471 - 471 |
Third Symposium on Coal Structure - Zakopane, Poland, 1996 Bylicki A, Djega-Mariadassou G |
473 - 478 |
A novel process for preparation of active carbon from sapropelitic coals Bodoev NV, Gruber R, Kucherenko VA, Guet JM, Khabarova T, Cohaut N, Heintz O, Rokosova NN |
479 - 485 |
Exfoliation process and elaboration of new carbonaceous materials Furdin G |
487 - 493 |
Transformation of sulfur during pyrolysis and hydropyrolysis of coal Chen HK, Li BQ, Yang JL, Zhang BJ |
495 - 502 |
Influence of anthracite pretreatment in the preparation of activated carbons Daulan C, Lyubchik SB, Rouzaud JN, Beguin F |
503 - 507 |
The influence of mineral material upon the coking characteristics of coal Radko T, Mianowski A |
509 - 517 |
Porosity development in steam activated chars from mixtures of coal tar pitch with graphite-FeCl3 intercalation compounds Siemieniewska T, Albiniak A, Broniek E, Kaczmarczyk J, Jankowska A, McEnaney B, Chen XS, Alain E, Furdin G, Begin D |
519 - 525 |
Modified active carbons from precursors enriched with nitrogen functions: sulfur removal capabilities Bimer J, Satbut PD, Bertozecki S, Boudou JP, Broniek E, Siemieniewska T |
527 - 532 |
Influence of the origin of chars, produced from lignite by different methods, on features of their activation process Shchipko ML, Kuznetsov BN |
533 - 541 |
Pyrolysis of coal tar pitch mixed in the presence of a graphite intercalation compound: a kinetic study Alain E, Begin D, Pajak J, Furdin G, Mareche JF |
543 - 547 |
The chemistry of carbon surfaces Lahaye J |
549 - 556 |
Cheap adsorbent. Part 1: Active cokes from lignites and improvement of their adsorptive properties by mild oxidation Finqueneisel G, Zimny T, Albiniak A, Siemieniewska T, Vogt D, Weber JV |
557 - 562 |
Computer simulations of adsorption processes in carbonaceous adsorbents McEnaney B, Mays TJ, Chen XS |
563 - 569 |
A study of carbonaceous char oxidation in air by semi-quantitative FTIR spectroscopy Koch A, Krzton A, Finqueneisel G, Heintz O, Weber JV, Zimny T |
571 - 575 |
Electrochemical polarization of activated carbons for the reversible sorption of lithium ions Frackowiak E |
577 - 580 |
Influence of thermaooxidative treatment on the surface properties of anthracite Budinova T, Petrov N, Minkova V, Razvigorova M |
581 - 584 |
Structure and properties of humic acids obtained from thermo-oxidised brown coal Butuzova L, Krzton A, Bazarova O |
585 - 590 |
Thermal and chemical modifications on a low rank coal by iron addition in swept fixed bed hydropyrolysis Mastral A, Perez-Surio MJ, Palacios J |
591 - 599 |
Reduction and reductive alkylation of coals using deuterium containing compounds Koztowski M, Wachowska H |
601 - 606 |
Effects of FeCl3 (intercalated or not in graphite) on the pyrolysis of coal or coal tar pitch Boudou JP, Begin D, Alain E, Furdin G, Mareche JF, Albiniak A |
607 - 611 |
Pyrolysis of coal tar pitch with graphite-MoCl5 intercalation compound Gerard I, Begin D, Furdin G, Mareche JF |
613 - 624 |
Modification of the surface properties of an activated carbon by oxygen plasma treatment Garcia AB, Martinez-Alonso A, Leon CALY, Tascon JMD |
625 - 630 |
Development of macroporosity in activated carbons by effect of coal preoxidation and burn-off Pis JJ, Parra JB, de la Puente G, Rubiera F, Pajares JA |
631 - 637 |
Low cost adsorbents for low temperature cleaning of flue gases Rubio B, Izquierdo MT |
639 - 643 |
The effect of water on the yield and structure of the products of brown coal pyrolysis and hydrogenation Butuzova L, Razvigorova M, Krzton A, Minkova V |
645 - 648 |
The effect of coal metamorphism on methane desorption Ceglarska-Stefanska G, Brzoska K |
649 - 653 |
The use of ultrasonic wave propagation parameters in the characterization of extracts from coals Krzesinska M |