Timothy Filley
Timothy Filley
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Cited by
Primordial carbonylated iron-sulfur compounds and the synthesis of pyruvate
GD Cody, NZ Boctor, TR Filley, RM Hazen, JH Scott, A Sharma, ...
Science 289 (5483), 1337-1340, 2000
Organic C and N stabilization in a forest soil: evidence from sequential density fractionation
P Sollins, C Swanston, M Kleber, T Filley, M Kramer, S Crow, BA Caldwell, ...
Soil Biology and Biochemistry 38 (11), 3313-3324, 2006
Selective adsorption of l- and d-amino acids on calcite: Implications for biochemical homochirality
RM Hazen, TR Filley, GA Goodfriend
Proceedings of the National Academy of Sciences 98 (10), 5487-5490, 2001
Old and stable soil organic matter is not necessarily chemically recalcitrant: implications for modeling concepts and temperature sensitivity
M Kleber, PS Nico, A Plante, T Filley, M Kramer, C Swanston, P Sollins
Global change biology 17 (2), 1097-1107, 2011
Lignin degradation in wood-feeding insects
SM Geib, TR Filley, PG Hatcher, K Hoover, JE Carlson, ...
Proceedings of the National Academy of Sciences 105 (35), 12932-12937, 2008
Sequential density fractionation across soils of contrasting mineralogy: evidence for both microbial-and mineral-controlled soil organic matter stabilization
P Sollins, MG Kramer, C Swanston, K Lajtha, T Filley, AK Aufdenkampe, ...
Biogeochemistry 96, 209-231, 2009
Lignin demethylation and polysaccharide decomposition in spruce sapwood degraded by brown rot fungi
TR Filley, GD Cody, B Goodell, J Jellison, C Noser, A Ostrofsky
Organic Geochemistry 33 (2), 111-124, 2002
Sources of plant‐derived carbon and stability of organic matter in soil: Implications for global change
SE Crow, K Lajtha, TR Filley, CW Swanston, RD Bowden, BA Caldwell
Global Change Biology 15 (8), 2003-2019, 2009
Photodegradation of decabromodiphenyl ether adsorbed onto clay minerals, metal oxides, and sediment
MY Ahn, TR Filley, CT Jafvert, L Nies, I Hua, J Bezares-Cruz
Environmental science & technology 40 (1), 215-220, 2006
Reductive debromination of polybrominated diphenyl ethers in anaerobic sediment and a biomimetic system
JA Tokarz Iii, MY Ahn, J Leng, TR Filley, L Nies
Environmental science & technology 42 (4), 1157-1164, 2008
Temporal variability in sources of dissolved organic carbon in the lower Mississippi River
TS Bianchi, T Filley, K Dria, PG Hatcher
Geochimica et Cosmochimica Acta 68 (5), 959-967, 2004
The role of hydrology in annual organic carbon loads and terrestrial organic matter export from a midwestern agricultural watershed
BJ Dalzell, TR Filley, JM Harbor
Geochimica et cosmochimica acta 71 (6), 1448-1462, 2007
Lignocellulosic polysaccharides and lignin degradation by wood decay fungi: the relevance of nonenzymatic Fenton-based reactions
V Arantes, AMF Milagres, TR Filley, B Goodell
Journal of Industrial Microbiology and Biotechnology 38 (4), 541-555, 2011
Flood pulse influences on terrestrial organic matter export from an agricultural watershed
BJ Dalzell, TR Filley, JM Harbor
Journal of Geophysical Research: Biogeosciences 110 (G2), 2005
Responses of enzymatic activities within soil aggregates to 9-year nitrogen and water addition in a semi-arid grassland
R Wang, M Dorodnikov, S Yang, Y Zhang, TR Filley, RF Turco, Y Zhang, ...
Soil Biology and Biochemistry 81, 159-167, 2015
Temporal variability in terrestrially-derived sources of particulate organic carbon in the lower Mississippi River and its upper tributaries
TS Bianchi, LA Wysocki, M Stewart, TR Filley, BA McKee
Geochimica et Cosmochimica Acta 71 (18), 4425-4437, 2007
Photochemistry and nature of organic matter in Arctic and Antarctic snow
AM Grannas, PB Shepson, TR Filley
Global Biogeochemical Cycles 18 (1), 2004
The application of 13C-labeled tetramethylammonium hydroxide (13C-TMAH) thermochemolysis to the study of fungal degradation of wood
TR Filley, PG Hatcher, WC Shortle, RT Praseuth
Organic Geochemistry 31 (2-3), 181-198, 2000
Tetramethylammonium hydroxide (TMAH) thermochemolysis: proposed mechanisms based upon the application of 13C-labeled TMAH to a synthetic model lignin dimer
TR Filley, RD Minard, PG Hatcher
Organic Geochemistry 30 (7), 607-621, 1999
Increased belowground carbon inputs and warming promote loss of soil organic carbon through complementary microbial responses
FM Hopkins, TR Filley, G Gleixner, M Lange, SM Top, SE Trumbore
Soil Biology and Biochemistry 76, 57-69, 2014
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