Source Material and Concentration of Wildfire-Produced Pyrogenic Carbon Influence Post-Fire Soil Nutrient Dynamics
Autor: | Jessica R. Miesel, Lucas A. Michelotti |
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Jazyk: | angličtina |
Rok vydání: | 2015 |
Předmět: |
chemistry.chemical_classification
Pinus banksiana chemistry.chemical_element N mineralization Forestry lcsh:QK900-989 Mineralization (soil science) black carbon Nitrogen Oxygen complex mixtures soil respiration pyrogenic carbon nitrogen wildfire Soil respiration Nutrient chemistry Environmental chemistry Soil water Botany lcsh:Plant ecology Organic matter Conifer cone |
Zdroj: | Forests Volume 6 Issue 4 Pages 1325-1342 Forests, Vol 6, Iss 4, Pp 1325-1342 (2015) |
ISSN: | 1999-4907 |
DOI: | 10.3390/f6041325 |
Popis: | Pyrogenic carbon (PyC) is produced by the thermal decomposition of organic matter in the absence of oxygen (O). PyC affects nutrient availability, may enhance post-fire nitrogen (N) mineralization rates, and can be a significant carbon (C) pool in fire-prone ecosystems. Our objectives were to characterize PyC produced by wildfires and examine the influence that contrasting types of PyC have on C and N mineralization rates. We determined C, N, O, and hydrogen (H) concentrations and atomic ratios of charred bark (BK), charred pine cones (PC), and charred woody debris (WD) using elemental analysis. We also incubated soil amended with BK, PC, and WD at two concentrations for 60 days to measure C and N mineralization rates. PC had greater H/C and O/C ratios than BK and WD, suggesting that PC may have a lesser aromatic component than BK and WD. C and N mineralization rates decreased with increasing PyC concentrations, and control samples produced more CO2 than soils amended with PyC. Soils with PC produced greater CO2 and had lower N mineralization rates than soils with BK or WD. These results demonstrate that PyC type and concentration have potential to impact nutrient dynamics and C flux to the atmosphere in post-fire forest soils. |
Databáze: | OpenAIRE |
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