不同海拔对干热河谷地区土壤理化性质及可蚀性的影响
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国家自然科学基金项目“植被格局对坡沟水蚀过程调控机理研究”(41071182);国家自然科学基金项目“基于小流域淤积信息的侵蚀产沙与侵蚀环境变化响应研究”(40971161);陕西省自然科学基金重点项目“陕北旱区水资源演变与生态活动响应及调控研究”(2009JZ008)


Effect of Different Elevation on Soil Physica-l chemical Properties and Erodibility in Dry-Hot Valley
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    摘要:

    以四川省宁南县金沙江下游的河谷地带为研究区域,选择不同海拔下的土壤为研究对象,通过室内测试分析,并运用统计和相关分析等方法,研究不同海拔下的土壤可蚀性变异特征。结果表明,在干热河谷区,海拔对土壤理化性质、机械组成、可蚀性影响显著。在低海拔干热风影响较大的区域,随着海拔的升高,土壤理化性质逐步改善;海拔1 005 m以上地区,干热风影响减弱,土壤理化性质和可蚀性出现转折点,其中理化性质有所降低并趋于稳定,可蚀性显著降低,抗蚀性能显著增强;海拔1 235~1 400 m之间可以作为干热风影响的过渡区,海拔1 500 m以上干热风影响基本消失,植被类型发生变化,土壤可蚀性明显降低,抗蚀性能显著提高。研究结果表明,在金沙江干热河谷区,干热风是影响土壤可蚀性的主要因子之一,因此从水土保持角度出发,在该地区应该尽可能地减少干热风的影响,以提高土地抵抗侵蚀的能力。

    Abstract:

    By sampling soils at different elevation at lower reaches of Jinsha River in Ningnan County,variations of soil erodibility with elevation were studied by statistical analysis and indoor physical-chemical properties analysis.Results indicated that in the dry-hot valley,elevation had significant effect on soil physical chemical properties,particle composition and soil erodibility.In the lower elevation region where dry-hot wind had great effect,both soil physical and chemical properties was improved with the increase of elevation,and soil erodibility decreased too;elevation between 1235 m and 1400 m could be considered as the transition region.When the elevation was over 1500 m,influence of dry-hot wind almost disappeared,vegetation types changed a lot,and soil erodibility decreased significantly.These results verified that in the Jinsha River dry-hot valley,dry-hot wind was one of the main factors that influence the soil erodibility.Thus it was important to adopt proper measures to reduce the influence o f dry-hot wind,and increase the anti erodibility of land by soil and water conservation measures.

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李鹏,李占斌,郑郁.不同海拔对干热河谷地区土壤理化性质及可蚀性的影响[J].水土保持通报,2011,(4):103-107

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  • 收稿日期:2011-01-18
  • 最后修改日期:2011-04-08
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  • 在线发布日期: 2014-11-26
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