화학공학소재연구정보센터
검색결과 : 8건
No. Article
1 On the use of ethanol for evaluating microporosity of activated carbons prepared from Polish lignite
Carrott PJM, Cansado IPP, Mourao PAM, Carrott MMLR, Louro NDB, Albiniak A, Broniek E, Jasienko-Halat M
Fuel Processing Technology, 103, 34, 2012
2 Computer analysis of the microporous structure of adsorbents made of waste biomass materials after chemical activation process with phosphoric(V) acid
Kwiatkowski M, Broniek E
Przemysl Chemiczny, 91(12), 2355, 2012
3 The effect of wetting on pore texture and methane storage ability of NaOH activated anthracite
Celzard A, Perrin A, Albiniak A, Broniek E, Mareche JF
Fuel, 86(1-2), 287, 2007
4 Graphitization, intercalation, and exfoliation of cokes and anthracites: a comparative study
Magasinski A, Furdin G, Mareche JF, Medjahdi G, Albiniak A, Broniek E, Jasienko-Halat M
Fuel Processing Technology, 79(3), 259, 2002
5 Pore structure and reactivity of chars obtained by pyrolysis of coking coals containing MoCl5
Begin D, Gerard I, Albiniak A, Broniek E, Siemieniewska T, Furdin G, Mareche JF
Fuel, 78(10), 1195, 1999
6 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
Fuel, 77(6), 509, 1998
7 Modified active carbons from precursors enriched with nitrogen functions: sulfur removal capabilities
Bimer J, Satbut PD, Bertozecki S, Boudou JP, Broniek E, Siemieniewska T
Fuel, 77(6), 519, 1998
8 Effect of iron enrichment with GIC or FeCl3 on the pore structure and reactivity of coking coal
Albiniak A, Begin D, Alain E, Furdin G, Broniek E, Kaczmarczyk J
Fuel, 76(14), 1383, 1997