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重庆缙云山林地枯落物及土壤水文效应研究
引用本文:孙艳红,张洪江,程金花,王玉杰,程云,石健.重庆缙云山林地枯落物及土壤水文效应研究[J].中国水土保持科学,2006,4(3):31-35.
作者姓名:孙艳红  张洪江  程金花  王玉杰  程云  石健
作者单位:水土保持与荒漠化防治教育部重点实验室,北京林业大学水土保持学院,100083,北京
基金项目:科技部科研项目;科技部国际科技合作计划;科技部专项基金
摘    要: 为了解中亚亚热带常绿阔叶林地的土壤状况,以重庆缙云山4种林分为研究对象,通过标准地调查、土壤物理性质及持水能力测定和入渗实验,对林地枯落物和土壤水分效应进行研究。结果表明:1)缙云山林地土壤具有较强的持水能力,1m深土壤持水能力为9.5013.17 mm。2)枯落物蓄积量为16.21~32.42t/hm2,枯落物持水率为针阔混交林>灌木林>常绿阔叶林>楠竹林,持水量为灌木林>针阔混交林>常绿阔叶林>楠竹林。3)菲利浦模型较好地反映研究地区不同类型林地土壤入渗过程。

关 键 词:亚热带  森林土壤  枯落物  土壤入渗  森林水文效应  缙云山
收稿时间:2005-10-10
修稿时间:2006-01-12

Hydrological effect of forest litter and soil in Jinyun mountain of Chongqing
Sun Yanhong,Zhang Hongjiang,Cheng Jinhua,Wang Yujie,Cheng Yun,Shi Jian.Hydrological effect of forest litter and soil in Jinyun mountain of Chongqing[J].Science of Soil and Water Conservation,2006,4(3):31-35.
Authors:Sun Yanhong  Zhang Hongjiang  Cheng Jinhua  Wang Yujie  Cheng Yun  Shi Jian
Institution:Key Laboratory of Soil and Water Conservation &; Desertification Combating,Ministry of Education,College of Soil and Water Conservation,Beijing
Forest University,100083,Beijing,China
Abstract:In order to know the soil characteristics of subtropic evergreen broadleaf forest in mid-Asia,four forest stands in Jinyun mountain of Chongqing was selected as objects.Through investigating standard spots,determining soil physical characteristics and water-holding capacity,and experimenting on soil infiltration,forest litter and soil hydrological effect was studied.The results indicated that the forest soils of 1m deep have an obviously strong water-holding capacity wlthin a range from 9.50 to 13.17mm.The litter storage amount is from 16.21 to 32.42t/hm2.The sequence of maximal water retention rate of litter is the coniferous and broad-leaves mixed forestlands>shrub lands>evergreen broad-leaves forestlands> phyllostachys pubescens forestlands.The sequence of maximal water retention of litter is the shrub lands> coniferous and broad-leaves mixed forestlands> evergreen broad-leaves forestlands> phyllostachys pubescens forestlands.The Philip(infiltration) model can better reflect the soil infiltration process of different forest types in research area.
Keywords:forest soil  subtropical zone  forest litters  soil infiltration  forest hydrological effect  Jinyun mountain
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