Grass (Poa annua L.) cover for eight years as an effective strategy for recovering soil moisture

IF 5.6 1区 农林科学 Q1 SOIL SCIENCE Geoderma Pub Date : 2024-08-23 DOI:10.1016/j.geoderma.2024.117010
Zhihao Wang , Lihui Ma , Xiaoli Liu , Zizhao Xue , Jingyun Wu , Xiaochen Wen
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Abstract

Deep soil desiccation has become a major obstacle to restoring vegetation in the Loess Plateau region of China. The restoration of deep soil water plays an important role in ecosystem health. In the present study, we compared the effects on moisture variations in deep dry soil of grass cover and clean tillage treatments based on in-situ soil column monitoring for eight years. The results showed that the dry soil layers could temporarily disappear and reappear again with rainfall under clean tillage. However, grass cover effectively increased the deep soil moisture. Grass primarily consumed soil moisture from the shallow layer (0–2 m), and the total amount of water consumed during the whole growth period was less than the annual rainfall in dry years. The average soil desiccation index decreased by 24.20 % and the deep soil water moisture (2–10 m) recovered from 7.5 % to 12.8 % after eight years, with an annual average recovery of 0.66 %. Thus, it would take half a year to recover to the stable field capacity and 14 years to reach the field capacity. Recovery of the soil moisture also depended on the rainfall supply. We found that precipitation had an obvious lagged effect of approximately two years on the supply of deep soil moisture. Our findings contribute to understanding how to alleviate dry soil layer, with potentially helpful implications for the ecological health in arid and semiarid regions.

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草(Poa annua L.)覆盖八年作为恢复土壤水分的有效策略
土壤深层干燥已成为中国黄土高原地区植被恢复的主要障碍。土壤深层水分的恢复对生态系统的健康起着重要作用。在本研究中,我们基于 8 年的原位土柱监测,比较了草覆盖和清洁耕作处理对深层干燥土壤水分变化的影响。结果表明,在清洁耕作条件下,干土层会暂时消失,并随着降雨再次出现。然而,草覆盖能有效增加土壤深层水分。草主要消耗浅层(0-2 米)的土壤水分,整个生长期消耗的水分总量小于干旱年份的年降雨量。八年后,土壤干燥指数平均下降了 24.20%,土壤深层水分(2-10 米)从 7.5% 恢复到 12.8%,年平均恢复 0.66%。因此,恢复到稳定的田间容量需要半年时间,而达到田间容量则需要 14 年。土壤水分的恢复还取决于降雨量的供应。我们发现,降水对深层土壤水分的供应具有明显的滞后效应,约为两年。我们的研究结果有助于了解如何缓解土壤层干燥,对干旱和半干旱地区的生态健康具有潜在的帮助。
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来源期刊
Geoderma
Geoderma 农林科学-土壤科学
CiteScore
11.80
自引率
6.60%
发文量
597
审稿时长
58 days
期刊介绍: Geoderma - the global journal of soil science - welcomes authors, readers and soil research from all parts of the world, encourages worldwide soil studies, and embraces all aspects of soil science and its associated pedagogy. The journal particularly welcomes interdisciplinary work focusing on dynamic soil processes and functions across space and time.
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