Agriculture Reference
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[22] Haberhauer, G., and Gerzabek, M.H. (1999). DRIFT and transmission FT-IR
spectroscopy of forest soils: an approach to determine decomposition processes of
forest litter. Vibrational Spectr. 19, 413-417.
[23] Capriel, P. (1997). Hydrophobicity of organic matter in arable soils: influence of
management. Eur. J. Soil Sci. 48, 457-462.
[24] Ding, G., Novak, J.M., Amarasiriwardena, D., Hunt, P.G., Xing, B. (2002). Soil organic
matter characteristics as affected by tillage management. Soil Sci. Soc. Am. J. 66, 421-
429.
[25] Ding, G., Liu X., Herbert, S., Novak, J.M., Amarasiriwardena, D., Xing, B. (2006).
Effect of cover crop management on soil organic matter. Geoderma 130, 229-239.
[26] Wilson, M.A. NMR techniques and applications in geochemistry and soil chemistry.
Oxford UK, Pergamon Press, 1987.
[27] Preston, C. (1996). Application of NMR to soil organic matter analysis, history and
prospects. Soil Sci. 161, 144-166.
[28] Conte, P., Piccolo, A., van Lagen, B., Buurman, P., de Jager, P. A. (1997). Quantitative
differences in evaluating soil humic substances by liquid and solid-state 13C-NMR
spectroscopy. Geoderma 80, 339-352.
[29] Kingery, W.L., Simpson, A.J., Hayes, M.H.B., Locke, M.A., and Hicks, R.P. (2000).
The application of multidimensional NMR to the study of soil humic substances. Soil
Sci. 165, 483-494.
[30] Mathers N.J., Mao, X.A., Xu, Z.H., Saffigna, P.G., Berners-Price, S.J., and Perera,
M.C.S. (2000). Recent advances in the application of 13 C and 15 N NMR spectroscopy to
soil organic matter studies. Aust. J. Soil Res . 38, 796-87.
[31] Provenzano, M.R., and Senesi, N., (1999). Thermal Properties of Standard and
Reference Humic Substances by Differential Scanning Calorimetry. J. Thermal Anal.
Calorim . 57, 517-526.
[32] Rosa, A.H., de Oliveira, L.C., Bellin, I. C., Rocha, J.C., Cruz Romão, L.P., and Dias
Filho, N. L., (2005). Influence of alkaline extraction on the characteristics of humic
substances in Brazilian soils. Thermochimica Acta 433, 77-82.
[33] Kučerík, J., Kamenářová, D., Válková, M., Pekař, M., and Kislinger, J. (2006). The role
of various compounds in humic acids stability studied by TG and DTA. J. Thermal.
Anal., Cal. 84, 715-720
[34] [34] Toderi, G., and Giordani, G. (1982). Effetti dell'apporto di materia organica al
terreno, sotto diverse forme, sulle colture di mais e di frumento in rotazione biennale. I.
Effetti sulle rese di frumento. Riv. Agron. 16, 197-202.
[35] Coplen, T.B., (1994). Reporting of stable hydrogen, carbon and oxygen isotopic
abundances. Pure Appl. Chem. 66, 272-276.
[36] Almendros, G., Tinoco, P., Gonzalez-Vila, F.J., Ludemann, H.D., Sanz, J. Velasco, F.
(2001). 13 C-NMR of forest soil lipids. Soil Sci. 166, 186-196.
[37] Wander, M.M., and Yang, X. (2000). Influence of tillage on the dynamics of loose and
occluded particulate and humified organic matter fractions. Soil Biol. Biochem. 32,
1151-1160.
[38] Plaza, C., Senesi, N., García-Gil, J.C., Brunetti, G., D'Orazio, V., and Polo, A. (2002).
Effects of pig slurry application on soils and soil humic acids. J. Agric. Food Chem. 50,
4867-4874.
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