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1.
不同植被类型对厚层黄土剖面水分含量的影响   总被引:16,自引:1,他引:15  
王志强  刘宝元  张岩 《地理学报》2008,63(7):703-713
为了研究不同植被类型土壤水分差异和土壤水分的年际变化特征, 对陕西省绥德县境 内的农地、天然草地、人工柠条林、人工侧柏林、人工油松林、人工油松侧柏混交林地0~10 m 土壤剖面的土壤水分含量进行了测定与分析。农地土壤约在3 m 以上、其他植被类型约在 2 m 以上土层的土壤含水量随年降雨量的大小存在年际变化, 且农地土壤含水量显著高于其 他植被类型, 其他植被类型间无显著性差异。0~2 m 土层农地土壤水分在不同测定年份始终在易效水以上, 但其他植被类型的土壤水分随降雨量的不同变化于难效- 无效水与易效水之间。农地3 m、其他植被类型约2 m 以下的土壤含水量无显著性年际变化。农地与天然草地 土壤含水量显著高于其他人工林植被, 但二者含水量之间无显著差异, 土壤水分都属易效水 范围。人工柠条灌木林土壤水分显著低于其他植被类型, 人工侧柏林、人工油松林和人工油 松侧柏混交林之间土壤含水量无显著性差异。人工柠条林土壤水分属于难效-无效水范围, 人工乔木林接近难效-无效水范围。  相似文献   

2.
Coastal sand dune ecosystems generally have infertile soil with low water-holding capacity and high salinity. However, many plant species have adapted to the harsh sand environment along the southeastern coast of China. Studying the microbial biomass in such an ecosystem can improve our understanding of the roles that microbes play in soil fertility and nutrient cycling. We investigated the differences in soil microbial biomass carbon (MBC) and nitrogen (MBN) contents and their seasonal dynamics in five forest types (a secondary forest and plantations of Casuarinas, Pine, Acacia, and Eucalyptus). The results indicated that the seasonal variations of soil MBC and MBN contents in all five forest stands were higher in spring and winter, but lower in summer and autumn. The MBC content was lower in the Casuarinas plantation than in the other plantations in the same soil layer. However, no significant differences were observed in MBN contents among the different forest types. The MBC and MBN concentrations were positively correlated with soil moisture, but negatively correlated with soil temperature. The MBC and MBN contents also decreased with increasing soil depth. Across all soil layers, secondary forest had the highest MBC and MBN concentrations. Our study also showed that the MBC and MBN contents were positively affected by total soil carbon (TC), pH, and litter N content, but were negatively impacted by soil bulk density and litter C content. Moreover, the MBN content was positively correlated with root N content. In summary, environmental factors and the differences in litter and fine roots, soil nutrient contents, as well as the soil physical and chemical properties caused by different tree species collectively affected the concentrations of the soil MBC and MBN.  相似文献   

3.
咸阳市三原县新庄不同植被土层含水量研究   总被引:4,自引:0,他引:4  
赵景波  牛俊杰  杜娟  黄芳 《地理科学》2008,28(2):247-252
通过测定咸阳市三原县新庄2005和2006年降雨正常年份人工林地土壤含水量得知,从地表向下土层含水量呈由高到低再到高的变化;2005年草地和玉米地土层含水量由上向下呈逐渐增高趋势,比同年12龄杨树林地和13龄中国梧桐林地平均含水量高约7%。2003年降水量达880 mm丰水年后,人工林土壤干层中水分完全恢复,人工林出现持续近4年茂盛生长期,预计2007年该区将会再次出现发育弱的土壤干层。  相似文献   

4.
The National Forest Inventory (NFI) is an important resource for estimating the national carbon balance (These data were unpublished data, and we could only obtain the data before 2008 through data search by now). Based on the data from sample plots, the literature, and NFI, as well as the relationships between volume, biomass, annual litterfall and soil respiration of different forest types, the net ecosystem production (NEP), changes in forest biomass carbon storage (△Cbiomass) and non-respiratory losses (NR) of China’s forests during 1999-2008 were estimated, and the forest soil carbon sequestration (△Csoil) was assessed according to the carbon balance principle of the forest ecosystem (△Csoil = NEP - NR - Cbiomass). The results showed that the total NEP, Cbiomass, NR and △Csoil values for China’s forests were 157.530, 48.704, 31.033 and 77.793 Tg C yr-1 respectively, and average NEP, △Cbiomass, NR, and △Csoil values were 101.247, 31.303, 19.945 and 49.999 g C m-2 yr-1 respectively. There were large spatial differences in forest soil carbon sequestration in different parts of China. The forest soil in Jiangxi, Hunan, Zhejiang, Fujian, Anhui, Shanxi, Shaanxi, Guangxi and Liaoning served as carbon sources and the carbon released was about 25.507 Tg C yr-1. The other 22 provinces served as carbon sinks and the average carbon sequestration by forest soil came to 103.300 Tg C yr-1. This research established a method for evaluating soil carbon sequestration by China’s forests based on the NFI, which is a useful supplement to current statistical data-based studies on the forest ecosystem carbon cycle, and can promote comparable studies on forest soil carbon sequestration with consistent research methods at the regional scale.  相似文献   

5.
为了研究古尔班通古特沙漠荒漠-绿洲过渡带区域龟裂土立地条件下免灌人工梭梭林生态特征,探讨林分的最佳建植密度,对莫索湾1983—2021年38 a集水造林地初始种植梭梭、梭梭自然更新苗及不同坡位的土壤水分进行了调查,研究了梭梭生长对密度差异的响应,同时分析了各林地土壤水分的变化特征,探讨了梭梭生长与土壤水分的关系,以期为人工梭梭林的营建与可持续性提供科学依据。结果表明:(1) 当梭梭造林密度为6 m×3.5 m时(480 株·hm-2),母树存活率最高。随造林密度增大,母树保存率与梭梭自然更新比逐渐下降;母树保留密度越大的林地,其长势越差、生物量越低;盖度、郁闭度越高的林地,阻碍浅层土壤水分的补给,导致梭梭更新苗长势及生物量越差。(2) 梭梭母树的林木生长与其根部140~280 cm深度土壤含水量之间均呈显著负相关(P<0.05),且主要利用根部140~240 cm土壤水分,对比3个林地可知该层土壤水分含量越高的林地,其母树的长势越好、生物量越高。(3) 当母树保留密度为360株·hm-2(株行距4 m×7 m)时,梭梭长势较好、整体生物量最高,林下植被更为丰富,林地土壤水分条件相对较好。综上所述,在该地区进行集水造林时,保持该密度更有利于免灌人工梭梭林结构稳定、持续发挥防风固沙效益。  相似文献   

6.
蓝田、长安人工林地土层含水量研究   总被引:6,自引:1,他引:5  
根据蓝田孟村杨树林和梧桐林、长安县韦曲镇南杨树林地与西安市南郊麦地土壤含水量的测定,研究了0~600cm土壤含水量的变化和土壤干层特点与分布。实验表明,蓝田、长安地区在正常降雨年份人工林地土壤含水量从地表向地下呈现由高到低再到高的变化:12龄杨树林、14龄梧桐林、13龄和10龄杨树林地180~360cm深度范围内土壤含水量平均为9.5%、9.3%、9.0和9.2%,发育了明显的土壤干层:麦地土层含水量较梧桐林和杨树林地明显高,无土壤干化的显示;在丰水年蓝田、长安地区人工林土层含水量与正常降雨年份林地土壤含水量显著不同,12龄杨树林、14龄梧桐林、13龄和10龄杨树林地180~360cm深度范围内土壤含水量平均为22.5%、23.2%、22.5%和22.4%,土壤干层消失。这表明在降水量增加的条件下,土壤干层中的水分完全有可能恢复。土壤干层的发育会影响植物的正常生长,植被类型,植树造林和生态环境恢复,因此土壤干层水分恢复有重要意义。  相似文献   

7.
土壤呼吸不仅是反映土壤生物活性的重要指标,也是全球碳循环研究中备受关注的热点问题。在地处典型干旱区的石羊河下游,以流动沙丘和去除土壤结皮人工梭梭林为对照,采用LI-8100土壤碳通量监测系统研究了栽植约40 a、30 a、10 a和5 a的人工梭梭林生长季和非生长季的土壤呼吸日变化,并分析了土壤水分和温度对土壤呼吸的影响。结果表明:(1)不同林龄梭梭林生长季和非生长季土壤呼吸速率的日变化均为明显的单峰曲线,且呈现出一定的波动性,日最大排放速率出现在12:00~14:00时,最小值出现在8:00时左右。(2)梭梭林营造和去结皮处理显著提高了沙漠土壤呼吸速率,而且不同林龄土壤呼吸速率大体上随着种植年限的增加而递增,表现为MC >40 a>30 a>10 a>MS >5 a,非生长季表现为MC >40 a>10 a>5 a>30 a>MS。(3)不同林龄梭梭林土壤呼吸速率均具有明显的季节变化特征,生长季(8 月)的土壤呼吸作用明显强于非生长季(1月)。(4)相关性分析表明,生长季和非生长季土壤呼吸均与0~5 cm土壤水分显著相关,且均呈二次曲线关系,分别为Y =-0.205 8X 2+0.946 5X-0.316 6(R 2 =0.506 2,P= 0.041 7)和Y= 0.118 7 X 2+0.156 3X+0.118 8(R 2=0.675 7,P =0.001 1);但与10 cm土壤温度的相关性不显著,土壤水分是影响人工梭梭林土壤呼吸的关键因素。该研究进一步证明了人工梭梭林的营造有效改善了沙漠土壤的生物活性,提高了土壤碳通量水平,以土壤结皮破坏为基本特征的人工梭梭林退化和沙漠化必然在短期内加剧碳排放。因此,需要在沙漠地区合理营造人工林,并在造林和林业管理过程中注意保护土壤结皮,以减少CO2排放。  相似文献   

8.
陕西咸阳人工林地土壤干层研究   总被引:20,自引:4,他引:16  
赵景波  杜娟  周旗  岳应利 《地理科学》2005,25(3):322-328
根据咸阳庞西村苹果林地、梧桐林地和草地土壤含水量测定,研究了0~6m土壤含水量的变化和土壤干层特点与分布。结果显示, 咸阳人工林地从表层向下含水量呈现由高到低再到低的变化;10龄苹果林地2~4m深处土壤含水量平均为8.3%,12龄梧桐林2~4m深处土壤含水量平均为8.6%,均发育了明显的土壤干层;4龄苹果林下土层有干化显示,但无干层发育;草地土层含水量明显较苹果林地高,无土壤干化的显示。研究表明,土壤干层形成的具体原因一是降水量少决定的薄膜水带埋藏深度小,二是薄膜水的运移速度缓慢和含水量低。为保持人工林基本正常的生长和土壤水的正常运移,应避免严重的土壤干层出现。咸阳附近土壤干层的出现表明土壤干层在黄土高原广泛分布,该区的植被恢复首先应以疏林或森林草原为主,待土壤水分改善后再考虑恢复森林植被。  相似文献   

9.
土壤水分在很大程度上决定着荒漠固沙植被的生长状况和分布格局,不同植被对土壤水分的需求也不相同,研究植被根区土壤含水量的分布特征,可为合理调控固沙植被空间分布格局提供理论依据。以黑河中游荒漠绿洲过渡带上的固沙植被泡泡刺(Nitraria sphaerocarp)、沙拐枣(Calligonum mongolicum)为对象,于2014—2018年每年5月上旬(雨季前)和10月中旬(雨季后)钻取植被根区不同深度的土壤样品,研究不同植被根区垂直方向和水平方向上土壤含水量的分布特征及其变异性。结果表明:(1)土层越深,固沙植被根区土壤含水量越高;(2)除2017年外,其余年份两种固沙植被根区的土壤含水量均是雨季后大于雨季前;(3)水平方向上距离植被根区越远,土壤含水量越高;(4)两种植被根区土壤含水量的变异性在垂直方向上浅层大于深层,且垂直方向的变异性大于水平方向。  相似文献   

10.
高亮  高永  王静  罗凤敏  吕新丰 《中国沙漠》2016,36(5):1357-1364
研究了科尔沁沙地南缘土地覆盖由流动沙地向人工林地、农田及固定沙地等转变后,0~60 cm土层有机碳储量的变化。结果表明:农田土壤有机碳含量增加最明显,为流动沙地的3.97倍且相同层间差异均显著;樟子松(Pinus sylvestris var. mongolica)林地、新疆杨(Populus alba var. pyramidalis)林地、小叶锦鸡儿(Caragana microphylla)群落土壤有机碳含量较流动沙地分别增加79.78%、138.20%、73.07%,差异主要在0~20 cm土层;围封草地和中度放牧草地分别增加116.85%和133.71%,差异主要在0~40 cm土层;固定沙地比流动沙地增加49.44%,差异主要在0~20 cm土层。土地覆盖类型转变后,由于受到土壤容重的影响,土壤有机碳密度在0~20 cm土层变化较明显。8种土地覆盖类型可分为4组:CL1(农田)、CL2(新疆杨林地、围封草地、中度放牧草地)、CL3(樟子松林地、小叶锦鸡儿群落、固定沙地)和CL4(流动沙地)。另外,土壤有机碳含量和密度在土壤剖面上的分布也随着土地覆盖类型的变化而不同。  相似文献   

11.
不同植被类型的土壤水分对黄土高原的影响   总被引:9,自引:0,他引:9  
Water stored in deep loess soil is one of the most important resources regulating vegetation growth in the semi-arid area of the Loess Plateau, but planted shrub and forest often disrupt the natural water cycle and in turn influence plant growth. The purpose of this study was to examine the effects of main vegetation types on soil moisture and its inter-annual change. Soil moisture in 0–10 m depth of six vegetation types, i.e., crop, grass, planted shrub of caragana, planted forests of arborvitae, pine and the mixture of pine and arborvitae were measured in 2001, 2005 and 2006. Soil moisture in about 0–3 m of cropland and about 0–2 m of other vegetation types varied inter-annually dependent on annual precipitation, but was stable inter-annually below these depths. In 0–2 m, soil moisture of cropland was significantly greater than those of all other vegetation types, and there were no significant differences among other vegetation types. In 2–10 m, there was no significant moisture difference between cropland and grassland, but the soil moistures under both of them were significantly higher than those of planted shrub and forests. The planted shrub and forests had depleted soil moisture below 2 m to or near permanent wilting point, and there were no significant moisture differences among forest types. The soil moisture of caragana shrub was significantly lower than those of forests, but the absolute difference was very small. The results of this study implicated that the planted shrub and forests had depleted deep soil moisture to the lowest limits to which they could extract and they lived mainly on present year precipitation for transpiration.  相似文献   

12.
运用静态箱-气相色谱法对中亚热带地区米槠天然林和阿丁枫天然林土壤N2O排放速率进行了1年(2012年1月—2013年1月)原位观测,分析了土壤温度及含水量对土壤N2O排放速率的影响,并探讨土壤无机N含量变化与土壤N2O排放速率的关系。结果表明,观测期间,2种天然林均表现为大气N2O排放源,米槠天然林和阿丁枫天然林平均土壤N2O排放速率分别为7.29μg·m^-2·h^-1、7.41μg·m^-2·h^-1;米槠天然林和阿丁枫天然林土壤N2O排放速率季节变化明显,最高排放速率均出现在夏季6月,分别为16.51μg·m^-2·h^-1、18.86μg·m^-2·h^-1;2个林分N2O排放速率最低值分别出现在2012年1月和2012年9月,分别为3.04μg·m^-2·h^-1和2.17μg·m^-2·h^-1。2种天然林土壤N2O排放速率均与土壤温度无显著相关性,与土壤含水量显著正相关(P〈0.05);2种天然林土壤N2O排放速率与NH4+含量均无显著相关性,米槠天然林和阿丁枫天然土壤N2O排放速率与NO3-含量分别呈显著负相关和显著正相关(P〈0.05)。研究结果表明,土壤含水量及NO3-含量的变化对中亚热带天然林土壤N2O排放速率有着重要的影响。  相似文献   

13.
Water stored in deep loess soil is one of the most important resources regulating vegetation growth in the semi-arid area of the Loess Plateau, but planted shrub and forest often disrupt the natural water cycle and in turn influence plant growth. The purpose of this study was to examine the effects of main vegetation types on soil moisture and its inter- annual change. Soil moisture in 0–10 m depth of six vegetation types, i.e., crop, grass, planted shrub of caragana, planted forests of arborvitae, pine and the mixture of pine and arborvitae were measured in 2001, 2005 and 2006. Soil moisture in about 0–3 m of cropland and about 0–2 m of other vegetation types varied inter-annually dependent on annual precipitation, but was stable inter-annually below these depths. In 0–2 m, soil moisture of cropland was significantly greater than those of all other vegetation types, and there were no significant differences among other vegetation types. In 2–10 m, there was no significant moisture difference between cropland and grassland, but the soil moistures under both of them were significantly higher than those of planted shrub and forests. The planted shrub and forests had depleted soil moisture below 2 m to or near permanent wilting point, and there were no significant moisture differences among forest types. The soil moisture of caragana shrub was significantly lower than those of forests, but the absolute difference was very small. The results of this study implicated that the planted shrub and forests had depleted deep soil moisture to the lowest limits to which they could extract and they lived mainly on present year precipitation for transpiration.  相似文献   

14.
利用开路式土壤碳通量测量系统-LI-8100对塔里木河下游6种土地利用方式下土壤呼吸速率的日变化进行了野外定位测量,并就水热因子及土壤理化性质对土壤日呼吸速率差异的影响进行了分析。结果表明,梨园、弃耕地、棉田、人工林、草地和天然林土壤呼吸速率日变化均呈单峰曲线,土壤日呼吸速率差异显著。大气温度和土地利用方式是造成土壤日呼吸差异的主要因素,其中土地利用方式通过改变地表温度、土壤水分、电导率、pH、盐分含量及机械组成等影响土壤日呼吸速率。  相似文献   

15.
贡嘎山东坡亚高山不同林地土壤水分特性与生态环境效应   总被引:2,自引:0,他引:2  
森林土壤水分特性,包括水分的渗透与蒸发、保持与贮存等对森林生态环境都有重要意义。本文研究了长江上游贡嘎山亚高山不同森林类型土壤的水分特征及其生态环境作用,结果表明:成熟林、过熟林土壤在储水、渗透、容水、蒸发和持水特性等多数方面利于保持和改善生态环境,次生或林分单一森林类型次之,林木皆伐后最差。研究区以成熟林和过熟林为主,生态环境保护较好。尽管该区与长江上游其它地区一样同具自然地理条件差、生态环境脆弱的特征,但由于该区森林植被和环境得到了有效保护,土壤水分特性好,促进了森林生态系统的良性循环,生态环境问题得到进一步改善。  相似文献   

16.
通过对青海湖北刚察县沙流河附近厚度15 cm、20 cm、30 cm、40 cm薄土层的土壤含水量的测定,研究了此区土壤水分含量和水循环等问题.研究结果表明,沙柳河附近40 cm以上土层以粗粉砂为主.薄土层含水量从表层向下呈现出低-高-低的变化趋势,这是表层水分易于蒸发、中部蒸发较少和下部水分易于入渗流失的结果.虽然该区土壤在0.40m以上含水量较高,没有土壤干层发育,但如按1 m厚度土壤和1.5m厚度土壤计算,该区薄土层水分不足,并由中度干层和严重于层发育,±壤水分为负平衡.与厚土层相比,该区薄土层分布区土壤水分存在形式多为薄膜水,含水量较低,蓄水量少,土壤水库调节能力差,易于发生荒漠化,这样的地区应该是青海湖流域生态环境保护的重点地区.  相似文献   

17.
塔里木河下游典型绿洲滴灌防护林地土壤水盐时空动态   总被引:1,自引:0,他引:1  
刘新华  徐海量  凌红波  张鹏  戴岳  白元 《中国沙漠》2012,32(6):1604-1610
通过野外定位观测,对塔里木河下游典型绿洲防护林地灌溉周期内、不同滴灌年限以及不同质地类型土壤水盐动态进行监测分析。研究结果表明:①绿洲幼龄防护林地土壤水盐变化属于灌溉周期型;灌后土壤湿润体呈“半椭球型”分布,积盐区位于湿润峰附近;当前防护林(沙壤土)滴灌周期为10 d较为合适。②实施滴灌1 a、2 a和5 a林地(沙壤土)土壤水分亏缺量逐年增大;0~20 cm土层随滴灌年限的增大先脱盐后积盐,20~120 cm土层均表现为脱盐。③滴灌5 a后,粉黏土林地表层板结层的形成显著抑制40~60 cm土壤水分蒸发,盐分呈“表聚型”分布;细沙土林地土壤持水性差,各土层盐分呈“均匀型”分布;沙壤土林地持水性较细沙土林地略高,盐分呈“波动型”分布。  相似文献   

18.
西安高陵人工林土壤干层与含水量季节变化研究   总被引:2,自引:5,他引:2  
杜娟  赵景波 《地理科学》2007,27(1):98-103
通过野外调查和室内测定,利用烘干称重法对高陵地区丰水年前后不同人工林下0~6 m土壤含水量及土壤水分的季节变化进行研究。结果表明,2002年高陵田家村中国梧桐林和杨树林下160~400 cm范围内均已发育了土壤干层。经过2003年丰水年充沛的降水补给,2004年高陵团庄槐树林、杏树林0~6 m土层均未出现土壤干层,说明水分在丰水年得到很好恢复。丰水年后梨、杏、槐三种人工林160~400、410~600 cm层位土壤含水量均显示春季最高,夏季次之,秋季降到最低或略微上升。  相似文献   

19.
殷秀琴  薛文丽  马辰 《地理科学》2016,36(7):1106-1114
于2014年春、夏和秋季对长白山玄武岩台地原始针阔混交林、次生针阔混交林、次生落叶阔叶林及耕地土壤动物进行研究。结果表明:大型土壤动物的多样性,春季次生针阔混交林为最高,夏季和秋季原始针阔混交林为最高,耕地在3个季节均为最低;中小型土壤动物的多样性,春、秋两季原始针阔混交林为最高,夏季次生针阔混交林为最高,耕地在3个季节仍为最低。根据一维方差分析可知春、夏、秋3个季节原始针阔混交林、次生针阔混交林和次生落叶阔叶林土壤动物类群和平均密度均显著高于耕地(p<0.05);而各生境土壤动物的类群和平均密度季节变化差异不显著(p>0.05)。各生境土壤动物的多样性呈现出随土层深度的增加而降低的趋势。土壤温度、速效P、有机质和土壤湿度的变化是影响长白山玄武岩台地土壤动物多样性地理分布的主要因子。  相似文献   

20.
于2016年7~12月和2017年4月的旱、雨季期间,以金沙江干热河谷苴那小流域内的银合欢(Leucaena Benth)林地、车桑子(Dodonaea angustifolia)灌丛地和扭黄茅(Heteropogon cantortus)草地为研究对象,通过网格法和土钻法采集并测定了(0~100 cm)土层的土壤含水量,应用经典统计法和地统计学方法分析该区域不同林草植被下坡面土壤水分的动态变化特征。结果表明:(1)研究区土壤含水量总体较低,雨季显著大于旱季,旱、雨季均表现为灌丛地>草地>林地,呈中度至强度变异(0.07~0.28之间)。(2)不同林草植被下旱、雨季土壤水分具有相似的空间自相关性,自相关系数均由正向负转变,但由正向负转变的滞后距离有所不同,且雨季大于旱季,呈中等或强等空间自相关性。(3)不同林草植被下的土壤水分空间结构不同,林地、灌丛地和草地旱雨季最佳拟合模型均为球状模型;相同林草植被下各土层旱、雨季土壤水分的空间分布特征相似,但旱季的分布格局差异更显著,不同林草植被下深层土壤水分分布比表层土壤水分的分布更为复杂,土壤水分呈明显的斑块或条带状分布,含水量高值区和低值区位置不固定。总之不同林草植被类型会改变局部地段土壤水分空间分布,降雨会加强这种差异的趋势,但土壤水分仍具一定空间连续性。  相似文献   

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