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The Combined Effects of Moss-Dominated Biocrusts and Vegetation on Erosion and Soil Moisture and Implications for Disturbance on the Loess Plateau China

机译:黄土高原地区以苔藓为主的生物结皮和植被对侵蚀和土壤水分的综合影响及其干扰的意义

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摘要

Biological soil crusts (BSCs, or biocrusts) have important positive ecological functions such as erosion control and soil fertility improvement, and they may also have negative effects on soil moisture in some cases. Simultaneous discussions of the two-sided impacts of BSCs are key to the rational use of this resource. This study focused on the contribution of BSCs while combining with specific types of vegetation to erosion reduction and their effects on soil moisture, and it addressed the feasibility of removal or raking disturbance. Twelve plots measuring 4 m × 2 m and six treatments (two plots for each) were established on a 15° slope in a small watershed in the Loess Plateau using BSCs, bare land (as a control, BL), Stipa bungeana Trin. (STBU), Caragana korshinskii Kom. (CAKO), STBU planted with BSCs (STBU+BSCs) and CAKO planted with BSCs (CAKO+BSCs). The runoff, soil loss and soil moisture to a depth of 3 m were measured throughout the rainy season (from June to September) of 2010. The results showed that BSCs significantly reduced runoff by 37.3% and soil loss by 81.0% and increased infiltration by 12.4% in comparison with BL. However, when combined with STBU or CAKO, BSCs only made negligible contributions to erosion control (a runoff reduction of 7.4% and 5.7% and a soil loss reduction of 0.7% and 0.3%). Generally, the soil moisture of the vegetation plots was lower in the upper layer than that of the BL plots, although when accompanied with a higher amount of infiltration, this soil moisture consumption phenomenon was much clearer when combining vegetation with BSCs. Because of the trivial contributions from BSCs to erosion control and the remaining exacerbated consumption of soil water, moderate disturbance by BSCs should be considered in plots with adequate vegetation cover to improve soil moisture levels without a significant erosion increase, which was implied to be necessary and feasible.
机译:生物土壤结皮(BSC,或生物结皮)具有重要的积极生态功能,例如控制侵蚀和提高土壤肥力,并且在某些情况下还可能对土壤水分产生负面影响。同时讨论BSC的双向影响是合理使用此资源的关键。这项研究的重点是BSC与特定类型的植被相结合对减少侵蚀及其对土壤水分的影响,并探讨了清除或耙动干扰的可行性。在黄土高原一个小流域的15°坡度上,使用BSC,裸地(作为对照,BL),Stipa bungeana Trin在15°的坡度上建立了12个测量面积为4 m×2 m的样地,并进行了6种处理(每个样地两个)。 (STBU),锦鸡儿korshinskii Kom。 (CAKO),种植有BSC的STBU(STBU + BSC)和种植有BSC的CAKO(CAKO + BSC)。在2010年的整个雨季(6月至9月)测量了3m深度的径流,土壤流失和土壤水分。结果显示,BSCs显着减少了37.3%的径流和81.0%的土壤流失,并增加了土壤的入渗量。与BL相比为12.4%。但是,与STBU或CAKO结合使用时,BSC对侵蚀控制的贡献微不足道(径流减少7.4%和5.7%,土壤流失减少0.7%和0.3%)。一般而言,植被地块的上层土壤水分含量低于BL地块,尽管当渗透量较高时,将植被与BSCs结合使用时土壤水分消耗现象更加明显。由于BSC对侵蚀控制的微不足道的贡献以及剩余的加剧的土壤水消耗,在具有足够植被覆盖的土地上应考虑BSC对土壤的适度扰动,以提高土壤水分水平而又不显着增加侵蚀,这是有必要的,并且可行。

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