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Corina Graciano

Biographic Data

ID9674374
NAMECorina Graciano
GIVEN NAMESCorina
FAMILY NAMEGraciano
SIGNATUREGRACIANO C
AFFILIATIONSInstituto de Fisiología Vegetal, Consejo Nacional de Investigaciones Científicas y Técnicas, Universidad Nacional de La Plata Buenos Aires Argentina
ORCID0000-0003-0803-4128
VERIFIEDYes
TOTAL WORKS2
TOTAL CITATIONS0
AUTHOR COUNT2
EDITOR COUNT0
FIRST PUBLICATION YEAR2025
LATEST PUBLICATION YEAR2025
H-INDEX0
  • Afforestation With Xerophytic Shrubs Promoted Soil Organic Carbon Stability in a Hyper‐Arid Environment of Desert

    Open Access•Guangxing Zhao, Akash Tariq et al.•ARTICLE•Land Degradation and Development•2025

    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, …

  • Shrub Afforestation Increases Microbial‐Derived Carbon in Arid Regions

    Open Access•Mengfei Cong, Zhihao Zhang et al.•ARTICLE•Land Degradation and Development•2025

    Soil organic carbon (SOC) primarily originates from microbial and plant‐derived carbon (C). Afforestation activities significantly influence the retention of these C sources. However, in arid regions where SOC is particularly sensitive to external disturbance, the impact of afforestation on microbial‐ and plant‐derived C, and their relative contributions to SOC, remains poorly understood. To address this knowledge gap, we investigated the relativ…

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

    Open Access•Guangxing Zhao, Akash Tariq et al.•ARTICLE•Land Degradation and Development•2025

    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, …

  • Shrub Afforestation Increases Microbial‐Derived Carbon in Arid Regions

    Open Access•Mengfei Cong, Zhihao Zhang et al.•ARTICLE•Land Degradation and Development•2025

    Soil organic carbon (SOC) primarily originates from microbial and plant‐derived carbon (C). Afforestation activities significantly influence the retention of these C sources. However, in arid regions where SOC is particularly sensitive to external disturbance, the impact of afforestation on microbial‐ and plant‐derived C, and their relative contributions to SOC, remains poorly understood. To address this knowledge gap, we investigated the relativ…

Afforestation (2 works) · Agroforestry (2 works) · Arid (2 works) · Biology (2 works) · Carbon fibers (2 works) · Ecology (2 works) · Environmental Science (2 works) · Mathematics (2 works) · Shrub (2 works) · Soil Carbon and Nitrogen Dynamics (2 works)

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