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Rainwater collection and infiltration (RWCI) systems promote deep soil water and organic carbon restoration in water-limited sloping orchards

机译:雨水收集和渗透(RWCI)系统促进水有限倾斜果园的深层水和有机碳恢复

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摘要

Measures that maximize in situ infiltration and utilization of rainfall are urgently needed on the Loess Plateau to minimize problems associated with drought and soil erosion, and to improve the sustainability of arid and semiarid agricultural production in this region. Here, we present a two-year field assessment of two rainfall control systems-a rainwater collection and infiltration (RWCI) system and a semi-circular basin (fish-scale pit, FSP)-that could improve soil water storage (SWS) and deep soil organic carbon (SOC) levels in apple (Malus pumila Mill.) orchards on a slope. The RWCI system performed better than the FSP system at conserving and utilizing rainwater resources and conserving rhizosphere soil water to meet the water demand of commercial apple orchards. The RWCI system decreased the soil water storage deficit (W-D) and enhanced the SOC content of the root zone due to precipitation, whereas the FSP had little effect. The RWCI system (RWCI60 and RWCI80) significantly increased soil water and SOC contents by 73 % and 81 %, respectively, relative to the control. The design depth of the RWCI system should match the root distribution of adjacent crops to make RWCI a recommended sustainable approach for maximizing the utilization of rainwater resources and the conservation of rhizosphere soil water in standing orchards. This system should help to mitigate the effect of climate change on water scarcity in arid and semi-arid regions, with potential for application in other orchard crops and regions.
机译:黄土高原迫切需要最大化原位渗透和利用降雨利用的措施,以尽量减少与干旱和土壤侵蚀相关的问题,并提高该地区干旱和半干旱农业生产的可持续性。在这里,我们展示了两年的降雨量控制系统 - 雨水收集和渗透(RWCI)系统和半圆形盆地(鱼鳞坑,FSP) - 可以改善土壤储水(SWS)和苹果(Malus Pumila Mill。)植物果园的深土有机碳(SoC)水平。 RWCI系统在节省雨水资源和保护根际土壤水中来满足商业苹果园的需求而言。 RWCI系统降低了土壤储水缺陷(W-D),并由于降水增强了根区的SOC含量,而FSP效果不大。相对于对照,RWCI系统(RWCI60和RWCI80)分别显着增加了73%和81%的土壤水和SOC含量。 RWCI系统的设计深度应符合相邻作物的根本分布,使RWCI推荐用于最大限度地利用雨水资源的利用以及常设果园中根际土壤水的保护。该系统应有助于减轻气候变化对干旱和半干旱地区水资源稀缺的影响,其在其他果园作物和地区的应用潜力。

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