286
Water for Energy and Fuel Production
12. Watanabe, M., Sato, T., Inomata, H., Smith, R.L., Jr., Arai, K., Kruse, A., and Dinjus, E.,
“Chemical reactions of C1 compounds in near-critical and supercritical water,” Chemical
Reviews, 104, 5803–5820 (2004).
13. Matsumura,Y., Sasaki, M., Okuda, K., Takami, S., Ohara, S., Umetsu, M., and Adschiri, T.,
“Supercritical water treatment of biomass for energy and material recovery,” Combustion
Science and Technology, 178, 509–536 (2006).
14. Modell, M., “Processing methods for the oxidation of organics in supercritical water,”
Patent No. 4338199 (July 6, 1982).
15. Ding, Z., Frisch, M., Li, L., and Gloyna, E., “Catalytic oxidation in supercritical water,”
Industrial & Engineering Chemistry Research, 35, 3257–3279 (1996).
16. Parsons, E., “Organic reactions in very hot water,” Chemtech, 26 (6), 30–34 (1996).
17. Katritzky, A., Allin, S., and Siskin, M., American Chemical Society, 29 (8), 399–406 (1996).
18. An, J., Bagnell, L., Cablewski, T., Strauss, C., and Trainer, R., Journal of Organic
Chemistry, 62 (8), 2505–2511 (1997).
19. Leif, R.N. and Simoneit, B., Origins of Life and Evolution of the Biosphere, 25, 119–140
(1995).
20. Chandler, K., Deng, F., Dillow, A., Liotta, C., and Eckert, C., Industrial & Engineering
Chemistry Research, 36 (12), 5175–5179 (1997).
21. xu, x. and Antal, M., AIChE Journal, 40 (9), 1524–1531 (1994).
22. xu, x. and Antal, M., Industrial & Engineering Chemistry Research, 36 (1), 23–41 (1997).
23. Crittendon, R. and Parsons, E., Organometallics, 13 (7), 2587–2591 (1994).
24. Diminnie, J., Metts, S., and Parsons, E., Organometallics, 14 (8), 4023–4025 (1995).
25. Kuhlmann, B., Arnett, E., and Siskin, M., Journal of Organic Chemistry, 59 (11),
3098–3101 (1994).
26. Savage, P., Li, R., and Santini J., The Journal of Supercritical Fluids, 7 (2), 135–144 (1994).
27. Lee, J. and Foster, N., The Journal of Supercritical Fluids, 9 (2), 99–105 (1996).
28. Aki, S. and Abraham, M., The Journal of Supercritical Fluids, 7 (4), 259–263 (1994).
29. Hong, G. and Spritzer, M., “Supercritical water partial oxidation,” Proceedings of the 2002
US DOE Hydrogen Energy Program Review, General Atomics, San Diego, CA, NREL/
CP-610-32405, Golden, CO (2002).
30. Johanson, N., Spritzer, M., Hong, G., and Rickman, W., “Supercritical water partial
oxidation,” Proceedings of the 2001 DOE Hydrogen Program Review, General Atomics,
San Diego, CA, NREL/CP-570-30535, Golden, CO (2001).
31. Vogel, F., DiNaro-Blanchard, J., Marrone, P., Rice, S., Webley, P., Peters, W., Smith, K.,
and Tester, J., “Critical review of kinetic data for the oxidation of methanol in supercritical water,” The Journal of Supercritical Fluids, 34, 249–286 (2005).
32. Spritzer, M., “Supercritical water partial oxidation,” Hydrogen Fuel Cells and Infrastructure
Technologies, DOE progress report, General Atomics, San Diego, CA (2003).
33. Sato, T., Adschiri, T., Arai, K., Rempel, G., and Ng, F., “Upgrading of asphalt with and
without partial oxidation in supercritical water,” Fuel, 82 (10), 1231–1240 (2003).
34. Youssef, E., Elbeshbishy, E., Hafez, H., Nakhia, G., and Charpentier, P., “Sequential
supercritical water gasification and partial oxidation of hog manure,” International
Journal of Hydrogen Energy, 35 (21), 11756–11767 (2010).
35. Gloyna, E. and Li, L., “Supercritical water oxidation: An engineering update,” Waste
Management, 13, 379 (1993).
36. Gloyna, E. and Li, L., “Supercritical water oxidation research and development update,”
Environmental Progress, 14, 182 (1995).
37. Jin, F.M., Ausushi, K., and Heiji, E., “Oxidation of garbage in supercritical water,” High
Pressure Research, 20, 525–531 (2001).
38. Goto, M., Nada, T., Ogata, A., Kodama, A., and Hirose, T., “Supercritical water oxidation for the destruction of municipal excess sludge and alcohol distillery wastewater of
molasses,” The Journal of Supercritical Fluids, 13, 277–282 (1998).
Water for Energy and Fuel Production
12. Watanabe, M., Sato, T., Inomata, H., Smith, R.L., Jr., Arai, K., Kruse, A., and Dinjus, E.,
“Chemical reactions of C1 compounds in near-critical and supercritical water,” Chemical
Reviews, 104, 5803–5820 (2004).
13. Matsumura,Y., Sasaki, M., Okuda, K., Takami, S., Ohara, S., Umetsu, M., and Adschiri, T.,
“Supercritical water treatment of biomass for energy and material recovery,” Combustion
Science and Technology, 178, 509–536 (2006).
14. Modell, M., “Processing methods for the oxidation of organics in supercritical water,”
Patent No. 4338199 (July 6, 1982).
15. Ding, Z., Frisch, M., Li, L., and Gloyna, E., “Catalytic oxidation in supercritical water,”
Industrial & Engineering Chemistry Research, 35, 3257–3279 (1996).
16. Parsons, E., “Organic reactions in very hot water,” Chemtech, 26 (6), 30–34 (1996).
17. Katritzky, A., Allin, S., and Siskin, M., American Chemical Society, 29 (8), 399–406 (1996).
18. An, J., Bagnell, L., Cablewski, T., Strauss, C., and Trainer, R., Journal of Organic
Chemistry, 62 (8), 2505–2511 (1997).
19. Leif, R.N. and Simoneit, B., Origins of Life and Evolution of the Biosphere, 25, 119–140
(1995).
20. Chandler, K., Deng, F., Dillow, A., Liotta, C., and Eckert, C., Industrial & Engineering
Chemistry Research, 36 (12), 5175–5179 (1997).
21. xu, x. and Antal, M., AIChE Journal, 40 (9), 1524–1531 (1994).
22. xu, x. and Antal, M., Industrial & Engineering Chemistry Research, 36 (1), 23–41 (1997).
23. Crittendon, R. and Parsons, E., Organometallics, 13 (7), 2587–2591 (1994).
24. Diminnie, J., Metts, S., and Parsons, E., Organometallics, 14 (8), 4023–4025 (1995).
25. Kuhlmann, B., Arnett, E., and Siskin, M., Journal of Organic Chemistry, 59 (11),
3098–3101 (1994).
26. Savage, P., Li, R., and Santini J., The Journal of Supercritical Fluids, 7 (2), 135–144 (1994).
27. Lee, J. and Foster, N., The Journal of Supercritical Fluids, 9 (2), 99–105 (1996).
28. Aki, S. and Abraham, M., The Journal of Supercritical Fluids, 7 (4), 259–263 (1994).
29. Hong, G. and Spritzer, M., “Supercritical water partial oxidation,” Proceedings of the 2002
US DOE Hydrogen Energy Program Review, General Atomics, San Diego, CA, NREL/
CP-610-32405, Golden, CO (2002).
30. Johanson, N., Spritzer, M., Hong, G., and Rickman, W., “Supercritical water partial
oxidation,” Proceedings of the 2001 DOE Hydrogen Program Review, General Atomics,
San Diego, CA, NREL/CP-570-30535, Golden, CO (2001).
31. Vogel, F., DiNaro-Blanchard, J., Marrone, P., Rice, S., Webley, P., Peters, W., Smith, K.,
and Tester, J., “Critical review of kinetic data for the oxidation of methanol in supercritical water,” The Journal of Supercritical Fluids, 34, 249–286 (2005).
32. Spritzer, M., “Supercritical water partial oxidation,” Hydrogen Fuel Cells and Infrastructure
Technologies, DOE progress report, General Atomics, San Diego, CA (2003).
33. Sato, T., Adschiri, T., Arai, K., Rempel, G., and Ng, F., “Upgrading of asphalt with and
without partial oxidation in supercritical water,” Fuel, 82 (10), 1231–1240 (2003).
34. Youssef, E., Elbeshbishy, E., Hafez, H., Nakhia, G., and Charpentier, P., “Sequential
supercritical water gasification and partial oxidation of hog manure,” International
Journal of Hydrogen Energy, 35 (21), 11756–11767 (2010).
35. Gloyna, E. and Li, L., “Supercritical water oxidation: An engineering update,” Waste
Management, 13, 379 (1993).
36. Gloyna, E. and Li, L., “Supercritical water oxidation research and development update,”
Environmental Progress, 14, 182 (1995).
37. Jin, F.M., Ausushi, K., and Heiji, E., “Oxidation of garbage in supercritical water,” High
Pressure Research, 20, 525–531 (2001).
38. Goto, M., Nada, T., Ogata, A., Kodama, A., and Hirose, T., “Supercritical water oxidation for the destruction of municipal excess sludge and alcohol distillery wastewater of
molasses,” The Journal of Supercritical Fluids, 13, 277–282 (1998).
