Saltar al contenido principal

ETHNOS_APP

Inicio • Búsqueda • Revistas • Lista 0

Watershed-scale patterns and drivers of forest carbon storage in subtropical China

A case study of the Lijiang River Basin

Datos Bibliográficos

ID22240239
AutoresLin Li (0000-0003-2896-7988, Guangxi University), Ru-yan Xiang (Guilin University of Electronic Technology), Yi Zhao (0009-0002-1840-3978, Guilin University of Electronic Technology), Yi-bo Tan (Guangxi University, autor de correspondencia), Kai-hui Shen (Guilin University of Electronic Technology), Shiguang Wei (Guangxi Normal University, autor de correspondencia), Shi-guang Wei
Año2026
Volumen26
Páginas101369
Fecha de publicación2026-07-01
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaTrees Forests and People (JOURNAL)
Identificadores de la revistaISSN: 2666-7193 • E-ISSN: 2666-7193
EditorialElsevier BV (PUBLISHER)
DOI10.1016/j.tfp.2026.101369
OpenAlexW7165802876
IdiomaEN
Referencias citadas57

Estimating subtropical forest carbon storage and its drivers is crucial for achieving global carbon neutrality. From 2021 to 2023, we surveyed 44 natural and planted forest plots along the Lijiang River, China, estimating carbon storage using species-specific allometric models. We utilized a hierarchical partitioning framework to analyze how taxonomic diversity (TD), phylogenetic diversity (PD), stand structural diversity (SSD), geography location, topography, and soil properties influence carbon storage. Results indicated that carbon storage in natural forests (48.1 ± 6.54 t/ha) significantly exceeded that in planted forests (35.85 ± 5.15 t/ha). Spatially, mean storage decreased from north to south, following the downstream (44.25 t/ha) > midstream (41.73 t/ha) > upstream (40.82 t/ha) gradient. Carbon storage was negatively correlated with latitude, slope, and soil total carbon (TC) and total phosphorus (TP), but positively associated with soil total nitrogen (TN), TD, and PD. This study highlights the interactive regulation of carbon storage by biotic and abiotic factors. Given the superior carbon sink potential of natural forests in the Lijiang River Basin, mitigating the impacts of tourism and human disturbances is vital for preserving their biodiversity and carbon storage

Carbon fibers · Drainage basin · Humid subtropical climate · Hydrology (agriculture) · Subtropics · Water storage · Forest, Soil, and Plant Ecology in China · Hydrology and Watershed Management Studies · Plant Water Relations and Carbon Dynamics

  • The biodiversity and ecosystem service contributions and trade-offs of forest restoration approaches

    Open Access•Fangyuan Hua, L Adrian Bruijnzeel et al.•Science•2022

  • Sustainable forest biomass

    Open Access•Brian D Titus, Brian Titus et al.•Energy Sustainability and Society•2021

  • Mass-ratio effects outperform niche complementarity in predicting aboveground carbon storage in southeastern United States pine and mixed forests

    Open Access•Olufemi E Fatunsin•Trees Forests and People•2025

Velocidad de citaciónhistorical
Altamente citadoNo
Ethnos_APP • Proyecto Open Source • Licencia MIT • Frontend v2.0.0 • Privacidad y Cookies • Documentación de la API: api.ethnos.app/docs • Código de la API: GitHub • DOI: 10.5281/zenodo.17049435 • Código del Frontend: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae