Profile

Xuelian Bao
Chinese Academy of Sciences · 🇨🇳 CN

Career Stage: Senior

CDR Specialization

Soil Carbon

Enhancing carbon storage in agricultural and terrestrial soils through management practices and biochar amendment.

Metrics

MetricValue
h-index22
Citations1,648
Publications55
CDR Focus18.2%
TrajectoryStable

Top CDR Publications

  1. Fungi determine increased soil organic carbon more than bacteria through their necromass inputs in conservation tillage croplands (2022) 163 citations · Soil Carbon

  2. Shifts in microbial metabolic pathway for soil carbon accumulation along subtropical forest succession (2021) 60 citations · Soil Carbon

  3. Effects of residue mulching amounts on metabolic footprints based on production and respiration of soil nematodes in a long‐term no‐tillage system (2021) 29 citations · Soil Carbon

  4. Stover and biochar can improve soil microbial necromass carbon, and enzymatic transformation at the genetic level (2022) 23 citations · Biochar

  5. Bacterial community structure and assembly dynamics hinge on plant litter quality (2023) 6 citations · Soil Carbon

  6. Subsoil Tillage With Straw Mulching Enhances Top‐Down Control of Deep Soil Carbon Accumulation via Fungal Pathways (2025) 3 citations · Soil Carbon

  7. Biochemical heterogeneity of soil components manipulating long-term organic carbon pool buildup over mineral protection in the mollisol (2025) 3 citations · Soil Carbon

  8. [Effects of conservation tillage on soil microbial community and the function of soil carbon cycling]. (2021) 1 citations · Soil Carbon

  9. Biochemical Heterogeneity of Soil Components Manipulating Long-Term Organic Carbon Pool Buildup Over Mineral Protection in the Mollisol (2024) 0 citations · Soil Carbon

  10. Distinct Allocations of Microbial Versus Plant Residues in Mineral Particles Counterbalance the Accumulation and Stabilization of Soil Organic Carbon (2023) 0 citations · Soil Carbon

External Profiles


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