Carbon isotope fractionation in wood during carbonization
暂无分享,去创建一个
[1] M. Leese,et al. Consensus delta (super 13C) values. , 2006 .
[2] D. V. Sandberg,et al. Chemistry of burning the forest floor during the FROSTFIRE experimental burn, interior Alaska, 1999 , 2004 .
[3] Marc L. Janssens,et al. Modeling of the thermal degradation of structural wood members exposed to fire , 2004 .
[4] James R. Ehleringer,et al. Correlations between carbon isotope ratio and microhabitat in desert plants , 1988, Oecologia.
[5] D. Graetz,et al. 13C-depleted charcoal from C4 grasses and the role of occluded carbon in phytoliths , 2003 .
[6] D. McCarroll,et al. Comparison of stable carbon isotope ratios in the whole wood, cellulose and lignin of oak tree-rings , 2003 .
[7] Claudia I. Czimczik,et al. Effects of charring on mass, organic carbon, and stable carbon isotope composition of wood , 2002 .
[8] Jeff Baldock,et al. Chemical composition and bioavailability of thermally altered Pinus resinosa (Red pine) wood , 2002 .
[9] J. Hunt,et al. Deriving a consistent δ13C signature from tree canopy leaf material for palaeoclimatic reconstruction , 2002 .
[10] Chris S. M. Turney,et al. Redating the onset of burning at Lynch's Crater (North Queensland): implications for human settlement in Australia , 2001 .
[11] C. Turney,et al. Elemental δ13C at Allen's Cave, Nullarbor Plain, Australia: assessing post‐depositional disturbance and reconstructing past environments , 2001 .
[12] E. Veenendaal,et al. Stability of elemental carbon in a savanna soil , 1999 .
[13] M. McGlone,et al. Estimating past leaf‐to‐air vapour pressure deficit from terrestrial plant δ13C , 1999 .
[14] J. Frielingsdorf,et al. CARBON ISOTOPE BEHAVIOUR IN WOOD AND CELLULOSE DURING ARTIFICIAL AGING , 1999 .
[15] S. Macko,et al. Variability of stable carbon isotopic compositions in individual fatty acids from combustion of C4 and C3 plants: implications for biomass burning , 1998 .
[16] M. Garstang,et al. Causes of bulk carbon and nitrogen isotopic fractionations in the products of vegetation burns: laboratory studies , 1998 .
[17] Thomas A. J. Kuhlbusch,et al. Black Carbon and the Carbon Cycle , 1998, Science.
[18] M. Bird,et al. Determination of the abundance and carbon isotope composition of elemental carbon in sediments , 1997 .
[19] C. H. Gimingham,et al. The Ecology of Fire. , 1996 .
[20] M. Hopkins,et al. Charcoal evidence of the spatial extent of the Eucalyptus woodland expansions and rainforest contractions in North Queensland during the late Pleistocene , 1993 .
[21] J. Ehleringer,et al. Carbon Isotope Discrimination and Photosynthesis , 1989 .
[22] B. Fry,et al. Controls on Natural Nitrogen‐15 and Carbon‐13 Abundances in Forest Soil Organic Matter , 1988 .
[23] R. Hodson,et al. Depletion of 13C in lignin and its implications for stable carbon isotope studies , 1987, Nature.
[24] J. J. Mott,et al. Ecology and management of the world's savannas , 1985 .
[25] M. Leese,et al. Consensus δ13C Values , 1984, Radiocarbon.
[26] S. Leavitt,et al. Charcoal production from wood and cellulose: implications to radiocarbon dates and accelerator target production , 1982 .