591 - 598 |
Pitch pyrolysis kinetics: isothermal heat treatment experiments and model Py X, Daguerre E |
599 - 606 |
Characterization of iron-bearing minerals in Giril lignite from Rajasthan and study of their decomposition during combustion using Fe-57 Mossbauer spectroscopy Verma HC, Tripathi RP |
607 - 616 |
Measurements and modelling of wax formation in diesel fuels Coutinho JAP, Dauphin C, Daridon JL |
617 - 626 |
The porous structure of bituminous coal chars and its influence on combustion and gasification under chemically controlled conditions Liu G, Benyon P, Benfell KE, Bryant GW, Tate AG, Boyd RK, Harris DJ, Wall TF |
627 - 633 |
Modeling the fragmentation of non-uniform porous char particles during pulverized coal combustion Liu G, Wu H, Gupta RP, Lucas JA, Tate AG, Wall TF |
635 - 643 |
Activated carbons from bituminous coal: effect of mineral matter content Linares-Solano A, Martin-Gullon I, de Lecea CSM, Serrano-Talavera B |
645 - 650 |
Structure of impregnated active carbons produced with almond shells - influence of impregnation methodology Ferraz MCMA, Monteiro JLC |
651 - 658 |
Adsorption and reduction of NO over activated coke at low temperature Zhu ZP, Liu ZY, Liu SJ, Niu HX |
659 - 670 |
New concept for the calculation of the trace element affinity in coal Klika Z, Kolomaznik I |
671 - 683 |
Use of softwood bark charcoal as a modifier for road bitumen Chebil S, Chaala A, Roy C |
685 - 691 |
Attenuated total reflectance infrared microspectroscopy of coal Thomasson J, Coin C, Kahraman H, Fredericks PM |
693 - 700 |
Experimental determination of high-temperature elemental losses from biomass slag Thy P, Lesher CE, Jenkins BM |
701 - 716 |
Kinetic parameters for coal pyrolysis at low and high heating rates - a comparison of data from different laboratory equipment Wiktorsson LP, Wanzl W |
717 - 718 |
A means of obtaining a full kinetic rate expression for the oxidation of a solid substrate from a single criticality data point. Part 3. Possible application to cellulosics Jones JC |