亚热带森林类型转换对土壤水文物理参数的影响
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郑力轩(2002—),男,硕士研究生,主要从事森林生态学研究。E-mail:zhenglixuan1209@163.com

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S714.7

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国家自然科学基金项目(32271633,32201342);福建省2023年中央引导地方科技发展资金项目(2023L3005);福建省自然科学基金项目(2022J01642)


Impacts of Subtropical Forest Type Conversion on Soil Hydrophysical Characteristics
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    摘要:

    [目的] 旨在探讨森林类型转换对森林土壤水文物理参数的影响。[方法] 以亚热带天然常绿阔叶林及由此转换来的天然次生林、米槠(Castanopsis carlesii)人工林和杉木(Cunninghamia lanceolata)人工林为研究对象,对比分析森林类型转换后对土壤孔隙度、渗透性和土水势等水文物理参数的影响。[结果] 1)林型转换后,土壤总孔隙度在次生林土壤下层20~40 cm显著提高,相比天然林增加5.43%,土水势在旱季杉木人工林中显著提高,与天然林相比增加5.01 kPa,但土壤渗透性无显著变化。2)4种林型0~40 cm土层的土壤颗粒均以砂粒为主,但仅黏粒和粉粒与土壤总孔隙度之间呈显著性相关,土壤颗粒组成并非林型转换下土壤持水指标的受控因子。3)土壤持水指标的主要受控因子是土壤体积质量和土壤湿度,土壤体积质量与各持水指标显著相关,森林转换导致土壤体积质量与土壤湿度发生变化,进而引起土壤持水性能的改变。[结论] 林型转换对亚热带地区土壤水文物理参数有显著影响,表现为天然林转换为次生林有利于水源涵养或水土保持,但转换为杉木人工林可能降低土壤的水源涵养能力。研究结果为亚热带森林的可持续经营和水源涵养提供一定的理论依据和数据支持。

    Abstract:

    [Objective] In order to investigate the effects of forest type conversion on the hydrophysical characteristics of forest soils. [Methods] The effects of forest type conversion on soil porosity,permeability,and matric potential,using subtropical natural evergreen broad-leaved forests and the secondary forests were compared,Castanopsis carlesii artificial forests,and Cunninghamia lanceolata artificial forests derived from them as research subjects. [Results] 1)After forest type conversion,total soil porosity in the lower soil layer of secondary forests significantly increased by 5.43% compared to natural forests. Soil matric potential also significantly increased in C. lanceolata artificial forests during the dry season by 5.01 kPa compared to natural forests. However,the variation of soil permeability in different forest types was not significant. 2)In the 0~40 cm soil layer of the four forest types,soil particles were mainly dominated by sand particles, but only clay particles and silt particles showed a significant correlation with total soil porosity,and soil particle composition was not the controlling factor for soil water-holding indicators under forest type conversion. 3)The main controlling factors for soil water-holding indicators were soil bulk density and soil moisture,with significant correlations between soil bulk density and each water-holding indicator,while forest conversion leaded to changes in soil bulk density and soil moisture,thereby causing changes in soil water-holding performance. [Conclusion] Forest type conversion has a significant impact on the hydrophysical parameters of subtropical region soils,with the conversion from natural forests to secondary forests being beneficial for water conservation or soil retention,and conversion to C. lanceolata artificial forests requiring soil amelioration measures to optimize their water retention and permeability. The results can provide a theoretical basis and data support for sustainable management of subtropical forests and water conservation.

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郑力轩, 吴福忠, 杨巧, 彭艳, 安南南, 江华玲, 郑俞辰, 岳楷.亚热带森林类型转换对土壤水文物理参数的影响[J].水土保持学报,2025,39(2):125~134

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  • 收稿日期:2024-10-22
  • 最后修改日期:2024-11-19
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  • 在线发布日期: 2025-05-07
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