Part 1, Pages 1 - 62, 3.19 MB |
1. |
Evaluation, Engineering and Development of Advanced Cyclone Processes |
001 |
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Durney, T. E., Cook, C. A. Coal Technology Corporation, Ferris, D. D. - ICF Kaiser Engineers, Inc. Devernoe, A. L. - Intermagnetics General Corporation |
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2. |
Engineering Development of Advanced Physical Fine Coal Cleaning Technologies – Froth Flotation. |
009 |
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Ferris, D.D., Bencho, J.R. - ICF Kaiser Engineers, Inc. |
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3. |
Engineering Development of Advanced Physical Fine Coal Cleaning for Premium Fuel Applications |
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Jha, M.C., Smit, F.J., Shields, G.L., Mora, N. - Almax R&D Center/Entech Global Inc. |
017 |
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Technology Base Activities Session |
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4. |
Controlling Air Toxics through Advanced Coal Preparation |
025 |
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Straszheim, W. E., Buttermore, W. H., Pollard, J. L. - Ames Laboratory |
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5. |
Appalachian Clean Coal Technology Consortium |
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Kutz, K.B., Yoon, R.-H. - Virginia Polytechnic Institute and State University |
033 |
6. |
Production of Compliance Coal from Illinois Basin Coals |
039 |
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Hadley, S. - Praxis Engineers |
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7. |
EPRI Upgraded –Coal Interest Group |
041 |
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Weber, W. - Electric Power Research Institute |
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8. |
Oxidative Stabilization of a Dried Low-Rank Coal |
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Schroeder, K. - U.S. Department of Energy - Pittsburgh Energy Technology Center |
043 |
9. |
The Kinetics of Fossil Resin Extraction from a Flotation Concentrate |
045 |
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Li, L., Yu, Q., Miller, J.D. University of Utah |
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High Efficiency Preparation Session |
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10. |
Bench-Scale Testing of a Micronized Magnetite, Fine-Coal Cleaning Process |
053 |
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Suardini, P.J. - Custom Coals, International |
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Part 2, Pages 63 - 168, 4.53 MB |
11. |
POC-Testing of Oil Agglomeration Techniques and Equipment for Recovery and Cleaning of Fine Coal from Fine Coal Processing Streams |
063 |
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Ignasiak, L. - Alberta Research Council |
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12. |
POC-Scale Testing of a Dry Triboelectrostatic Separation for Fine Coal Cleaning |
065 |
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Yoon, R. –H., Luttrell, G.H., Adel, G.T. - Virginia Polytechnic Institute and State University |
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13. |
Development, Testing, and Demonstration of an Optimal Fine Coal Cleaning Circuit |
073 |
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Mishra, M. - Cyprus Emerald Resources. Placha, M. - Allied Operations, Bethell, P. - Allied Resources, Humphris, D., Hadley, S. - Praxis Engineers, Inc. |
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14. |
A Fine Coal Circuitry Study Using Column Flotation and Gravity Separation |
079 |
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Honaker, R.Q. - Southern Illinois University |
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15. |
Improving the Performance of Conventional and Column Froth Flotation Cells |
081 |
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Arnold, B.J. - CQ, Inc. |
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16. |
Integration of Thickner Underflow into Thermal Dryer Circuit |
089 |
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Breault, R.W. Tecogen, Inc. |
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17. |
POC-Scale Testing of an Advanced Fine Coal Dewatering Equipment/Technique |
091 |
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Groppo, J.G., Parekh, B.K., - University of Kentucky/CAER. Rawls, P. - U.S. Department of Energy Pittsburgh Energy Technology Center |
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18. |
Improvement of Storage, Handling, and Transportability of Fine Coal |
099 |
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Maxwell, Jr., R.C., - Energy International Corporation |
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19. |
Bench-Scale Testing of the Granuflow Process for Fine Coal Dewatering and Reconstitution Results Using a High-G Solid-Bowl Centrifuge. |
101 |
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Wen, G., - U.S. Department of Energy, Pittsburgh Energy Technology Center |
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Air Toxics Session |
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20. |
Characterization of Air Toxics from a Laboratory Coal-Fired Combustor and Utility-Scale Power Plants |
103 |
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Sverdrup, G. - Battelle Columbus |
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21. |
Characterizing Mercury Emissions from a Coal-Fired Power Plant Utilizing a Venturi Wet FGD System |
105 |
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Bush, P.V., Fowler, W.K. - Southern Research Institute, Dismukes, E.B. - Consultant |
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22. |
A Study of Toxic Emissions from a Coal-Fired Gasification Plant |
113 |
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Williams, A., Behrens, G. - Radian Corporation |
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23. |
Auditing of Sampling Methods for Air Toxics at Coal-Fired Power Plants |
121 |
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Agbede, R.O., Clements, J.L., Grunebach, M.G., Khosah, R.P. - Advanced Technology Systems, Inc., Bruffey, C., Hershey, D.A. - International Technology Corporation |
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24. |
Evaluation of Activated Carbon for Control of Mercury from Coal-Fired Boilers |
129 |
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Miller, S., Laudal, D.L., Dunham, G. - University of North Dakota/EERC |
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25. |
Real-Time Analysis of Total, Elemental, and Total Speciated Mercury |
137 |
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Schlager, R.J., Wilson, K.G., Sappey, A.D. - ADA Technologies, Inc. |
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26. |
Evaluation of Mercury Speciation by EPA (Draft) Method 29. |
143 |
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Laudal, D.L., Heidt, M.K. - University of North Dakota/EERC, Nott, B. - Electric Power Research Institute |
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27. |
Measurement of Mercury and Other Trace Metals In Combustion Gases |
151 |
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Piper, L. - Physical Sciences, Inc. |
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Air Toxics and CO2 Control Session |
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28. |
Laboratory-Scale Evaluation of Various Sampling and Analytical Methods for Determining Mercury Emissions from Coal-Fired Power Plants |
153 |
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Agbede, R.O., Bochan, A.J., Clements, J.L., Khosah, R.P. - Advanced Technology Systems, Inc. |
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29. |
Comparing and Assessing Different Measurement Techniques for Mercury in Coal Synthesis Gas |
161 |
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Maxwell, D.P., Richardson, C.F. - Radian Corporation |
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Part 3, Pages 169 - 252, 5.04 MB |
30. |
IEA-Full Fuel Cycle Study |
169 |
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Bergman, P. - U.S. Department of Energy/Pittsburgh Energy Technology Center |
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31. |
The Use of Flue Gas for the Growth of Microalgae Biomass |
171 |
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Zeller, K.G., Kadam, K.L., Heacox, D.A., Kerbaugh, D.W., Sheehan, J. - National Renewable Energy Laboratory |
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32. |
Observations of CO2 Clathrate Hydrate Formation and Dissolution under Deep-Ocean Disposal Conditions |
179 |
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Warzinski, R.P., Cugini, A.V. - U.S. Department of Energy/Pittsburgh Energy Technology Center, Holder, G.D. - University of Pittsburgh |
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33. |
Environmental Impacts of Ocean Disposal of CO2 |
183 |
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Adams, E., Herzog, H., Auerbach, D., Caulfield, J. - Massachusetts Institute of Technology |
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34. |
Disposal of Carbon Dioxide in Aquifers in the U.S |
191 |
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Winter, E.M. - Burns and Roe Services Corporation, Bergman, P.D., - U.S. Department of Energy/Pittsburgh Energy Technology Center |
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35. |
CO2 Capture and Biofuels Production with Microalgae |
199 |
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Benemann, J.R. - University of California at Berkeley |
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36. |
Biological Hydrogen Production |
207 |
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Benemann, J.R. - University of California at Berkeley |
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37. |
Catalysts for the Reduction of SO2 to Elemental Sulfur |
215 |
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Jin, Y., Yu, Q. Q., Chang, S.G. - Lawrence Berkeley Laboratory |
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38. |
High-Efficiency SO2 Removal in Utility FGD Systems |
221 |
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Phillips, J.L., Gray, S., DeKraker, D., Blythe, G.M. - Radian Corporation |
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Superclean Emissions Session |
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39. |
Fundamental Mechanisms in Flue Gas Conditioning |
229 |
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Snyder, T.R., Bush, P.V. - Southern Research Institute |
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40. |
Enhanced Performance of Electrostatic Precipitators through Chemical Modification of Particle Receptivity and Cohesion |
237 |
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Durham, M.D., Baldrey, K.E., Bustard, C.J., Ebner, T.G., Sjostrom, S.M., Slye, R.H., - ADA Technologies, Inc. |
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41. |
Non Toxic Additives for Improved Fabric Filter Performance |
245 |
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Baldrey, K.E., Bustard, C.J., Ebner, T.G., Sjostrom, S.M., Slye, R.H., - ADA Technologies, Inc. |
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Part 4, Pages 253 - 342, 4.57 MB |
42. |
A Generic NOx Control Intelligent System (GNOCIS) for Coal-Fired Power Plants |
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Sorge, J.N. - Southern Company Services |
253 |
43. |
The Integrated Environmental Control Model |
255 |
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Rubin, E.S., Berkenpas, M.B., Kalagnanam. - Carnegie Mellon University |
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44. |
Hollow Fiber Contractors for Simultaneous COx/NOx Removal |
263 |
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Bhown, A.S., Pakala, N.R., Riggs, T., Tagg, T. - SRI International, Sirkar, K.K., Majumdar, S., Bhaumik, D. - New Jersey Institute of Technology |
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45. |
Development of the Advanced Coolside Sorbent Injection Process for SO2 Control |
271 |
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Withum, J.A., Maskew, J.T., Rosenhoover, W.A., Stouffer, M.R., Wu, M.M. - Consol, Inc. |
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46. |
EPRI’s Environmental Control Technology Center |
287 |
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Moser, R. - Electric Power Research Institute |
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47. |
Investigation of Combined SO2/NOx Removal by Ceria Sorbents |
289 |
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Akyurtlu, A. - Hampton University |
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Combustion 2000 Session |
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48. |
Pushing the Pulverized Coal Envelope with LEBS |
291 |
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Regan, J.W., Borio, R.W., Palkes, M., Mirolli, M.D. - Combustion Engineering, Inc., Wesnor, J.D. - ABB Environmental Systems, Bender, D.J. - Raytheon Engineers & Constructors, Inc. |
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49. |
Update of Progress for Phase II of B&W’s Advanced Coal-Fired Low-Emission Boiler System |
305 |
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McDonald, D.K., Madden, D.A., Rodgers, L.W., Sivy, J.L. - Babcock & Wilcox |
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50. |
Engineering Development of a Low-Emission Boiler System |
313 |
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Beittel, R. - Riley Stoker Corporation |
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51. |
Engineering Development of a High-Performance Power Generating System |
315 |
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Seery, D.J. - United Technologies Research Center |
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52. |
Development of a High-Performance, Coal-Fired Power Generating System with a Pyrolysis Gas and Char-Fired High-Temperature Furnace |
317 |
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Shenker, J. - Foster Wheeler Development Corporation |
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Advanced Research Session |
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53. |
The Physics of Coal Liquid Slurry Atomization |
325 |
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Chigier, N. - Carnegie Mellon University |
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54. |
Fundamental Study of Ash Formation and Deposition: Effect of Reducing Stoichiometry |
327 |
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Helble, J.J., Bool, L.E., Kang, S.G. - PSI Technologies, Sarofim, A.F., Zeng, T. - Massachusetts Institute of Technology, Huffman, G.P., Shah, N. - University of Kentucky, Peterson, T.W. - University of Arizona |
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55. |
Deposit Growth and Property Development in Coal-Fired Furnaces |
335 |
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Baxter, L. - Sandia national Laboratories |
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Part 5, Pages 343 - 452, 4.40 MB |
56. |
Characterizing the Structure of Ash Deposits From Coal Combustors |
343 |
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Ramer, E., Martello, D.V. - U.S. Department of Energy/Pittsburgh Energy Technology Center |
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Commercial and Industrial Combustion Systems Session |
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57. |
Development/Testing of an Industrial-Scale Coal-Fired Combustion System |
345 |
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Zauderer, B. - Coal Tech Corporation |
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58. |
Microfine Coal Firing Results From a Retrofit Gas/Oil-Designed Industrial Boiler |
347 |
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Patel, R., Borio, R.W., Liljedahl, G. - ABB Combustion Engineering, Inc., Miller, B.G., Scaroni, A.W. - Pennsylvania State University/EFRC, McGowan, J.G. - University of Massachusetts |
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59. |
Development/Testing of a Commercial-Scale Coal-Fired Combustion System |
355 |
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Chandran, R.R. - Manufacturing and Technology Cong., Int’l |
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Alternative Fuels Session |
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60. |
Developing Coal-Based Fuel Technologies for DOD Facilities |
357 |
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Scaroni, A.W. - Pennsylvania State University |
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61. |
Combustion Characterization of Beneficiated Coal-Based Fuels |
359 |
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Chow, O.K., Levasseur, A.A. - ABB Combustion Engineering, Inc. |
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62. |
Development of a Phenomenological Model for Coal Slurry Atomization |
367 |
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Dooher, J.P. - Adelphi University |
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63. |
Krakow Clean Fossil Fuels and Energy Efficiency Project |
375 |
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Butcher, T.A., Pierce, B.L. - Brookhaven National Laboratory |
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64. |
Studies of the Combustion of Coal/Refuse Derived Fuels Using Thermogravimetric-Fourier Transform Infrared-Mass Spectrometry |
383 |
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Lu, H., Li, J., Lloyd, W.G., Riley, J.T., Pan, W.-P. - Western Kentucky University |
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65. |
Combustion Characterization of Coal Fines |
391 |
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Masudi, H. - Prairie View A&M University |
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66. |
The Effect of Coal Beneficiation of the Rheology/Atomization of Coal-Water Slurries |
393 |
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Ohene, F. Grambling State University |
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Environmental Control Poster Session |
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67. |
Controlling Mercury and Selenium Emissions from Coal-Fired Combustors Using a Novel Regenerable Natural Product |
395 |
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Schlager, R.J., Marmaro, R.W., Roberts, D.L. - ADA Technologies, Inc. |
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68. |
Interactions between Trace Metals, Sodium, and Sorbents in Combustion |
401 |
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Wendt, J.O.L. - University of Arizona |
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Coal Utilization Poster Session |
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69. |
Low Cost Synthesis of Nanocrystalline SIC With Fullerene Precursors |
403 |
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Anha, S. - Materials and Electrochemical Research Corporation |
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70. |
Materials Support for the Development of a High-Temperature Advanced Furnace |
405 |
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Breder, K. - Oak Ridge National Laboratory |
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71. |
Investigation of the Effect of the Coal Particle Sizes on the Interfacial and Rheological Properties of Coal-Water Slurry Fuels |
407 |
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Kihm, K.D, Deignan, P. - Texas A&M University |
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72. |
Recent Advances in the use of Synchrotron Radiation for the Analysis of Coal Combustion Products |
415 |
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Manowitz, B. - Brookhaven National Laboratory |
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73. |
Development of a Rotary Combustor for Refiring Pulverized Coal Boilers |
423 |
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Virr, M.J. - Spinheat, Ltd. |
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74. |
Fluid Dynamics of Ash Deposition |
425 |
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Shaffer, F. - U.S. Department of Energy/Pittsburgh Energy Technology Center |
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75. |
Particulate Emission Abatement for Krakow Boiler Houses |
427 |
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Wysk, S.R. - LSR Technologies, Inc., Surowka, J. - Polish Foundation for Energy Efficiency, Litke, M. - Eco Install |
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