首页> 外文期刊>Journal of soil & sediments >Soil types differentiated their responses of aggregate stability to hydrological stresses at the riparian zones of the Three Gorges Reservoir
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Soil types differentiated their responses of aggregate stability to hydrological stresses at the riparian zones of the Three Gorges Reservoir

机译:在三峡水库河岸带,土壤类型区分了其聚集体稳定性对水文压力的响应。

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Purpose The aim of this study was to investigate the resistance of aggregates to flooding stresses for different soil types and present implications for the restoration of eroded soils. Materials and methods Twelve field sites for three soil types were selected and separated into four hydrological stress levels at the riparian zones of the Three Gorges Reservoir. Soil samples were collected randomly, followed by lab analysis of soil mechanical composition, soil aggregate and stability, and soil carbon and nitrogen contents in the bulk soil and different sizes of aggregates. Results and discussion Clay and silt migrated from the upper water level sites to lower water level sites for Regosols under hydrological stresses; however, the mechanical compositions were not changed for Anthrosols and Luvisols. Total carbon content (TC), total nitrogen content (TN), and carbon and nitrogen ratio (C/N) were highest under strong hydrological stress for all-sized aggregates and bulk soils. Aggregate disintegration under hydrological stresses made organic matter exposed, but the anaerobic environment created by flood avoided organic matter from being decomposed. Most TC and TN in aggregates and bulk soils were negatively correlated with stability. Compared with Anthrosols and Luvisols, Regosols had lower aggregate stability due to its low large macro-aggregate proportions for each stress level. Therefore, much attention should be given to Regosols which has a high potential for erosion. Resistances of aggregates to strong and intermediate hydrological stress were higher for Anthrosols than other tested soils. However, Luvisols had the highest resistance to hydrological stresses because of its higher stability above the elevation of 165 m, due to its highest small macro-aggregate proportion. Therefore, anthropogenic restorations are recommended to stabilize the structure of Anthrosols and Luvisols under weak and strong hydrological stress, respectively. Conclusions The operation of the Three Gorges Reservoir forced the riparian ecosystem to undergo periodical flooding stresses. The resistance of soil aggregates to hydrological stresses was lowest for Regosols, which should be concerned urgently to reduce soil losses. Under strong and intermediate hydrological stresses, Anthrosols had greater stability to maintain its original structure. However, the aggregate stability of Luvisols was higher for weak and none hydrological stress levels. Hence, anthropogenic restorations are recommended to take priorities for Anthrosols and Luvisols to reduce soil erosion under weak and strong hydrological stress, respectively.
机译:目的这项研究的目的是研究骨料对不同土壤类型的洪水压力的抵抗力,并为侵蚀土壤的修复提供启示。材料和方法选择了三种峡谷类型的十二个田地,并将其分为三峡水库河岸带的四个水文应力水平。随机收集土壤样品,然后对土壤机械组成,土壤团聚体和稳定性以及散装土壤和不同大小的团聚体中的碳和氮含量进行实验室分析。结果与讨论在水文压力下,黏土和淤泥从水位较高的地方迁移到了水灰岩的水位较低的地方。但是,对人烟溶胶和Luvisols的机械组成没有改变。在所有大小的骨料和散装土壤中,在强水文压力下,总碳含量(TC),总氮含量(TN)以及碳氮比(C / N)最高。在水文压力下骨料的崩解使有机物暴露出来,但洪水造成的厌氧环境避免了有机物的分解。骨料和块状土壤中的大多数TC和TN与稳定性呈负相关。与Anthrosols和Luvisols相比,Regosols具有较低的大骨料比例,这是因为每个应力水平的骨料稳定性较低。因此,应高度重视具有高腐蚀潜力的雷戈溶胶。与其他试验土壤相比,人烟溶胶对强水和中等水文应力的抗性更高。但是,Luvisols对水文应力的抵抗力最高,因为它在165 m的海拔高度以上具有较高的稳定性,这是由于其较小的宏观集料比例最高。因此,建议在弱水文应力和强水文应力下,人为的修复物以稳定人烟和卢维索的结构。结论三峡水库的运行迫使河岸生态系统遭受周期性的洪水压力。对于雷哥sol,土壤聚集体对水文应力的抵抗力最低,应紧急关注以减少土壤流失。在强和中等水文压力下,人为溶胶具有更大的稳定性以保持其原始结构。但是,Luvisols的聚集体稳定性在弱和无水文应力水平下都较高。因此,建议将人为恢复作为优先考虑的人为土壤和土壤微生物,以减少在弱和强水文压力下的土壤侵蚀。

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