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Disturbance Effects on Soil Carbon and Greenhouse Gas Emissions in Forest Ecosystems

Resumen/Descripción – provisto por la editorial

No disponible.

Palabras clave – provistas por la editorial

greenhouse gas emission; heterotrophic respiration; Camellia oleifera; Larix principis-rupprechtii Mayr; soil microbial residue; assisted natural regeneration; soil organic carbon; soil carbon sequestration; soil CO2; surface soil layer; landform; anthropogenic effect; South Korea; CO2 effluxes; storm damage; microbial properties; calcareous soil; land use pattern; soil total nitrogen; generation; tree mortality; land use types; forest conversion; DCD; carbon source–sink; stoichiometric ratios; autotrophic respiration; N2O; CO2 emission; organic carbon mineralization; CH4 emissions; clear-cutting; CO2 production and diffusion; soil quality; nitrification inhibitor; organic carbon accumulation; climate change mitigation; global change; greenhouse gas inventory; warming; soil properties; bacterial community; sensitivity; soil characteristics; forest; insect outbreak; biochar; nitrous oxide; CO2; soil respiration; land-use change; decomposition; soil; natural forest; calcareous soils; greenhouse gas; forest soils; karst graben basin; plantation; rocky desertification; fitting parameters; temperature; forest disturbance; microbe; subtropical forest; N addition; carbon stock changes; IPCC; next-generation sequencing; nitrogen; N2O emissions; red soils; CH4; coastal wetlands; CO2 emissions; stand age; successive planting; plum plantation ages

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Información

Tipo de recurso:

libros

ISBN electrónico

978-3-03928-667-6

País de edición

Suiza