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Afforestation With Xerophytic Shrubs Promoted Soil Organic Carbon Stability in a Hyper‐Arid Environment of Desert

干旱 沙漠(哲学) 植树造林 环境科学 土壤碳 沙漠气候 碳纤维 农林复合经营 拉雷亚 总有机碳 农学 土壤水分 土壤科学 生态学 灌木 生物 数学 哲学 认识论 算法 复合数
作者
Guangxing Zhao,Akash Tariq,Zhihao Zhang,Muhammad Nazim,Corina Graciano,Jordi Sardans,Xinping Dong,Yanju Gao,Josep Peñuelas,Fanjiang Zeng
出处
期刊:Land Degradation & Development [Wiley]
被引量:4
标识
DOI:10.1002/ldr.5387
摘要

ABSTRACT In desert ecosystems, afforestation with xerophytic shrubs has the potential to significantly increase soil nutrient levels by mitigating wind and soil erosion. Nevertheless, further investigation is required to elucidate the changes in soil organic carbon (SOC) fractions and stability on different soil depths with afforestation years. We collected soil samples from the 0–20, 20–60, and 60–100 cm depths of three xerophytic shrublands ages (3, 7, and 10 years), with a natural desert as the control, in a hyper‐arid desert region. We investigated the variations of SOC fractions (stable and active C) and stability (stability index and MAOC:POC ratios) after afforestation. The results showed that the rate of increase in SOC fractions and stability did not follow a linear trajectory with afforestation years. Instead, they accelerated around 7 years but then decreased after 10 years. The increase in SOC stability was primarily attributed to the greater increase in stable C within the total SOC pool. Afforestation increased the concentration of ROC from 0.26 to 0.89 g kg −1 and MAOC from 0.11 to 0.78 g kg −1 . Afforestation increased SOC stability by 74.36%–231% compared to the CK in the 0–100 cm. SOC stability in the 60–100 cm was higher than that in the 0–20 cm layer, while SOC stability varied insignificantly across soil layers. The strongest direct positive impact on SOC stability was attributed to changes in soil physicochemical properties rather than soil microbial biomass or aggregate stability. These findings contribute to our understanding of the importance of afforestation in increasing SOC stability in desert ecosystems.
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