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International Journal of Earth & Environmental Sciences Volume 5 (2020), Article ID 5:IJEES-176, 6 pages
https://doi.org/10.15344/2456-351X/2020/176
Original Article
Measurement of Carbon Dioxide and Methane in Forest Soils Following Uncontrolled Wildfires in the Coconino National Forest

Timothy L. Porter1* and Thomas R. Dillingham2

1University of Nevada Las Vegas, Department of Physics and Astronomy, Las Vegas, NV, 89154, USA
2Northern Arizona University, Department of Physics and Astronomy, Flagstaff, AZ, 86001, USA
Prof. Timothy Porter, University of Nevada Las Vegas, Department of Physics and Astronomy, Las Vegas, NV, 89154, USA; E-mail: tim.porter@unlv.edu
06 January 2019; 02 March 2020; 04 March 2020
Porter TL, Dillingham TR (2020) Measurement of Carbon Dioxide and Methane in Forest Soils Following Uncontrolled Wildfires in the Coconino National Forest. Int J Earth Environ Sci 5: 176. doi: https://doi.org/10.15344/2456-351X/2020/176

References

  1. Hu T, Sun L, Hu H, Guo F (2017) Effects of Fire Disturbance on Soil Respiration in the Non Growing Season in a Larix Gmelinii Forest in the Daxingan Mountains, China. PLoS One 12: e0180214. [CrossRef] [Google Scholar] [PubMed]
  2. Sullivan BW, Kolb TE, Hart SC, Kaye J, Hungate BA, et al. (2011) Wildfire Reduces Carbon Dioxide Efflux and Increases Methane Uptake in Ponderosa Pine Forest Soils of the Southwestern USA. Biogeochemistry 104: 251-265. [CrossRef] [Google Scholar]
  3. Raich JW, Schlessinger WH (1992) The Golbal Carbon Dioxide Flux in Soil Respiration and its Relationship to Vegatation and Climate. Tellus. 44: 81-99. [CrossRef] [Google Scholar]
  4. Bond-Lamberty B, Thomson A (2010) Temperature Associated Increases in the Golbal Soil Respiration Record. Nature. 123: 99-117. [CrossRef] [Google Scholar] [PubMed]
  5. Gouklen ML, Munger JW, Fan SM, Daube BC, Wofsy SC, et al. (1996) Measurements of Carbon Sequestration by Long Term Eddy Covariance Methods in a Critical Evaluation of Accuracy. Global Change Biol 2: 169-182. [CrossRef] [Google Scholar]
  6. Law BE, Ryan MG, Anthoni PM (1999) Seasonal and Annual Respiration in a Ponderosa Pine Ecosystem. Global Change Biol 5: 169-182. [CrossRef] [Google Scholar]
  7. Davidson EA, Janssens LA (2006) Temperature Sensitivity of Soil Carbon Decomposition and Feedbacks to Climate Change. Nature. 440: 165-173. [CrossRef] [Google Scholar] [PubMed]
  8. Parkin TB, Kaspar TC (2003) Temperature Controls on Diurnal Carbon Dioxide Flux. Soil Science Society of America Journal 67: 1763-1772. [CrossRef] [Google Scholar]
  9. Londo AJ, Messina MG, Schoenholtz SH (1999) Forest Harvesting Effects on Soil Temperature, Moisture, and Respiration in a Bottomland Hardwood Forest. Soil Society of America Journal 63: 637-644. [CrossRef] [Google Scholar]
  10. Hanson PJ, Edwards NT, Garten CT, Andrews JA (2000) Seperating Root and Soil Microbial Contributions to Soil Respiration: A Review of Methods and Observations. Biogeochemistry 48: 115-146. [Google Scholar]
  11. Högberg P, Nordgren A, Buchmann N, Taylor AF, Ekblad A, et al. (2001) Large Scale Forest Girdling Shows That Current Photosynthesis Drives Soil Respiration. Nature 411: 789-792. [CrossRef] [Google Scholar] [PubMed]
  12. Billings SA, Richter DD, Yarie J (1998) Soil Carbon Dioxide Fluxes and Profile Concentrations in Two Borael Forests. Canadian Journal of Forest Research 28: 1773-1783. [CrossRef] [Google Scholar]
  13. Janssens IA, Dielaman W, Luyssaert S (2010) Reduction in Forest Soil Respiration in Response to Nitrogen Depletion. Nature Geoscience. 3: 315-322. [Google Scholar]
  14. Berg B, Matzner E (1997) Effect of N Deposition on Decomposition of Plant Litter and Soil Organic Matter in Forest Systems. Env Reviews 5: 1-25. [Google Scholar]
  15. Xu M, Qi Y (2001) Soil Surface CO2 Efflux and its Spatial and Temporal Variations in a Young Ponderosa Pine Plantation in Northern California. Global Change Biol 7: 667-677. [CrossRef] [Google Scholar]
  16. Tang J, Qi Y, Xu M, Misson L, Goldstein AH, et al. (2005) Forest Thinning and Soil Respiration in a Ponderosa Pine Plantation in the Sierra Nevada. Tree Physiology. 25: 57-66. [CrossRef] [Google Scholar] [PubMed]
  17. Davidson EA, Belk E, Boone RD (1998) Soil Water Content and Temperature as Independent or Confounded Factors Controlling the Soil Respiration in a Temperate Mixed Hardwood Forest. Global Change Biology. 4: 217-277. [CrossRef] [Google Scholar]
  18. Keppler F, Hamilton JT, Brass M, Röckmann T (2006) Methane Emissions from Terrestrial Plants Under Aerobic Conditions. Nature. 439: 187-191. [CrossRef] [Google Scholar] [PubMed]
  19. Sexstone AJ, Mains CN (1989) Production of Methane and Ethylene in Organic Horizons of Spruce Forest Soils. Soil Biology and Biochemistry 22: 135-139. [CrossRef] [Google Scholar]
  20. Megonigal JP, Guenther AB (2008) Methane Emissions from Upland Forest Soils and Vegitation. Tree Physiology 28: 491-498. [CrossRef] [Google Scholar]
  21. Megonigal JP, Hines ME, Visscher PT (2004) Anaerobic Metabolism: Linkages to Trace Gases and Aerobic Processes. Biogeochemistry. Schlesinger, Elsevier-Pergamon. Oxford. [Google Scholar]
  22. Anderson BL, Bidoglio G, Leip A, Rembges D (1998) A New Method to Study Simultaneous Methane Oxidation and Methane Production in Soils. Global Biogeochem. Cycles. 12: 587-594. [CrossRef] [Google Scholar]
  23. Tripathi D, Jiang Y-L, Kumar D (2010) SABP2, a Methyl Salicylate Esterase is Required for the Systemic Acquired Resistance Induced by Acibenzolar-S-Methyl in Plants. FEBS Lett 584: 3458-3463. [CrossRef] [Google Scholar] [PubMed]