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首页> 外文期刊>Natural Hazards >Influences of revegetation mode on soil water dynamic in gully slope of the Chinese Loess hilly-gully region
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Influences of revegetation mode on soil water dynamic in gully slope of the Chinese Loess hilly-gully region

机译:高原丘陵地区沟壑坡土壤水动力学对土壤水动力的影响

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摘要

Gully slope is one of the most active areas of soil erosion in small watershed of the Chinese Loess hilly-gully region. Although its soil erosion has been effectively controlled with the implementation of the "Grain-for-Green Program" in this region, the soil water storage and distribution have been also impacted. In particular, unreasonable revegetation model has aggravated the water shortage, which may in turn threaten the health of ecosystems. However, yet little is known about the effect mechanism of vegetation on soil water in the gully slope. In this study, we examined the relationship between two revegetation modes, including afforestation (i.e. black locust forest) and natural revegetation (i.e. the grassland), and soil water in a depth of 0-120 cm of the gully slope, during the rainy season. The results showed that the effect of the vegetation to the soil water was smaller than that of the precipitation. Furthermore, the response of soil water to the environmental factors was higher in afforestation vegetation due to its lower soil water content, resulting in higher space dependence for soil water, compared to the natural revegetation. The lower soil water content of the black locust forest was mainly caused by its higher recession rate, not its supply. The soil water was deficient for a long time, caused by afforestation, with a shallower formation depth of the dried soil layer and stronger desiccation degree. However, this deficient could not be effectively relieved until in wet year. In comparison with the ridge slope, the effect of vegetation to soil water in gully slope was stronger, with greater water consumption in afforestation vegetation and the higher water storage in natural revegetation. From the aspect of water resources conservation on the water scale, the natural revegetation was the optimal revegetation mode in the gully slope of the loess hilly region.
机译:沟壑坡是中国黄土丘陵沟壑区小流域中最活跃的土壤侵蚀领域之一。尽管在该地区的“绿色计划”的实施中,其土壤侵蚀已得到有效控制,但土壤储水和分布也受到影响。特别是,不合理的重击模型加剧了水资源短缺,这可能反过来威胁到生态系统的健康。然而,然而,关于沟壑坡度植被对土壤水域的效果机制知之甚少。在这项研究中,我们检查了两种植物模式之间的关系,包括造林(即黑蝗虫林)和天然植物(即草原),以及在雨季期间沟壑坡度的深度为0-120厘米的土壤水。结果表明,植被与土壤水的影响小于沉淀。此外,由于土壤含水量降低,土壤水与环境因子的响应较高,导致土壤水的空间较高,与天然植物相比,土壤水分较高。黑色蝗虫森林的较低土壤含水量主要由其衰退率较高,而不是其供应。由于造林引起的土壤水分缺乏,干燥土层的浅层形成深度和更强的干燥程度。然而,直到潮湿的一年,这种缺陷无法有效缓解。与岭坡相比,沟壑坡植被与土壤水的影响较强,造林植被水消耗量较大,天然植被较高的水储存。从水资源保护对水规模的方面,天然植被是黄土丘陵地区沟壑坡度的最优吊放模式。

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  • 来源
    《Natural Hazards》 |2020年第1期|共22页
  • 作者

    Ma J. Y.; Li Z. B.; Ma B.;

  • 作者单位

    Northwest A&

    F Univ State Key Lab Soil Eros &

    Dryland Farming Loess P Inst Soil &

    Water Conservat Yangling 712100 Shaanxi Peoples R China;

    Northwest A&

    F Univ State Key Lab Soil Eros &

    Dryland Farming Loess P Inst Soil &

    Water Conservat Yangling 712100 Shaanxi Peoples R China;

    Northwest A&

    F Univ State Key Lab Soil Eros &

    Dryland Farming Loess P Inst Soil &

    Water Conservat Yangling 712100 Shaanxi Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 天文学、地球科学;
  • 关键词

    Revegetation mode; Soil water; Dried soil layer; Gully slope; Chinese Loess hilly-gully region;

    机译:恢复模式;土壤水;干燥的土壤;沟壑坡;中国黄土丘陵沟壑区;

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