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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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
M
R. L. Tseng, Mesopore control of high surface area NaOH-activated carbon, J Colloid Interface Sci, vol. 303, pp. 494-502, 2006.

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