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1.
[目的]研究中国特有经济作物欧李对坡面土壤性质的影响,为其在黄土丘陵沟壑区推广种植提供参考依据。[方法]布设5块立地条件不同的试验样地,在汛期前后,分别对各样地土壤相关指标进行测定,利用PSD分形模型及EPIC土壤抗侵蚀模型,定量分析欧李对坡面土壤颗粒分形维数及抗侵蚀能力的影响。[结果](1)在汛期,欧李人工林对坡面土壤黏粒具有显著的拦截作用,鱼鳞坑式欧李林可有效保护坡顶处土壤,水平阶式欧李林在坡中、坡底位置可有效拦截径流中的土壤细颗粒并富集黏粒;(2)坡面土壤分形维数与土壤砂粒含量呈显著负相关,相关系数为-0.611;与土壤黏粒含量呈显著正相关,相关关系为0.770;(3)欧李林的种植可降低研究区土壤可蚀性因子K值,提高土壤抗侵蚀能力,不同整地方式下欧李林对土壤可蚀性因子K值的影响效果总体表现为:水平阶鱼鳞坑自然坡;(4)土壤可蚀性因子K值与土壤的有机质和黏粒含量呈极显著负相关,相关系数分别为-0.957,-0.928;与土壤容重、砂粒含量和粉粒含量呈显著正相关,相关系数分别为0.704,0.667,0.512。[结论]种植欧李对黄土丘陵沟壑区控制坡耕地黏粒流失,提高土壤有机质含量,优化土壤结构,增强土壤抗蚀能力具有积极的意义。  相似文献   

2.
基于土壤分形维数及 EPIC 模型,研究紫色土区坡耕地不同土地利用方式下定植新银合欢植物篱对坡面土壤分形特征及可蚀性的影响作用.结果表明:定植植物篱能提高坡面土壤粘粒含量,对坡面小区土壤整体的可蚀性没有明显影响.土壤分形维数与砂粒、粉粒含量呈负相关,与粘粒含量呈正相关;土壤可蚀性 K 值与粉粒含量呈极显著的正相关,相关系数为0.957;与分形维数、砂粒含量、粘粒含量及有机碳含量呈负相关,相关系数分别为:-0.589,-0.668,-0.603,-0.286.  相似文献   

3.
基于土壤颗粒分形维数及EPIC模型研究定植皇竹草植物篱,对三峡库区坡耕地土壤分形特征及土壤可蚀性的影响作用。结果表明:植物篱对坡面土壤粘粒的拦截作用显著,粘粒在篱前富集含量升高;土壤分形维数与土壤砂粒含量呈负相关,与粉粒、粘粒含量呈正相关,总体上表现为:粘粒〉砂粒〉粉粒,土壤颗粒分形维数值受细颗粒含量的影响作用显著;土壤可蚀性K值与土壤砂粒含量呈极显著的正相关,相关系数为0.870;与土壤粉粒含量、粘粒含量、有机碳含量、团聚度及土壤颗粒分形维数呈负相关,相关系数分别为-0.538,-0.739,-0.603,-0.486,-0.538;有机质及粘粒含量的高低是反映库区土壤抗侵蚀能力强弱的有效指标。皇竹草植物篱带间距对三峡库区坡耕地土壤颗粒分形特征及可蚀性的影响作用总体上表现为:4.5 m带间距〉5.5 m带间距〉7.5 m带间距。库区10°坡耕地篱带间距布设在6 m以内时,植物篱对改善坡面土壤分形特征、降低坡面土壤可蚀性、控制农业面源污染的作用最显著。  相似文献   

4.
土壤液塑限可以反映土壤的入渗、抗冲、抗蚀和抗剪等情况,对崩岗的水土流失研究有重要的意义。通过对崩岗红土层土壤的液塑限研究以及颗粒分析和有机质测定,分析土壤有机质含量和土壤颗粒分布对土壤液塑限的影响。结果表明:崩岗红土层土壤为高液限黏土,土壤状态为坚硬;土壤液塑限值与粗砂粒、细砂粒和粉粒含量相关性不明显,与极细砂粒和黏粒含量呈二项式关系,其中极细砂粒含量与土壤液塑限呈负相关;黏粒含量与土壤液塑限均呈显著正相关关系,且模拟的方程可以较准确地描述土壤液塑限和各因素的相关关系。研究结果有利于丰富崩岗侵蚀机理的研究。  相似文献   

5.
武夷山山地土壤可蚀性K值的垂直分异及成因分析   总被引:2,自引:0,他引:2  
土壤可蚀性K值反映了土壤的抗蚀能力。对武夷山山地10个土壤剖面A层土壤可蚀性K值进行计算,结果表明:武夷山山地土壤以较低可蚀性为主,且呈现随海拔增高,土壤可蚀性K值逐渐递减的规律。一方面,垂直山地不同海拔有机碳的含量造成了土壤可蚀性K值的分异;另一方面,土壤可蚀性与土壤质地存在相互影响,土壤可蚀性K值与粘粒和粉粒含量均呈显著正相关,与砂粒含量呈显著负相关。  相似文献   

6.
不同母质发育的红壤电荷特性研究   总被引:1,自引:0,他引:1  
张勇  陈效民  邓建强  林洁  夏雯 《土壤》2011,43(3):481-486
研究了3种不同母质发育的红壤中电荷的差异,比较了不同母质对电荷的影响。结果表明:3种母质发育的红壤中,紫色土发育的红壤中全部负电荷含量明显高于花岗岩发育的红壤和第四纪红色黏土发育的红壤;第四纪红色黏土发育的红壤中正电荷的含量明显高于花岗岩发育的红壤和紫色土发育的红壤;第四纪红色黏土发育的红壤、花岗岩发育的红壤和紫色土发育的红壤中正电荷与pH呈显著性负相关;第四纪红色黏土发育的红壤正电荷与有机质呈显著负相关,花岗岩发育的红壤和紫色土发育的红壤中正电荷与有机质含量呈显著正相关;第四纪红色黏土发育的红壤和紫色土发育的红壤正电荷与黏粒含量呈一元二次线性关系,花岗岩发育的红壤正电荷与黏粒含量呈极显著负相关;紫色土发育的红壤吸附的NH4+-N含量最高,第四纪红色黏土发育的红壤吸附的NO3--N含量最高。通过对3种母质发育的土壤电荷特性的研究,可为不同母质的红壤进行合理施肥与管理提供科学依据。  相似文献   

7.
为构建北京市土壤可蚀性K值的空间分布特征,分析土壤可蚀性K值影响因素,基于全国土壤调查数据计算土壤可蚀性K值,在ArcGIS中进行空间插值,探讨北京市土壤可蚀性变化规律。结果表明:(1)北京市土壤K值介于0.038 7~0.056 7 t·hm2·h/(MJ·mm·hm2),其中丰台灰黄土的K值最大,粘身两合土的K值最小。全市土壤均为低可蚀性土壤,土壤抗侵蚀能力较强。(2)从空间分布看,全市的土壤可蚀性由北向南逐渐增加。北京市土壤可蚀性与水土流失空间分布差异较大。(3)冲积物形成的粘身两合土砂粒含量最高,其土壤可蚀性K值最低;冲积物形成的丰台灰黄土砂粒含量最低,其土壤可蚀性K值最高。土壤颗粒组成与土壤可蚀性呈显著相关性(P<0.01)。土壤可蚀性值呈现出旱地>林地>荒地>灌木林的特征。研究结果对北京市土壤侵蚀预报、水土流失精准防控等提供参考。  相似文献   

8.
为探究不同植物篱模式对土壤理化性质及土壤可蚀性空间上的影响,以三峡库区秭归县张家冲水土保持试验站为研究区,选取经济林地小区(H1)和农耕地小区(H3)分别为"植物篱+经济林地小区"(H2)和"植物篱+农耕地小区"(H4)对照小区,对其3个坡位(上、中、下坡)和2个土层(0—20,20—40 cm)进行土壤理化性质对比分析,探讨2种植物篱配置下对土壤理化性质和可蚀性的影响。结果表明:(1)同一小区,土壤机械组成和土壤养分含量空间分异较明显,上坡与中坡、下坡差异显著(p0.05),其中土壤机械组成以砂粒为主(59.01%~63.51%),且分布于上坡,而土壤细颗粒主要分布在中、下坡,0—40 cm土层土壤养分均表现为下坡中坡上坡,全钾含量均值较其对照小区分别高3.75%~19.61%。(2)不同小区,土壤细颗粒和土壤养分含量表现为植物篱小区高于无植物篱小区,其中土壤细颗粒占比表现为H4小区(39.94%)H2小区(38.92%)H1小区(38.34%)H3小区(37.84%);土壤可蚀性K值大小与土壤细颗粒含量呈反比,即土壤细颗粒占比越大,K值越小,越不易被侵蚀,"农耕地+植物篱"(H4)较"经济林+植物篱配置"(H2)更不易被侵蚀。(3)随着土壤有机质、黏粒、全氮和全钾含量的增加,可以有效增强土壤抗侵蚀能力。土壤可蚀性K值与粉粒、黏粒分别呈极显著正相关和负相关关系(相关系数分别为1.000,-0.708),而与砂粒、有机质、全氮和全钾均无显著相关关系(p0.05)。  相似文献   

9.
[目的]揭示三峡库区紫色土坡耕地表土可蚀性特征,为水土保持措施空间配置优化设计提供依据。[方法]以无措施坡耕地为对照,选取紫色土区埂坎、水平沟坡耕地为研究对象,采集表土测试机械组成和有机质含量,利用EPIC(environmental policy-integrated climate)模型计算可蚀性指标,比较3种坡耕地表土的颗粒组成、有机质含量和可蚀性指标。[结果]①紫色土坡耕地表土粉粒含量较高,黏粒含量较低,分别为45.78%~76.29%和6.05%~10.58%。坡面尺度内,埂坎坡耕地上地块下坡位表土粉粒含量明显高于紧邻的下地块上坡位,砂粒含量则相反。地块尺度内,上坡位砂粒含量较高,中下坡位粉粒含量和黏粒含量较高。②紫色土坡耕地表土有机质含量为0.61%~1.48%。坡面尺度内,埂坎坡耕地上地块下坡位表土有机质含量明显高于紧邻的下地块上坡位。地块尺度内,有机质主要在中下坡位富集。③紫色土坡耕地表土可蚀性K值介于0.043 8~0.059 2之间。坡面尺度内,埂坎和水平沟坡耕地下地块上坡位表土可蚀性K值分别比紧邻的上地块下坡位低16.55%和6.30%。地块尺度内,中下坡位的表土可蚀性K值较大,且最高值出现在坡面的3/4处。表土可蚀性K值与粉粒含量呈极显著正相关(p0.01),与砂粒含量呈极显著负相关(p0.01)。[结论]三峡库区紫色土坡耕地表土抗蚀能力较弱,埂坎和水平沟均具有较好的水土保持效果,对提高坡耕地抗蚀性具有一定作用。  相似文献   

10.
梁博  聂晓刚  万丹  喻武  孙启武  赵薇 《土壤学报》2018,55(6):1377-1388
探讨喜马拉雅山脉南麓典型林地土壤结构稳定性及可蚀性K值强弱与分布特征,为区域生态保护提供科学理论及数据基础。选取落叶常绿混交林、针阔混交林、常绿阔叶林三种林分,采集0~20cm土壤,测定团聚体、团聚体破坏率、颗粒组成及其有机质,以EPIC模型计算K值。结果表明:(1)不同林地土壤各理化指标具有差异,湿筛及干筛条件下团聚体以0.25 mm为主;团聚体破坏率在10.16%~24.74%间;颗粒组成以粉砂粒为主,黏粒仅占0.51%~3.02%。有机质在92.53~133.79g·kg-1间;(2)研究区土壤K值在0.1862~0.3430间,均值为0.2635,K值总体较高;(3)经相关分析,K值与黏粒、有机质含量及团聚体破坏率呈正相关,与粉粒呈极显著正相关,与砂粒呈极显著负相关,一定程度,团聚体破坏率可评价土壤可蚀性。  相似文献   

11.
Erodibility of agricultural soils on the Loess Plateau of China   总被引:6,自引:0,他引:6  
K. Zhang  S. Li  W. Peng  B. Yu   《Soil & Tillage Research》2004,76(2):157-165
Soil erodibility is thought of as the ease with which soil is detached by splash during rainfall or by surface flow. Soil erodibility is an important factor in determining the rate of soil loss. In the universal soil loss equation (USLE) and the revised universal soil loss equation (RUSLE), soil erodibility is represented by an erodibility factor (K). The K factor was defined as the mean rate of soil loss per unit rainfall erosivity index from unit runoff plots. Although high rate of soil loss from the Loess Plateau in China is well known and widely documented, it is remarkable that there is little systematic attempt to develop and validate an erodibility index for soils on the Loess Plateu for erosion prediction. Field experimental data from four sites on the Loess Plateau were analyzed to determine the K factor for USLE/RUSLE and to compare with another erodibility index based on soil loss and runoff commonly used for the region. The data set consists of event erosivity index, runoff, and soil loss for 17 runoff plots with slope ranging from 8.7 to 60.1%. Results indicate that the K factor for USLE/RULSE is more appropriate for agricultural soils on the Loess Plateau than the erodibility index developed locally. Values of the K factor for loessial soils range from 0.0096 to 0.0269 t h/(MJ mm). The spatial distribution of the K value in the study area follows a simple pattern showing high values in areas with low clay content. For the four sites investigated, the K factor was significantly related to the clay content, (K=0.031−0.0013 Cl, r2=0.75), where Cl is the clay content in percent. The measured values of the K factor are systematically lower than the nomograph-based estimates by a factor of 3.3–8.4. This implies that use of the nomograph method to estimate soil erodibility would considerably over-predict the rate of soil loss, and local relationship between soil property and the K factor is required for soil erosion prediction for the region.  相似文献   

12.
Soil erosion by water causes substantial on‐site degradation and off‐site damages in the densely populated state of North Rhine‐Westphalia (Germany). Measures of soil conservation should be adjusted to soil erodibilities and should be based on an understanding of the processes involved in water erosion including aggregate breakdown, rainsplash erosion, surface sealing, and soil loss. For a state‐wide assessment of erosion processes and erodibilities, we tested representative cultivated soils of North Rhine‐Westphalia in laboratory and field experiments with artificial rain. In the laboratory experiments described in this paper, rainsplash erosion, sealing susceptibility, and interrill erodibility of 25 topsoils filled in 0.5 m2 boxes were investigated. Results of different aggregate‐stability tests correlate with organic‐matter contents but not with parameters of rainsplash or soil loss. On most soil materials, rainsplash increases or maintains constant rates in the course of the simulation runs indicating that the soil surface did not attain a higher shear resistance. High sealing susceptibilities are found for soils of quite different textures ranging from loam sand to silt clay, whereas other silt clays, clay loams, and some clay silts maintain high infiltration rates. A trend of increasing sealing susceptibility and total soil loss with increasing clay content is observed for the loam sands to sand loams. Dynamics of soil loss is largely governed by runoff rates. Total soil loss is also determined by sediment concentration in surface runoff, which is low on most clayey soils, on loam sands poor in clay, and on a sand loam, and high in the case of highly erodible clay silts, loam sands, and sand loams. The most crust prone soils are not necessarily the most erodible. On most soils, soil‐loss rates do not stabilize until the end of the rainfall experiments. For comparing the interrill erodibilities of the soils, total soil loss is preferred instead of interrill erodibility factors (Ki, Kiq) published in the literature.  相似文献   

13.
不同土壤抗蚀性能研究   总被引:11,自引:0,他引:11       下载免费PDF全文
该对四川省农业科学院资阳水土保持试验所布设的7种土壤试验小区,用模拟降雨装置进行了土壤抗蚀性能的初步试验研究,结果表明:(1)7种土壤的抗蚀能力大小依次为:冷沙黄泥>棕紫泥>红棕紫泥>灰色潮土>红紫泥>黄红紫泥>暗棕紫泥;(2)7种土壤的么径流过程累积量与降雨历时、产沙过程累积量与降雨历时,径流过程累积量与产沙过程累积量之间均有显的线性相关关系,以及6种土壤的土壤含水量与开始产流时间之间有非常  相似文献   

14.
刘家明    查轩    黄少燕   《水土保持研究》2014,21(6):16-19
选取南方红壤区紫色土和第四纪红黏土两种典型土壤类型,通过天然降雨试验,在同等试验条件下对紫色土和第四纪红黏土两种土壤的坡面侵蚀过程中径流量变化、产沙量变化、土壤团聚体以及粒径分析来阐述我国南方红壤区的土壤坡面侵蚀过程。结果表明:(1)降雨是造成土壤坡面产生径流的主要原因,随着降雨的不断增大,土壤坡面径流量不断的增加,紫色土的总径流量较第四纪红黏土大。(2)雨强是造成土壤坡面产沙量的主要原因,特别是在中雨强降雨和大雨强降雨时,土壤侵蚀泥沙量的产生比较明显,紫色土与第四纪红黏土的土壤侵蚀泥沙量比例关系为:1.14∶1.0。(3)紫色土和第四纪红黏土均以 < 0.25 mm的微团聚体占优势,均占65%以上,而紫色土达到90%之多,紫色土微团聚体流失较第四纪红黏土严重。(4)通过两种土壤的降雨前后土壤颗粒对比分析,紫色土减少的土壤颗粒主要是黏粒和粉粒,砂粒相对增加,变化量大,而第四纪红黏土相对较少。  相似文献   

15.
长江上游紫色土坡耕地水土流失特征及其防治对策   总被引:4,自引:0,他引:4       下载免费PDF全文
 紫色土是长江上游最重要的土地资源之一,严重的水土流失引发了一系列问题。在对紫色土坡面产流特征进行分析的基础上,研究紫色土坡面产流特征对水土流失的作用机制以及紫色土坡耕地水土流失防治对策。结果表明:紫色土坡耕地产流模式以蓄满产流为主,壤中流在坡面径流总量中所占比例较大;紫色土坡耕地土壤侵蚀导致土壤粗骨沙化,土壤养分流失途径与营养元素的溶解性有关,易溶的N、K主要以溶解态流失,易被土壤固定的P主要随土壤颗粒流失;壤中流是紫色土坡耕地水土流失的重要外营力之一,进行水土流失治理必须对其加以干预。提出长江上游紫色土坡耕地水土流失治理策略与"增渗防冲、排水保土,先排后蓄、蓄以为用"的治理措施。  相似文献   

16.
Soil erosion has serious off-site impacts caused by increased mobilization of sediment and delivery to water bodies causing siltation and pollution. To evaluate factors influencing soil erodibility at a proposed dam site, 21 soil samples collected were characterized. The soils were analyzed for soil organic carbon (SOC), exchangeable bases, exchangeable acidity, pH, electrical conductivities, mean weight diameter and soil particles’ size distribution. Cation exchange capacity, exchangeable sodium percentage, sodium adsorption ratio, dispersion ratio (DR), clay flocculation index (CFI), clay dispersion ratio (CDR) and Ca:Mg ratio were then calculated. Soil erodibility (K-factor) estimates were determined using SOC content and surface soil properties. Soil loss rates by splashing were determined under rainfall simulations at 360?mmh?1 rainfall intensity. Soil loss was correlated to the measured chemical and physical soil properties. There were variations in soil form properties and erodibility indices showing influence on soil loss. The average soil erodibility and SOC values were 0.0734?t?MJ?1?mm?1 and 0.81%, respectively. SOC decreased with depth and soil loss increased with a decrease in SOC content. SOC significantly influenced soil loss, CDR, CFI and DR (P??1. Addition of organic matter stabilize the soils against erosion.  相似文献   

17.
不同植被覆盖度对紫色土坡面侵蚀过程的影响   总被引:10,自引:8,他引:2  
为研究植被覆盖度对紫色土坡面侵蚀过程的影响,探讨有效控制水土流失的坡面植被临界盖度问题,利用人工模拟降雨试验与室内分析相结合的方法对紫色土坡面侵蚀过程进行分析。结果表明:(1)总体上,紫色土坡面产流量随植被覆盖度的增大而减小,二者之间呈线性负相关,但是植被覆盖度在25%以下,径流量变化不明显,植被覆盖度达75%时,径流量处于较低的稳定值,明显低于植被覆盖度0%,25%,50%;(2)坡面侵蚀泥沙量随植被覆盖度的增加而减少,二者呈二次项相关(R2=0.99),植被覆盖度25%以下对坡面减沙起到重要作用,50%的植被覆盖度是紫色土坡面有效控制水土流失的临界盖度;(3)侵蚀泥沙中以微团聚体(0.25mm)为主,各级团聚体基本上随着植被覆盖度的增加而呈现减少趋势;(4)通过统计分析,植被覆盖度对产流、产沙量的影响均为极显著(p0.01)。紫色土坡面植被覆盖度达到50%对涵养水源、保持水土起到至关重要的作用。  相似文献   

18.
自然降雨条件下红壤坡面有机碳的选择性迁移   总被引:3,自引:0,他引:3  
依托江西水土保持生态科技园,2015年3月―8月期间,对裸地、草地、果园和湿地松人工林四种类型径流小区自然降雨条件下侵蚀过程中径流泥沙和土壤有机碳的流失特征进行了原位监测。结果表明,监测期间24场降雨下,径流系数和侵蚀模数基本上均随雨型的增大而增加。随着土地利用类型由裸地向果园、草地和林地的转换,减流效益和减沙效益依次增大。径流量和泥沙流失量最主要的影响因素分别是降雨量和径流量。裸地、草地、果园和林地四种类型坡面上,自然降雨下土壤有机碳随泥沙迁移的比例分别为64.67%、47.38%、53.94%和36.03%,碳流失强度分别达到560.3、1.98、122.5和2.66 mg m-2。径流有机碳含量与径流量之间、泥沙含碳量与泥沙量之间均呈负相关关系。裸地、果园、草地和林地四种径流小区泥沙有机碳富集比分别为1.27、1.10、0.80和0.58,即随着土壤侵蚀模数的降低,有机碳富集比也减小。泥沙有机碳富集比均随雨强的增大而减小,有机碳的选择性迁移在低强度降雨条件下表现更为明显。  相似文献   

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