1. 中国科学院地球化学研究所环境地球化学国家重点实验室,贵州,贵阳,550002
2. 普定喀斯特生态系统观测研究站, 贵州普定,562100
3. 中国科学院大学,北京,100049
纸质出版:2015
移动端阅览
孟凡德, 彭韬, 王世杰, 等. 石灰岩与白云岩坡地土壤饱和导水率对比研究[J]. 水土保持通报, 2015,35(1):85-89.
MENG Fande, PENG Tao, WANG Shijie, et al. Comparative Study on Saturated Hydraulic Conductivity of Limestone and Dolomite Slope[J]. Bulletin of Soiland Water Conservation, 2015, 35(1): 85-89.
孟凡德, 彭韬, 王世杰, 等. 石灰岩与白云岩坡地土壤饱和导水率对比研究[J]. 水土保持通报, 2015,35(1):85-89. DOI: 10.13961/j.cnki.stbctb.2015.01.016.
MENG Fande, PENG Tao, WANG Shijie, et al. Comparative Study on Saturated Hydraulic Conductivity of Limestone and Dolomite Slope[J]. Bulletin of Soiland Water Conservation, 2015, 35(1): 85-89. DOI: 10.13961/j.cnki.stbctb.2015.01.016.
[目的
]
对比研究不同下垫面特征和土地利用方式对两类坡地表层土壤性质及其土壤饱和导水率(K
s
)的影响。[方法
]
以喀斯特地区不同岩性下垫面的石灰岩和白云岩两类坡地表层土壤为研究对象
采用Guleph稳定入渗仪和土壤分析的方法。[结果
]
(1)石灰岩和白云岩表层土壤在受到放牧作用影响后
土壤均呈现显著退化趋势
其容重、黏粒含量增大
孔隙度、有机质含量降低。(2)石灰岩和白云岩两类坡地表层土壤在未受到人为干扰的自然植被条件下
由于表层岩溶带的发育
K
s
都很高
平均值分别为328.6和257.2 mm/h。其中
石灰岩坡地相比白云岩坡地
K
s
具有更高的空间变异性
二者K
s
变异系数变化范围分别为90.71%~95.62%和59.60%~67.32%。(3)受到放牧作用影响后
石灰岩和白云岩坡地表层土壤K
s
相比自然植被状态下呈显著降低趋势
K
s
分别降低52.2%和86.7%
白云岩坡地K
s
降低程度大
高于石灰岩坡地。
[Objective] To analyze the influence of land use and lithology on soil properties and saturated hydraulic conductivities (Ks).[Methods] The surface soil from limestone and dolomite slopes in karst region was took as the study objective
and Guelph parameter and soil laboratory analysis were used.[Results] (1) Under over grazing condition
soil bulk density and clay content increased and porosity and organic matter content decreased significantly on both of limestone and dolomite slopes. (2) Under undistured land use condition
Ks of limestone and dolomite soil was very high
the average value was 328.6 mm/h and 257.2 mm/h respectively. Compared to dolomite slope
the spatial distribution of Ks on limestone slope was more heterogeneities that coefficients of variations (Cv%)
which changed between 90.71% and 95.62%. (3) Under the influence of over grazing
the Ks of limestone and dolomite soil decreased by 52.2% and 86.7% respectively
significantly lower than average values.
雷志栋.土壤水动力学[M].北京:清华大学出版社,1988.
王小彬,蔡典雄,高绪科,等.不同农业措施对土壤持水特征的影响及其保水作用[J].植物营养与肥料学报,1996,2(4):297.
Pinheiro E F M, Pereira M G, Anjos L H C. Aggregate distribution and soil organic matter under different tillage systems for vegetable crops in a red latosol from Brazil[J]. Soil and Tillage Research, 2004,77(1):79-84.
Alletto L, Coquet Y. Temporal and spatial variability of soil bulk density and near-saturated hydraulic conductivity under two contrasted tillage management systems[J]. Geoderma, 2009,152(1):85-94.
牛海山,李香真.放牧率对土壤饱和导水率及其空间变异的影响[J].草地学报,1999,7(3):211-216.
马履一,翟明普.京西山地棕壤和淋溶褐土饱和导水率的分析[J].林业科学,1999,35(3):109-112.
郑纪勇,邵明安,张兴昌.黄土区坡面表层土壤容重和饱和导水率空间变异特征[J].水土保持学报, 2004,18(3):53-56.
樊军,邵明安,王全九.田间测定土壤导水率的方法研究进展[J].中国水土保持科学,2006,4(2):114-119.
廖凯华,徐绍辉,吴吉春,等.土壤饱和导水率空间预测的不确定性分析[J].水科学进展,2012,23(2):200-205.
Tao Peng, Wang Shijie. Effects of land use, land cover and rainfall regimes on the surface runoff and soil loss on karst slopes in Southwest China[J]. Catena, 2012,90(3):53-62.
贾中,喻理飞.喀斯特石漠化区石灰岩与白云岩土壤理化性质分析:以贵州兴义市为例[J].贵州科学,2010,28(3):29-33.
张信宝,王世杰,贺秀斌,等.碳酸盐岩风化壳中的土壤蠕滑与岩溶坡地的土壤地下漏失[J].地球与环境,2007,35(3):202-206.
孔凡伟.如何精测土壤容重[J].黑龙江农业科学,2010(10):178-178.
徐建民,李玲,孟宪毅.测定矿石粉末密度的简单方法[J].有色金属(选矿部分),1996(4):41-42.
钱宝,刘凌,肖潇.土壤有机质测定方法对比分析[J].河海大学学报:自然科学版,2011,39(1):34-39.
雷国良,张虎才,张文翔,等.Mastersize 2000型激光粒度仪分析数据可靠性检验及意义:以洛川剖面S
4
层古土壤为例[J].沉积学报,2006,24(4):531-539.
于东升,史学正.用Guelph法研究南方低丘缓坡地不同坡位土壤渗透性[J].水土保持通报,2002,22(1):6-9.
王世杰,季宏兵.碳酸盐岩风化成土作用的初步研究[J].中国科学:D辑,1999,29(5):441-449.
孙承兴,周德全.碳酸盐岩酸不溶物作为贵州岩溶区红色风化壳主要物质来源的证据[J].矿物学报,2002,22(3):235-242.
刘再华.外源水对灰岩和白云岩的侵蚀速率野外试验研究[J].中国岩溶,2000,19(1):1-4.
李胜功,赵哈林,何宗颖.不同放牧压力下草地微气象的变化与草地荒漠化的发生[J].生态学报,1999,19(5):697-704.
闫玉春,唐海萍,张新时,等.基于土壤粒度分析的草原风蚀特征探讨[J].中国沙漠,2010,30(6):1263-1268.
Bouwer H, Rice R C. Hydraulic Properties of Stony Vadose Zonesa[J]. Groundwater, 1984,22(6):696-705.
方胜,彭韬,王世杰,等.喀斯特坡地土壤稳渗率空间分布变化特征研究[J].地球与环境,2014,42(1):1-10.
石生新.高强度人工降雨条件下影响入渗速率因素的试验研究[J].水土保持通报,1992,12(2):49-54.
Lal R. Tropical ecology and physical edaphology[M]. Chichester etc.:Wiley, 1987.
Poesen J, Ingelmo-Sanchez F, Mucher H. The hydrological response of soil surfaces to rainfall as affected by cover and position of rock fragments in the top layer[J]. Earth Surface Processes and Landforms, 1990,15(7):653-671.
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