量增加,结皮层粘粒和粉砂含量较高。表明防护体系内风沙活动由强烈蚀积逐渐转变为沉积主导,风沙环境趋于稳定。结皮沉积特征随沙丘地形起伏表现出波动变化,显示沙丘地形对局地风沙环境的影响。  相似文献   

6.
古尔班通古特沙漠生物结皮的分布特征   总被引:47,自引:1,他引:47  
新疆古尔班通古特沙漠是我国最大的固定和半固定沙漠,其间广泛发育着以地衣植物为主的生物结皮,是除种子植物以外的固定沙面的重要生物因子。研究表明,选择适当的时段,应用遥感技术并结合地面调查来研究沙漠生物结皮的空间分布格局是可行的,遥感制图与地面调查的结果基本一致。该沙漠南部是生物结皮最为丰富的区域,各种类型的生物结皮均有充分发育,呈连续分布,但其分布模式向北、向西和向东变得破碎。通过统计生物结皮像元的面积,得到生物结皮覆盖率超过33%的像元面积占研究区总面积的28.7%。生物结皮的分布对地貌部位有较强的选择性,生物结皮的不同发育阶段种类组成亦有较大的差别。  相似文献   

7.
古尔班通古特沙漠表层土壤凝结水水汽来源特征分析   总被引:2,自引:0,他引:2  
陈荣毅 《中国沙漠》2012,32(4):985-989
水分条件是决定干旱沙漠区生态环境的关键因素,凝结水是干旱区植物和低等生物的重要水分来源。利用自制蒸渗计在春、夏、秋3个季节对古尔班通古特沙漠苔藓、地衣、藻类及流沙4种地表类型表层原状土壤凝结水形成进行了观测研究。结果表明,在2 cm、5 cm、10 cm、20 cm 4种高度原状土中,用纱网封底土壤表层2 cm和5 cm土壤的凝结水测定结果能够真实的代表古尔班通古特沙漠不同类型地表土壤凝结水形成特征;凝结水主要集中产生在土壤表层2 cm范围内;凝结水的水汽来源于空气和土壤且以空气来源为主,春季由于表层土壤含水率较高,来自于土壤的水汽所占的比重较高,地衣0~2 cm表层凝结水来源于土壤水汽补充的比例春季为35.5%,夏季和秋季分别降到15.5%和11.3%;秋季55 d的观测结果表明,凝结水形成总量随流沙、藻类、地衣和苔藓依次增加,分别为3.46 mm、4.07 mm、4.89 mm和5.15 mm,说明在干旱的沙漠地带,凝结水是除降水以外补充表层土壤水分最重要的水分来源。  相似文献   

8.
黄磊  张志山  胡宜刚  张鹏  赵洋 《中国沙漠》2012,32(6):1583-1589
对固沙植被区典型分布的藻类结皮、藓类结皮和流沙下不同深度的土壤气体采样,主要研究和讨论了不同类型生物土壤结皮下土壤CO2浓度的变化特征,及土壤温度和土壤水分对它的影响。结果表明,藻类结皮和藓类结皮在0~40 cm处的土壤空气CO2浓度平均值基本保持在600~1 100 μmol·mol-1之间,大于同一深度流沙下土壤CO2浓度值,但三者之间的差异并不显著。土壤温度与土壤CO2浓度呈正相关关系,且在表层相关性最强,具体表现为流沙>藓类结皮>藻类结皮。土壤水分对土壤CO2浓度的影响在表层0~5 cm为流沙>藻类结皮>藓类结皮,但在下层10~40 cm处为藻类结皮>藓类结皮>流沙。  相似文献   

9.
古尔班通古特沙漠南部风沙土粒度分布的空间异质性   总被引:10,自引:4,他引:6  
系统采集古尔班通古特沙漠南部典型地段纵向沙垄和垄间地浅层风沙土(0~30 cm)样184件,运用常规粒度分析和地统计分析方法研究了古尔班通古特沙漠南部沙垄不同部位风沙土粒度组成、分布特征及空间变异。结果显示:风沙土机械组成的优势粒级是细沙和极细沙,不同地貌部位粒级组成差异明显。粘土和粉沙的含量为垄间地高于沙垄,背风坡高于迎风坡和垄顶。极细沙和细沙的含量是迎风坡最高,垄顶最低。中沙、粗沙和极粗沙的含量则是垄间地低于沙垄,垄顶最高。风沙土粗物质粒径φ1和平均粒径Mz从垄间地→背风坡→迎风坡→垄顶均由细变粗,分选系数σ则由差变好。同时,φ1、Mz和σ具有中等-强空间自相关性,其空间相关范围(变程)大小顺序为φ1<σ相似文献   

10.
吴林  张元明 《中国沙漠》2013,33(6):1810-1815
生物土壤结皮(BSC)是由藻类、地衣、苔藓和土壤中微生物形成的一类有机复合体,是干旱荒漠地区主要的地表覆被类型。由于藻、地衣和苔藓呈非连续性斑块状分布,准确估算它们的盖度比较困难。传统的估算方法主要是样方法和遥感影像法,样方法在野外操作中虽然比较精确但是费时,遥感影像法虽然快速但是误差大。本文试图通过数码照相法获取BSC地表分布信息,然后利用最大似然监督分类法对苔藓结皮、地衣结皮和藻结皮盖度进行分类计算,并用野外原位调查进行验证。结果表明,本文采用的照相法与传统样方法的相关性达到了94.45%,照相法可以有效地用于BSC盖度的估算,提高了盖度估算的效率。  相似文献   

11.
放牧对古尔班通古特沙漠南部半固定沙垄地表性质的影响   总被引:1,自引:0,他引:1  
Intensive grazing in spring-summer has been responsible for environmental deg- radation of the Gurbantunggut Desert in recent years. The coverage of plants and biological crusts, sand surface stability and physicochemical characteristics of soil on the dune surface were conducted in 2002 (winter grazing) and 2005 (spring-summer grazing). The results showed that over 80% of the total area of the dune surface was covered by well-developed biological crusts and plants in 2002, when the interdune and middle to lower part of dune slopes were stabilized and only the crest had 10-40 m wide mobile belt. Affected by spring-summer grazing in 2005, over 80% of the total cover of biological crust was destructed and the plant coverage only reached 1/5 of that in 2002, especially the ephemeral plant cover had a great change. The value of sand transport potential in 2005 only reached 1/3 of that in 2002, but the total surface activity in 2005 was 1.6 times stronger than that in 2002. Mean- while the mobile area began to expand from the dune top to the whole dune surface following spring-summer grazing. Compared with 2002, medium sand content of the dune surface soil increased by 13.9%, while that of fine and very fine sands decreased by 7.4% and 8.0% re- spectively in 2005 and the soil organic matter in 2005 was only about 1/2 of that in 2002. It is obvious that the presence of snow cover and frozen soil in winter could avoid the surface structure destruction in winter, while spring--summer grazing made excessive damage to biologic crusts and ephemeral plants. Spring is the main windy season in Gurbantunggut Desert and therefore intensive activity of dune surface occurred following spring-summer grazing, which led to a great loss of fine sand and organic matter. It can be seen that grazing season have a significant influence on the sustainable development of the desert ecosystem in Northwest China.  相似文献   

12.
Intensive grazing in spring–summer has been responsible for environmental degradation of the Gurbantunggut Desert in recent years. The coverage of plants and biological crusts, sand surface stability and physicochemical characteristics of soil on the dune surface were conducted in 2002 (winter grazing) and 2005 (spring–summer grazing). The results showed that over 80% of the total area of the dune surface was covered by well-developed biological crusts and plants in 2002, when the interdune and middle to lower part of dune slopes were stabilized and only the crest had 10–40 m wide mobile belt. Affected by spring–summer grazing in 2005, over 80% of the total cover of biological crust was destructed and the plant coverage only reached 1/5 of that in 2002, especially the ephemeral plant cover had a great change. The value of sand transport potential in 2005 only reached 1/3 of that in 2002, but the total surface activity in 2005 was 1.6 times stronger than that in 2002. Meanwhile the mobile area began to expand from the dune top to the whole dune surface following spring–summer grazing. Compared with 2002, medium sand content of the dune surface soil increased by 13.9%, while that of fine and very fine sands decreased by 7.4% and 8.0% respectively in 2005 and the soil organic matter in 2005 was only about 1/2 of that in 2002. It is obvious that the presence of snow cover and frozen soil in winter could avoid the surface structure destruction in winter, while spring–summer grazing made excessive damage to biologic crusts and ephemeral plants. Spring is the main windy season in Gurbantunggut Desert and therefore intensive activity of dune surface occurred following spring–summer grazing, which led to a great loss of fine sand and organic matter. It can be seen that grazing season have a significant influence on the sustainable development of the desert ecosystem in Northwest China.  相似文献   

13.
Intensive grazing in spring–summer has been responsible for environmental degradation of the Gurbantunggut Desert in recent years. The coverage of plants and biological crusts, sand surface stability and physicochemical characteristics of soil on the dune surface were conducted in 2002 (winter grazing) and 2005 (spring–summer grazing). The results showed that over 80% of the total area of the dune surface was covered by well-developed biological crusts and plants in 2002, when the interdune and middle to lower part of dune slopes were stabilized and only the crest had 10–40 m wide mobile belt. Affected by spring–summer grazing in 2005, over 80% of the total cover of biological crust was destructed and the plant coverage only reached 1/5 of that in 2002, especially the ephemeral plant cover had a great change. The value of sand transport potential in 2005 only reached 1/3 of that in 2002, but the total surface activity in 2005 was 1.6 times stronger than that in 2002. Meanwhile the mobile area began to expand from the dune top to the whole dune surface following spring–summer grazing. Compared with 2002, medium sand content of the dune surface soil increased by 13.9%, while that of fine and very fine sands decreased by 7.4% and 8.0% respectively in 2005 and the soil organic matter in 2005 was only about 1/2 of that in 2002. It is obvious that the presence of snow cover and frozen soil in winter could avoid the surface structure destruction in winter, while spring–summer grazing made excessive damage to biologic crusts and ephemeral plants. Spring is the main windy season in Gurbantunggut Desert and therefore intensive activity of dune surface occurred following spring–summer grazing, which led to a great loss of fine sand and organic matter. It can be seen that grazing season have a significant influence on the sustainable development of the desert ecosystem in Northwest China. Foundation: National Basic Research Program of China, No.2009CB421303; National Natural Science Foundation of China, No.40771032; National Science Supporting Program, No.2007BAC17B03 Author: Wang Xueqin (1964–), Ph.D and Associate Professor, specialized in aeolian sand geomorphology, desertification and its control.  相似文献   

14.
石薇  王新平  张亚峰 《中国沙漠》2018,38(3):600-609
选择腾格里沙漠东南缘人工植被区3种典型的地表覆被类型(藓类结皮、藻类结皮和流沙)土壤为对象,选取发生在7月和9月的两次降水事件,研究浅层土壤(3、5、10 cm)水分入渗与再分布过程。结果表明:浅表层3 cm深度土壤水分在降雨初期均表现为跳跃式增加,而在降雨中后期由于土壤剖面不同深度水势梯度减小,降水入渗速率降低,土壤水分仅呈现小幅波动。在两次降水事件中,藓类结皮和藻类结皮对降水入渗的阻碍作用比较显著,入渗速率表现为沙土 > 藻类结皮 > 藓类结皮;从水分再分布看,生物土壤结皮的存在致使水分再分配过程表现出明显的浅层化;降水过程结束后,结皮促进水分的蒸发损失,从而减少植被可利用水分含量。人工固沙植被区广泛发育的生物土壤结皮对降水入渗与再分布过程以及土壤水量平衡具有重要影响。  相似文献   

15.
准噶尔盆地古尔班通古特沙漠生物结皮蓝藻研究   总被引:14,自引:0,他引:14  
通过对古尔班通古特沙漠中9个样地73份生物土壤结皮蓝藻的研究,分析该沙漠生物结皮中蓝藻的区系组成、生态分布特点和蓝藻在生物结皮中的作用机制。研究表明,该沙漠中有蓝藻门植物6科25属77种,其中以丝状种类占优势;蓝藻在不同地貌部位分布略有差异,在丘间低地种类最为丰富;不同种类的蓝藻对地貌部位的选择性不同,大部分对地貌部位具有选择性;蓝藻种类和数量在结皮层较多,在结皮下层明显减少。生物结皮的显微观察揭示了丝状蓝藻和胞外多糖形成错综复杂的网状结构,起着捆绑、黏结沙粒和固定沙粒的作用。  相似文献   

16.
生物土壤结皮对库布齐沙漠北缘土壤粒度特征的影响   总被引:2,自引:1,他引:1  
对库布齐沙漠北缘不同发育阶段的生物土壤结皮及其下层土壤粒度特征进行分析。结果表明:流动沙地和藻类结皮表层均以细砂和中砂成分为主,藓类结皮表层以细砂和极细砂为主。生物土壤结皮表层的中粉砂至黏土、粗粉砂和极细砂含量均高于其下层土壤。两种结皮样地均属于分选性较差等级,但结皮下层土壤分选性中等,3类曲线均不对称,属于正偏-极正偏等级,藓类结皮和藻类结皮表层的峰形均属于中等尖锐水平,而流动沙地的曲线尖窄。生物土壤结皮的成土作用随着结皮的发育阶段和土层深度的增加而表现出差异性和复杂性。  相似文献   

17.
微生物量碳是土壤有机碳的重要组成部分,是判别退化系统生态修复的重要指标之一。为了探明生物土壤结皮对土壤微生物量碳的影响,以腾格里沙漠东南缘的人工固沙区不同生物土壤结皮覆盖的沙丘土壤为研究对象,根据固沙年限的不同将样地分为4个不同的区进行采样(1956、1964、1981年和1987年固沙区),并以流沙区为对照。与流沙区相比较,54龄、46龄、29龄和23龄固沙区的真藓结皮和藻结皮的存在均可显著提高其下土壤微生物量碳(P<0.05),且固沙年限与结皮下土壤微生物量碳存在正相关关系;真藓结皮和藻结皮对其下土壤微生物量碳的影响仅限于0~20 cm的土层,随着土层的加深,其影响逐渐减弱,到20~30 cm土层与对照相比已无显著差异(P>0.05)。因此,对生物土壤结皮的干扰可能会造成土壤微生物量碳的损失。  相似文献   

18.
荒漠地区地表反照率与土壤湿度相关性研究   总被引:5,自引:0,他引:5  
本试验分别对腾格里沙漠东南缘沙坡头地区流动沙丘和1964年建植的人工固沙植被区生物土壤结皮的地表反照率和土壤湿度进行了同步测定。分析了该区这两种地表类型的反照率与太阳高度角和土壤湿度的相关性,分别提出了地表反照率与太阳高度角和土壤表层(0~2 cm)湿度的经验拟合关系式。结果表明,地表反照率随太阳高度角增加呈指数递减;排除太阳高度角的影响后,地表反照率随土壤湿度的增加也呈指数递减关系;流沙地表反照率对土壤湿度变化的响应要比生物土壤结皮地表敏感。  相似文献   

19.
周立峰  杨荣  赵文智 《中国沙漠》2020,40(3):185-192
土壤结皮深刻影响绿洲边缘固沙植被区的土壤水文过程。土壤结皮斥水性是量化上述影响的潜在指标。采用滴水穿透时间(WDPT)法,研究了河西走廊荒漠边缘不同建植年限梭梭植被区固定沙丘土壤结皮斥水性的时间演变规律及影响因素。结果表明:建植20 a后,丘顶与丘间地土壤结皮出现显著斥水性(WDPT>5 s),而丘坡土壤结皮无斥水性(WDPT<5 s)。丘顶土壤结皮斥水性与总有机碳、微生物量碳、有机碳C-H组分以及电导率显著相关(P<0.01);而丘间地土壤结皮斥水性与黏、粉粒含量显著相关(P<0.01)。植被形成的“碳岛”及“盐岛”效应是丘顶土壤结皮斥水性形成的主要原因,而黏、粉粒在土壤表层的积聚是丘间地土壤结皮斥水性形成的主要原因。  相似文献   

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