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Carbon Fraction Distribution in Forest Soils and Leaf Litter Across Vegetation Types in El Chico National Park, Mexico

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  • Otilio A. Acevedo-Sandoval

    (Área Académica de Química, Instituto de Ciencias Básicas e Ingeniería, Universidad Autónoma del Estado de Hidalgo, Carretera Pachuca-Tulancingo km 4.5, Mineral de la Reforma, Pachuca 42184, Hidalgo, Mexico)

  • Aline Romero-Natale

    (Área Académica de Química, Instituto de Ciencias Básicas e Ingeniería, Universidad Autónoma del Estado de Hidalgo, Carretera Pachuca-Tulancingo km 4.5, Mineral de la Reforma, Pachuca 42184, Hidalgo, Mexico)

  • Claudia Romo-Gómez

    (Área Académica de Química, Instituto de Ciencias Básicas e Ingeniería, Universidad Autónoma del Estado de Hidalgo, Carretera Pachuca-Tulancingo km 4.5, Mineral de la Reforma, Pachuca 42184, Hidalgo, Mexico)

  • César Camacho-López

    (Área Académica de Química, Instituto de Ciencias Básicas e Ingeniería, Universidad Autónoma del Estado de Hidalgo, Carretera Pachuca-Tulancingo km 4.5, Mineral de la Reforma, Pachuca 42184, Hidalgo, Mexico)

  • José Belisario Leyva-Morales

    (Área Académica de Química, Instituto de Ciencias Básicas e Ingeniería, Universidad Autónoma del Estado de Hidalgo, Carretera Pachuca-Tulancingo km 4.5, Mineral de la Reforma, Pachuca 42184, Hidalgo, Mexico)

  • Fernando Salas-Martínez

    (Área Académica de Química, Instituto de Ciencias Básicas e Ingeniería, Universidad Autónoma del Estado de Hidalgo, Carretera Pachuca-Tulancingo km 4.5, Mineral de la Reforma, Pachuca 42184, Hidalgo, Mexico)

  • César A. González-Ramírez

    (Área Académica de Química, Instituto de Ciencias Básicas e Ingeniería, Universidad Autónoma del Estado de Hidalgo, Carretera Pachuca-Tulancingo km 4.5, Mineral de la Reforma, Pachuca 42184, Hidalgo, Mexico)

Abstract

Soils are the largest terrestrial carbon (C) reservoirs and play a key role in regulating the global C cycle and supporting essential ecosystem services. Soil C sequestration is a viable strategy to reduce atmospheric CO 2 concentrations and mitigate climate change. This study quantified soil C fractions and litter C stocks across five vegetation types in El Chico National Park, Hidalgo, Mexico (2015.55 ha): pine–oak, oyamel–oak, cedar, oyamel–Tlaxcal, and oyamel forests, all occurring under comparable climatic and edaphic conditions. Soil organic matter (SOM) was quantified as the organic fraction originating from decomposed plant and animal residues. No statistically significant differences ( p > 0.05) were found among vegetation types for organic matter, total C, oxidizable C, or recalcitrant (non-oxidizable) C, indicating relative homogeneity across strata. Significant differences ( p < 0.05) were detected in organo-mineral C (Cp) and poorly oxidizable C (Cdox), with oyamel–Tlaxcal and oyamel forests showing the highest values, respectively, suggesting enhanced potential for C stabilization and turnover. Oyamel forests stored 32.94% of total soil organic C and contributed disproportionately to park-wide C stocks given their dominance (85.6% of the total area). Leaf litter contained on average 6.60 Mg C ha −1 , representing 13,302.63 Mg C and 48,836.8 Mg CO 2 across the park. When integrated with soil C to 60 cm depth, total C and CO 2 stocks reached 643,474.26 Mg and 2,361,566.66 Mg, respectively. These findings highlight the critical role of oyamel forests as the main carbon sink in the park and reinforce the importance of conserving these ecosystems as a nature-based solution for climate change mitigation.

Suggested Citation

  • Otilio A. Acevedo-Sandoval & Aline Romero-Natale & Claudia Romo-Gómez & César Camacho-López & José Belisario Leyva-Morales & Fernando Salas-Martínez & César A. González-Ramírez, 2025. "Carbon Fraction Distribution in Forest Soils and Leaf Litter Across Vegetation Types in El Chico National Park, Mexico," Sustainability, MDPI, vol. 17(24), pages 1-15, December.
  • Handle: RePEc:gam:jsusta:v:17:y:2025:i:24:p:11028-:d:1814018
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