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P
R. Lal, Promise and limitations of soils to minimize climate change, Journal of Soil and Water Conservation, vol. 63, p. 113A-118, 2008.
A. H. Heggenstaller, Anex, R. P., Liebman, M., Sundberg, D. N., and Gibson, L. R., Productivity and Nutrient Dynamics in Bioenergy Double-Cropping Systems, Agron. J., vol. 100, pp. 1740-1748, 2008.
A. W. Ip, Barford, J. P., and McKay, G., Production and comparison of high surface area bamboo derived active carbons, Bioresour Technol, vol. 99, pp. 8909-16, 2008.
J. Antal Michael J. and Office, U. S. P., Process for flash carbonization of biomass, U.S. Patent 1522762004.
Q. Cao, Xie, K. C., Lv, Y. K., and Bao, W. R., Process effects on activated carbon with large specific surface area from corn cob, Bioresour Technol, vol. 97, pp. 110-5, 2006.
F. C. Wu and Tseng, R. L., Preparation of highly porous carbon from fir wood by KOH etching and CO2 gasification for adsorption of dyes and phenols from water, J Colloid Interface Sci, vol. 294, pp. 21-30, 2006.
W. T. Tsai, Chang, C. Y., Wang, S. Y., Chang, C. F., Chien, S. F., and Sun, H. F., Preparation of activated carbons from corn cob catalyzed by potassium salts and subsequent gasification with CO2, Bioresour Technol, vol. 78, pp. 203-8, 2001.
M. Valix, Cheung, W. H., and McKay, G., Preparation of activated carbon using low temperature carbonisation and physical activation of high ash raw bagasse for acid dye adsorption, Chemosphere, vol. 56, pp. 493-501, 2004.
S. Koutcheiko, Monreal, C. M., Kodama, H., McCracken, T., and Kotlyar, L., Preparation and characterization of activated carbon derived from the thermo-chemical conversion of chicken manure, Bioresour Technol, vol. 98, pp. 2459-64, 2007.
B. Glaser, Prehistorically modified soils of central Amazonia : a model for sustainable agriculture in the 21st century, Philosophical Transactions of the Royal Society, vol. 362, pp. 187-196, 2007.
P. Zhang, Sheng, G., Feng, Y., and Miller, D., Predominance of Char Sorption over Substrate Concentration and Soil pH in Influencing Biodegradation of Benzonitrile, Biodegradation, vol. 17, pp. 1-8, 2006.
H. W. Hung and Lin, T. F., Prediction of the adsorption capacity for volatile organic compounds onto activated carbons by the Dubinin-Radushkevich-Langmuir model, J Air Waste Manag Assoc, vol. 57, pp. 497-506, 2007.
L. J. Janik, Skjemstad, J. O., Shepherd, K. D., and Spouncer, L. R., The prediction of soil carbon fractions using mid-infrared-partial least square analysis, Australian Journal of Soil Research, vol. 45, pp. 73-81, 2007.
A. D. Thomas, Walsh, R. P. D., and Shakesby, R. A., Post-fire forestry management and nutrient losses in eucalyptus and pine plantations, Northern Portugal, Land Degradation & Development, vol. 11, pp. 257-271, 2000.
K. J. Rockne, Taghon, G. L., and Kosson, D. S., Pore structure of soot deposits from several combustion sources, Chemosphere, vol. 41, pp. 1125-35, 2000.
R. L. Tseng and Tseng, S. K., Pore structure and adsorption performance of the KOH-activated carbons prepared from corncob, J Colloid Interface Sci, vol. 287, pp. 428-37, 2005.
Y. M. Hsieh, Tsai, M. S., and Yen, F. S., Pore size and adsorptive capacity of unburned carbon affected by gasification with carbon dioxide, J Environ Sci Health A Tox Hazard Subst Environ Eng, vol. 39, pp. 2143-55, 2004.
D. Dinnes, Jaynes, D., Kaspar, T., Colvin T.,, Cambardella, C. A., and Karlen, D. L., PLANT-SOIL-MICROBE N RELATIONSHIPS IN HIGH RESIDUE MANAGEMENT SYSTEMS, in South Dakota No-Till Association, Best Western Ramkota Hotel, Aberdeen, South Dakota, Submitted.
Y. Guo and Rockstraw, D. A., Physicochemical properties of carbons prepared from pecan shell by phosphoric acid activation, Bioresour Technol, vol. 98, pp. 1513-21, 2007.
S. Wang, Zhu, Z. H., Coomes, A., Haghseresht, F., and Lu, G. Q., The physical and surface chemical characteristics of activated carbons and the adsorption of methylene blue from wastewater, J Colloid Interface Sci, vol. 284, pp. 440-6, 2005.
N. Tancredi, Medero, N., Moller, F., Piriz, J., Plada, C., and Cordero, T., Phenol adsorption onto powdered and granular activated carbon, prepared from Eucalyptus wood, J Colloid Interface Sci, vol. 279, pp. 357-63, 2004.
N
M. Khan, Kim, K. - W., Mingzhi, W., Lim, B. - K., Lee, W. - H., and Lee, J. - Y., Nutrient-impregnated charcoal: an environmentally friendly slow-release fertilizer, The Environmentalist, vol. 28, pp. 231-235, 2008.
Nutrient constraints to tropical agroecosystemproductivity in long-term degrading soils, Global Change Biology, vol. 14, p. 2810, Submitted.
R. J. Smernik, Kookana, R. S., and Skjemstad, J. O., NMR Characterization of 13C-Benzene Sorbed to Natural and Prepared Charcoals, Environmental Science & Technology, vol. 40, pp. 1764-1769, 2006.
D. L. Dinnes, Karlen, D. L., Jaynes, D. B., Kaspar, T. C., Hatfield, J. L., Colvin, T. S., and Cambardella, C. A., Nitrogen Management Strategies to Reduce Nitrate Leaching in Tile-Drained Midwestern Soils, Agron J, vol. 94, pp. 153-171, 2002.
P. T. Stevens and of Dr. Ron Morse, D. H., Nitrogen Management and the Effects of Compost Tea on Organic Irish Potato and Sweet Corn, Virginia Polytechnic Institute and State University , Blacksburg, Virginia , 2008.
D. B. Jaynes, Colvin, T. S., Karlen, D. L., Cambardella, C. A., and Meek, D. W., Nitrate Loss in Subsurface Drainage as Affected by Nitrogen Fertilizer Rate, J Environ Qual, vol. 30, pp. 1305-1314, 2001.
J. A. Leenheer, Rostad, C. E., Barber, L. B., Schroeder, R. A., Anders, R., and Davisson, L. M., Nature and Chlorine Reactivity of Organic Constituents from Reclaimed Water in Groundwater, Los Angeles County, California, Environmental Science & Technology, vol. 35, pp. 3869-3876, 2001.
C. - H. Cheng, Lehmann, J., and Engelhard, M. H., Natural oxidation of black carbon in soils: Changes in molecular form and surface charge along a climosequence, Geochimica et Cosmochimica Acta, vol. 72, p. 1598, 2008.
G
H. A. Mazloum and Rowley, D., The growth requirements of H, The Journal of Pathology and Bacteriology, vol. 70, pp. 439-447, 1955.
R. W. Sterrett, Growing medium containing combusted bark particles, 1978.
F
D. Mead, Forests for Energy and the Role of Planted Trees, Critical Reviews in Plant Sciences, vol. 24, pp. 407-421, 2005.

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