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1.
黄土丘陵沟壑区生物土壤结皮理化性质   总被引:2,自引:2,他引:2  
为了解黄土丘陵沟壑区生物结皮发育过程中理化性质的变化,分析了不同盖度水平结皮的机械组成、养分、化学元素以及土壤因子与生物结皮盖度的相关性和结皮发育过程中土壤因子之间的相互作用。结果表明:随着结皮的发育,土壤有机质、全氮、全钾、速效氮、速效磷、速效钾含量均呈增长趋势,pH值则相反;土壤细砂粒含量(0.25~0.05 mm)减少,粗粉粒(0.05~0.01 mm)含量增加;土壤中的化学元素含量也呈增加趋势。土壤有机质、全氮、全磷、pH值、细砂粒、粗粉粒、Ca,Mg,Na和Fe含量与生物结皮的形成发育密切相关(P0.01)。此外,各土壤因子之间存在着相关关系,特别是粗粉粒含量和pH值,与其他因子有显著的相关性。  相似文献   

2.
生物结皮富集营养元素和重金属元素的空间分异特性   总被引:1,自引:0,他引:1  
通过测定库布齐沙漠腹地达拉特旗火力发电厂附近沙地中不同年代人工结皮和下层土壤中重金属和营养元素的含量,旨在研究生物结皮富集重金属和营养元素的能力,富集结果及空间差异性。通过单因素方差分析(ANOVA)和比较,得出以下结论:在水平格局,结皮中的重金属和营养元素含量表现为:Cr>Pb>Cu>Cd和C>K>N>P的顺序关系,相同发育年代结皮中的重金属和营养元素含量均表现为:藓结皮>藻结皮>物理结皮;不同发育年代结皮中各种重金属和营养元素含量均表现为随着发育时间的增加而增加;在垂直格局,各类型结皮中重金属和营养元素含量均表现为随着土壤垂直深度增加而降低。  相似文献   

3.
黄土地与沙地生物结皮的发育特征及其生态功能异同   总被引:1,自引:0,他引:1  
基于课题组已有研究成果,选取陕北水蚀风蚀交错区内气候条件相同但土壤质地迥异的试验区,探讨黄土地和沙地生物结皮发育特征及其生态效应的异同。结果表明:(1)苔藓结皮是2种土地生物结皮的重要类型,其中,黄土地的优势藓种为尖叶对齿藓[Didymodon constrictus(Mitt.)Saito.]、真藓(Bryum argenteum Hedw.)、狭网真藓(B.algovicum Sendt.);沙地的优势藓种为黄色真藓(B.pallescens Scheich.)、弯叶真藓(B.recurvulum Mitt.)、银叶真藓(B.argenteum Hedw.)。沙地乔灌植物下生物结皮盖度(77.5%)、厚度(11.8 mm)及容重(1.9 g·cm~(-3))均高于黄土地生物结皮,而黄土地多年生草本植物下生物结皮抗剪强度(26.5 k Pa)高于沙地生物结皮,总体上,沙地生物结皮发育的更好。(2)黄土地的入渗增幅和0~200 cm剖面的平均土壤含水率增幅均显著高于沙地(P0.05),且在旱季和雨季其0~200 cm剖面的平均土壤含水率增幅分别比沙地高1.4%和1.9%。(3)两地生物结皮均表现出了较好的减蚀作用,其减蚀效率分别为81.0%和90.6%。  相似文献   

4.
黄土高原藓结皮覆盖土壤导水性能和水流特征   总被引:1,自引:0,他引:1  
生物结皮具有特殊的水文物理性质,为探究其对土壤水分渗透性和水流特征的影响,以黄土高原风沙土和黄绵土上3种典型地表覆盖类型(裸地、藓结皮、藓结皮-草本植物混合)为对象,采用环刀法和染色示踪法对其导水性质与水流特征进行探究。结果表明:藓结皮对2种土壤类型0~5 cm土层土壤理化性质影响较大,与裸地相比土壤容重降低了9.85%~10.00%,土壤黏粒含量增加了1.01~1.29倍,表层有机质含量提高了2.73~3.02倍;藓结皮使0~5 cm土层土壤饱和导水率降低了61.32%~88.89%,而在5~10 cm土层饱和导水率则有明显上升。另外,由于草本植物的影响,藓结皮-草本植物0~5 cm土层与藓结皮土壤相比土壤饱和导水率提高了1.32~6.43倍;黄绵土藓结皮与藓结皮-草本植物的染色面积比均高于裸地,且水分下渗深度增加了10 cm,而风沙土藓结皮与风沙土裸地的染色面积比差异不明显。综上所述,藓结皮和藓结皮-草本植物的存在改变了表层土壤水分渗透性以及水流运动特征和水分下渗深度,影响着黄土高原土壤水分保持和生态恢复。  相似文献   

5.
生物土壤结皮在增强土壤抵抗水蚀风蚀能力、改善土壤养分等方面发挥着重要作用,土壤胞外酶活性可作为土壤生化反应强度的微生物指标,对理解荒漠生态系统微生物参与的养分循环过程具有重要意义.选取黄土高原神木县六道沟小流域5个生物结皮发育阶段(裸沙地、全藻结皮、藻-藓混生结皮、藓-藻混生结皮、全藓结皮)的土壤作为研究对象,研究生物...  相似文献   

6.
水分入渗是土壤水分循环的重要环节。为探明毛乌素沙地生物结皮覆盖沙区水分入渗特征及其影响因素,采用双环法测定不同类型地表(裸沙、浅灰色藻类结皮、黑褐色藻类结皮和藓类结皮,依次用BS、LC、DC和MC表示)水分入渗速率及其土壤理化性质。结果表明:1与BS相比,LC、DC和MC样地初始入渗率分别减少了37.7%、59.2%和73.6%,稳定前平均入渗率分别减少了37.5%、62.2%和81.3%,稳定入渗率分别减少了13.6%、67.4%和78.9%,累计入渗量分别减少了25.8%、61.3%和78.6%。2不同类型地表达到稳定入渗所需的时间在3~8 min;相关性分析结果显示,水分入渗速率与砂粒和土壤容重呈正相关关系,与粉粒、黏粒、结皮厚度、结皮抗剪强度、结皮层容重和有机碳含量呈负相关关系。3主成分分析结果表明,黏粒、结皮抗剪强度和土壤容重是影响该地区水分入渗速率的主要因子。因此,生物结皮在沙丘表面的形成和发育过程中,通过改变土壤的理化性质,减缓了该地区水分入渗速率,增加了降水的径流流失风险。  相似文献   

7.
黄土地表生物结皮对土壤贮水性能及水分入渗特征的影响   总被引:4,自引:1,他引:4  
采用双环法对山西省偏关县3种结皮覆盖下(苔藓藻结皮、藻结皮和薄层藻结皮)土壤的贮水性能和渗透特征进行了对比研究.结果表明:不同结皮覆盖下土壤的贮水能力受结皮厚度和孔隙度状况的影响较大,0~10 cm土层饱和贮水量为502.69~525.80 t/hm2 ,滞留贮水量为169.71~198.29 t/hm2;初渗速率的变化范围为5. 19~11.10 mm/min,无结皮最高,苔藓藻结皮最低;稳渗速率变化范围为1.6 7~2.67 mm/min.采用的3种入渗模型(Kostiakov模型、Horton模型和Ph ilip模型)中Horton模型的拟合值更接近于实测值, 决定系数R2在0.98~0.99,更适用于描述本研究区具有生物结皮土壤的入渗特征.  相似文献   

8.
荒漠生物结皮研究中的几个问题   总被引:8,自引:4,他引:8  
宋阳  严平  张宏  孟祥亮 《干旱区研究》2004,21(4):439-443
生物结皮在干旱区生态系统中扮演着一个关键的角色,它可以影响干旱区土壤的结构、功能、生产力,包括土壤稳定性、土壤保水力、碳、氮的固定和土壤的肥力等。结合国内外生物结皮的研究,提出生物结皮的影响因子、生物结皮与周围植物的关系、生物结皮形态的变化与分布的异质性等几个问题并进行了讨论。  相似文献   

9.
生物结皮是流动沙地固定的显著标志,土壤酶活性和腐殖质含量变化是衡量干旱脆弱沙漠生态系统恢复程度的重要指标。以流沙为对照,选择固沙10年、20年、30年苔藓结皮样地,探究不同固沙年限苔藓结皮土壤酶活性及腐殖质组分变化特征。结果表明:与对照相比,随固沙年限增加,苔藓结皮中酶活性增加1.3~9.4倍,胡敏酸(HA)含量从0.84g/kg增加到2.47g/kg,富里酸(FA)从0.62g/kg增加到2.28g/kg,胡敏素从0.86g/kg增加到5.57g/kg。冗余分析结果显示,腐殖质组分含量在前两轴累积能够解释土壤酶活性的94.25%,土壤腐殖质组分对土壤酶活性的重要性影响排序为富里酸> HA/FA>胡敏素>胡敏酸,且富里酸、HA/FA、胡敏素与土壤酶活性呈极显著正相关关系(P<0.01)。说明富里酸、HA/FA、胡敏素是影响苔藓结皮土壤酶活性的关键因子。综上,苔藓结皮固沙年限的增加,可有效提高土壤酶活性、改善土壤腐殖质组分特征,对促进风沙土形成演变和脆弱生态系统恢复具有重要作用。  相似文献   

10.
古尔班通古特沙漠生物结皮影响下土壤水分的日变化   总被引:3,自引:0,他引:3  
对新疆古尔班通古特沙漠生物结皮影响下土壤水分的日变化特征进行了定量研究,结果表明:①无论是结皮覆盖区还是无结皮覆盖区,其土壤含水量随深度的变化均表现出明显的层次性,其中以距地表 20 cm处的土壤含水量最高.②结皮覆盖区距地表5 cm和10 cm处的土壤含水量显著高于无结皮覆盖区(LSD检验, p <0.05);而45 cm和60 cm处的土壤含水量则表现为结皮覆盖区极显著低于无结皮区(LSD检验,p<0.05),说明生物结皮具有较强的保持土壤表层水分的能力.③结皮覆盖区与无结皮覆盖区土壤水分的日变化特征明显不同于距地表5 cm处,而其他各土层的变化趋势则较为一致.无结皮覆盖区距地表5 cm处土壤水分的日变化呈先上升后下降的趋势,而结皮覆盖区的变化则恰恰相反.  相似文献   

11.
Biological soil crusts(BSCs) are bio-sedimentary associations that play crucial ecological roles in arid and semi-arid regions. In the Gurbantunggut Desert of China, more than 27% of the land surface is characterized by a predominant cover of lichen-dominated BSCs that contribute to the stability of the desert. However, little is known about the major factors that limit the spatial distribution of BSCs at a macro scale. In this study, the cover of BSCs was investigated along a precipitation gradient from the margins to the center of the Gurbantunggut Desert. Environmental variables including precipitation, soil particle size, soil p H, electrical conductivity, soil organic carbon, total salt, total nitrogen, total phosphorus and total potassium were analyzed at a macro scale to determine their association with differing assemblages of BSCs(cyanobacteria crusts, lichen crusts and moss crusts) using constrained linear ordination redundancy analysis(RDA). A model of BSCs distribution correlated with environmental variables that dominated the first two axes of the RDA was constructed to clearly demonstrate the succession stages of BSCs. The study determined that soil particle size(represented by coarse sand content) and precipitation are the most significant drivers influencing the spatial distribution of BSCs at a macro scale in the Gurbantunggut Desert. The cover of lichen and moss crusts increased with increasing precipitation, while the cover of cyanobacteria crusts decreased with increasing precipitation. The cover of lichen and moss crusts was negatively associated with coarse sand content, whereas the cover of cyanobacteria crusts was positively correlated with coarse sand content. These findings highlight the need for both the availability of soil moisture and a relatively stable of soil matrix, not only for the growth of BSCs but more importantly, for the regeneration and rehabilitation of disturbed BSC communities in arid and semi-arid lands. Thereby, this study will provide a theory basis to effectively increase soil stability in desert regions.  相似文献   

12.
As one of the most important biological factors that maintain the stability of the largest fixed and semi-fixed desert in China,the Gurbantunggut Desert,the biological soil crusts (BSCs) develop well and play critical ecological roles in the desert ecosystem. In this paper,we briefly summarize our research findings since 2002 including species composition,distribution pattern and ecological functions of BSCs in the desert. Our results indicate abundant species diversity of BSCs in the Gurbantunggut Desert in comparison to other deserts in China. At the scales of sand dune or whole desert,the distribution patterns of BSCs are location-specific. The existence of BSCs in this desert could:(1) accelerate the formation of desert soil and the weathering of minerals; (2) accumulate organic matter in surface soil through related species in soil crusts; (3) enhance the abilities of sand surface to resist wind erosion; (4) influence seed germination of vascular plants; and (5) enhance the production of dew deposition on sandy soil surface.  相似文献   

13.
Biological soil crusts(BSCs) are capable of modifying nutrient availability to favor the establishment of biogeochemical cycles. Microbial activities serve as critical roles for both carbon and nutrient transformation in BSCs. However, little is known about microbial activities and physical-chemical properties of BSCs in the Gurbantunggut Desert, Xinjiang, China. In the present research, a sampling line with 1-m wide and 20-m long was set up in each of five typical interdune areas selected randomly in the Gurbantunggut Desert. Within each sampling line, samples of bare sand sheet, algal crusts, lichen crusts and moss crusts were randomly collected at the depth of 0–2 cm. Variations of microalgal biomass, microbial biomass, enzyme activities and soil physical-chemical properties in different succession of BSCs were analyzed. The relationships between microalgal biomass, microbial biomass, enzymatic activities and soil physical-chemical properties were explored by stepwise regression. Our results indicate that microalgal biomass, microbial biomass and most of enzyme activities increased as the BSCs developed and their highest values occurred in lichen or moss crusts. Except for total K, the contents of most soil nutrients(organic C, total N, total P, available N, available P and available K) were the lowest in the bare sand sheet and significantly increased with the BSCs development, reaching their highest values in moss crusts. However, pH values significantly decreased as the BSCs developed. Significant and positive correlations were observed between chlorophyll a and microbial biomass C. Total P and N were positively associated with chlorophyll a and microbial biomass C, whereas there was a significant and negative correlation between microbial biomass and available P. The growth of cyanobacteria and microorganism contributed C and N in the soil, which offered substrates for enzyme activities thus increasing enzyme activities. Probably, improvement in enzyme activities increased soil fertility and promoted the growth of cyanobacteria, eukaryotic algae and heterotrophic microorganism, with the accelerating succession of BSCs. The present research found that microalgal-microbial biomass and enzyme activities played important roles on the contents of nutrients in the successional stages of BSCs and helped us to understand developmental mechanism in the succession of BSCs.  相似文献   

14.
吴楠  张元明  潘惠霞 《干旱区研究》2012,29(6):1032-1038
古尔班通古特沙漠地衣结皮对放牧踩踏干扰及其所引起的生境异质性具有重要的指示作用。研究表明:① 放牧踩踏干扰主要集中于结皮层(0~5 cm),随机调查的样方中,90%的样方干扰率均低于30%,生物土壤结皮(BSCs)破损尚处于较安全的范围;② 放牧踩踏干扰降低了BSCs总盖度,不同类型的结皮对践踏干扰的反应具差异性,其中,真菌-藻类共生形成的地衣结皮与干扰率呈极显著负相关(P<0.01),干扰率>30%的样方中,抗风蚀能力较强的苔藓结皮、地衣结皮盖度均显著低于未受干扰样方,地衣共生体的破坏导致真菌数量显著增加(P<0.05);③ 有机质、土壤容重等土壤理化指标均与干扰率呈负相关,干扰率>30%的样方中各指标均低于未受干扰样方。其中,土壤容重是对放牧干扰比较敏感的指标,与地衣结皮盖度亦呈极显著正相关(P<0.01),与流沙盖度呈显著负相关(P<0.05)。  相似文献   

15.
Biological soil crusts(BSCs) play an important role in surface soil hydrology. Soils dominated with moss BSCs may have higher infiltration rates than those dominated with cyanobacteria or algal BSCs. However, it is unnown whether improved infiltration in moss BSCs is accompanied by an increase in soil hydraulic conductivity or water retention capacity. We investigated this question in the Tengger Desert, where a 43-year-old revegetation program has promoted the formation of two distinct types of BSCs along topographic positions, i.e. the moss-dominated BSCs on the interdune land and windward slopes of the fixed sand dunes, and the algal-dominated BSCs on the crest and leeward slopes. Soil water retention capacity and hydraulic conductivity were measured using an indoor evaporation method and a field infiltration method. And the results were fitted to the van Genuchten–Mualem model. Unsaturated hydraulic conductivities under greater water pressure(–0.01 MPa) and water retention capacities in the entire pressure head range were higher for both crust types than for bare sand. However, saturated and unsaturated hydraulic conductivities in the near-saturation range(–0.01 MPa) showed decreasing trends from bare sand to moss crusts and to algal crusts. Our data suggested that topographic differentiation of BSCs significantly affected not only soil water retention and hydraulic conductivities, but also the overall hydrology of the fixed sand dunes at a landscape scale, as seen in the reduction and spatial variability in deep soil water storage.  相似文献   

16.
Winter snowpack is an important source of moisture that influences the development ofbiological soil crusts(BSCs)in desert ecosystems.Cyanobacteria are important photosynthetic organismsin BSCs.However,the responses of the cyanobacterial community in BSCs to snowpack,snow depth andmelting snow are still unknown.In this study,we investigated the cyanobacterial community compositionand diversity in BSCs under different snow treatments(doubled snow,ambient snow and removed snow)and three snow stages(stage 1,snowpack;stage 2,melting snow;and stage 3,melted snow)in theGurbantunggut Desert in China.In stages 1 and 2,Cyanobacteria were the dominant phylum in the bacterialcommunity in the removed snow treatment,whereas Proteobacteria and Bacteroidetes were abundant inthe bacterial communities in the ambient snow and doubled snow treatments.The relative abundances ofProteobacteria and Bacteroidetes increased with increasing snow depth.The relative abundances ofCyanobacteria and other bacterial taxa were affected mainly by soil temperature and irradiance.In stages 2and 3,the relative abundance of Cyanobacteria increased quickly due to the suitable soil moisture andirradiance conditions.Oscillatoriales,Chroococcales,Nostocales,Synechococcales and unclassifiedCyanobacteria were detected in all the snow treatments,and the most dominant taxa were Oscillatorialesand Chroococcales.Various cyanobacterial taxa showed different responses to snowpack.Soil moisture andirradiance were the two critical factors shaping the cyanobacterial community structure.The snowpackdepth and duration altered the soil surface irradiance,soil moisture and other soil properties,whichconsequently were selected for different cyanobacterial communities.Thus,local microenvironmentalfiltering(niche selection)caused by snow conditions may be a dominant process driving shifts in thecyanobacterial community in BSCs.  相似文献   

17.
Biological soil crusts (BSCs) are an important type of land cover in arid desert landscapes and play an important role in the carbon source-sink exchange within a desert system. In this study, two typical BSCs, moss crusts and algae crusts, were selected from a revegetated sandy area of the Tengger Desert in northern China, and the experiment was carried out over a 3-year period from January 2010 to November 2012. We obtained the effec- tive active wetting time to maintain the physiological activity of BSCs basing on continuous field measurements and previous laboratory studies on BSCs photosynthesis and respiration rates. And then we developed a BSCs carbon fixation model that is driven by soil moisture. The results indicated that moss crusts and algae crusts had significant effects on soil moisture and temperature dynamics by decreasing rainfall infiltration. The mean carbon fixation rates of moss and algae crusts were 0.21 and 0.13 g C/(m2.d), respectively. The annual carbon fixations of moss crusts and algae crusts were 64.9 and 38.6 g C/(m2.a), respectively, and the carbon fixation of non-rainfall water reached 11.6 g C/(m2.a) (30.2% of the total) and 8.8 g C/(m2.a) (43.6% of the total), respectively. Finally, the model was tested and verified with continuous field observations. The data of the modeled and measured CO2 fluxes matched notably well. In desert regions, the carbon fixation is higher with high-frequency rainfall even the total amount of seasonal rainfall was the same.  相似文献   

18.
高寒草甸不同类型草地土壤机械组成及肥力比较   总被引:3,自引:0,他引:3  
研究了青藏高原高寒草甸不同类型草地土壤机械组成和土壤养分变化特征,并用相关分析探讨了土壤理化特征、土壤机械组成对不同草地类型群落物种组成、生物量变化的响应。结果表明:不同草地类型土壤机械组成分布大致是矮嵩草草甸:粉粒>细砂粒>粘粒>粗砂粒;高山嵩草草甸:细砂粒>粉粒>粘粒>粗砂粒;藏嵩草沼泽化草甸:细砂粒>粉粒>粘粒>粗砂粒;金露梅灌丛:粉粒>粘粒≥细砂粒>粗砂粒。矮嵩草草甸、高山嵩草草甸为粉砂质粘壤土,藏嵩草沼泽化草甸为壤土,金露梅灌丛为壤质粘土。矮嵩草草甸、高山嵩草草甸和金露梅灌丛土壤颗粒分布相对比较均匀(除藏嵩草沼泽化草甸外),主要集中在<0.5mm的范围内,土壤粘粒含量普遍大于20%。土壤全量养分和速效养分以及土壤物理特征均影响着高寒草甸不同草地类型土壤质量和土壤结构。土壤结构和养分状况是判断高寒草甸生态系统生态功能维持的关键指标之一。  相似文献   

19.
我国干旱沙漠地区不同类型土壤结皮的理化性质研究   总被引:3,自引:1,他引:2  
本研究对我国干旱沙漠地区不同类型土壤结皮的理化性质特征进行了系统研究。研究结果表明:无论是不同地区还是同一地区不同发育程度的土壤结皮机械组成,它们的共同特征都是砂粒和粗粉粒含量相对较多,细粉粒和粘粒含量相对较少;从流沙到土壤结皮的形成过程中,粗粉粒是土壤结皮形成的关键基础。通过对同一地区不同发育程度的结皮机械组成比较说明结皮形成初期对颗粒组成有一定的要求,组成达到一定范围才能形成结皮,结皮一旦形成,随时间的增加,结皮厚度在不断增加,但质地基本不变。土壤结皮的形成过程是土壤养分和有机质不断富积的过程。各研究区的土壤结皮pH值相差不大,均在8左右,呈弱碱性;碱化度均≥5,处于碱化发育过程中。由于各地降水量和土壤母质发育的不同,不同地区以及同一地区不同发育程度的土壤结皮之间的CaCO3含量差异较大;同一地区土壤结皮的全盐量差异不大;不同地区土壤结皮的阴阳离子交换量差异较大,同一地区之间差异不大。该文对进一步研究土壤结皮的形成有一定的参考价值。  相似文献   

20.
以2009年9月乌兰布和沙区植物群落样方调查资料为基础,对其农牧交错带内不同生境的植被特征及其物种多样性进行研究。结果表明:在区域干旱气候的共同背景下,由于受人工绿洲灌溉水分水平运动影响的强度不同,导致该生态交错带内山前洪积扇、人工绿洲周边、绿洲外围植被的组成及其群落多样性差异显著,水平空间尺度上群落变异性大,构成群落...  相似文献   

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