Found 12 results
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Journal Article
A. O. Eremina, Golovina, V. V., Ugai, Y. M., and Rudkovskii, A. V., Activated Carbons from Waste Wood in Wastewater Treatment To Remove Surfactants, Russian Journal of Applied Chemistry, vol. 77, pp. 775-778, 2004.
S. Endo, Grathwohl, P., Haderlein, S. B., and Schmidt, T. C., Characterization of Sorbent Properties of Soil Organic Matter and Carbonaceous Geosorbents Using n-Alkanes and Cycloalkanes as Molecular Probes, Environmental Science & Technology, vol. 43, pp. 393-400, 2009.
N. Labbe, Harper, D., Rials, T., and Elder, T., Chemical Structure of Wood Charcoal by Infrared Spectroscopy and Multivariate Analysis, Journal of Agricultural and Food Chemistry, vol. 54, pp. 3492-3497, 2006.
B. T. Nguyen, Lehmann, J., Kinyangi, J., Smernik, R., Riha, S. J., and Engelhard, M. H., Long-term black carbon dynamics in cultivated soil, Biogeochemistry (2008) 89:295, vol. 2008, p. 295, 2008.
E. Eckmeier, Gerlach, R., Skjemstad, J. O., Ehrmann, O., and Schmidt, M. W. I., Minor changes in soil organic carbon and charcoal concentrations detected in a temperate deciduous forest a year after an experimental slash-and-burn, Biogeosciences, pp. 377-383, 2007.
E. Eckmeier, Gerlach, R., Skjemstad, J. O., Ehrmann, O., and Schmidt, M. W. I., Minor changes in soil organic carbon and charcoal concentrations detected in a temperate deciduous forest a year after an experimental slash-and-burn, Biogeosciences, pp. 377-383, 2007.
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.
J. F. Gonzalez, Ramiro, A., Gonzalez-Garcia, C. M., Ganan, J., Encinar, J. M., Sabio, E., and Rubiales, J., Pyrolysis of Almond Shells. Energy Applications of Fractions, Industrial & Engineering Chemistry Research, vol. 44, pp. 3003-3012, 2005.
M. Johnson, Edwards, R., Ghilardi, A., Berrueta, V., Gillen, D., Frenk, C. A., and Masera, O., Quantification of Carbon Savings from Improved Biomass Cookstove Projects, Environmental Science & Technology, Submitted.
B. Liang, Lehmann, J., Solomon, D., Sohi, S., Thies, J. E., Skjemstad, J. O., Luizao, F. J., Engelhard, M. H., Neves, E. G., and Wirick, S., Stability of biomass-derived black carbon in soils, Geochimica et Cosmochimica Acta, vol. 72, p. 6069, 2008.
M. Matsuhashi, Pankrushina, A. N., Endoh, K., Watanabe, H., Mano, Y., Hyodo, M., Fujita, T., Kunugita, K., Kaneko, T., and Otani, S., Studies on carbon material requirements for bacterial proliferation and spore germination under stress conditions: a new mechanism involving transmission of physical signals, Journal of Bacteriology, vol. 177, pp. 688-693, 1995.
D. Day, Evans, R. J., Lee James, W., and Reicosky, D. C., THE UTILIZATION OF CO2 FOR THE CREATION OF A VALUABLE AND STABLE CARBON CO-PRODUCT FROMFOSSIL FUEL EXHAUST SCRUBBING, 2004.