화학공학소재연구정보센터
검색결과 : 10건
No. Article
1 Partial substitution of manganese with cerium in SrMnO3 nano-perovskite catalyst. Effect of the modification on the catalytic combustion of dilute acetone
Rezlescu N, Rezlescu E, Popa PD, Doroftei C, Ignat M
Materials Chemistry and Physics, 182, 332, 2016
2 Scandium substituted nickel-cobalt ferrite nanoparticles for catalyst applications
Rezlescu N, Rezlescu E, Popa PD, Doroftei C, Ignat M
Applied Catalysis B: Environmental, 158, 70, 2014
3 Nanostructured GdAlO3 perovskite, a new possible catalyst for combustion of volatile organic compounds
Rezlescu N, Rezlescu E, Popa PD, Doroftei C, Ignat M
Journal of Materials Science, 48(12), 4297, 2013
4 Preparation and characterization of spinel-type MeFe2O4 (Me = Cu, Cd, Ni and Zn) for catalyst applications
Rezlescu N, Rezlescu E, Popa PD, Popovici E, Doroftei C, Ignat M
Materials Chemistry and Physics, 137(3), 922, 2013
5 Effect of copper oxide content on intrinsic properties of MgCuZn ferrite
Rezlescu E, Rezlescu N, Popa PD, Rezlescu L, Pasnicu C, Craus ML
Materials Research Bulletin, 33(6), 915, 1998
6 The influence of slurry concentration on the theoretical filtration efficiency of a transversal high gradient magnetic filter cell with bounded flow field
Rotariu O, Rezlescu N, Murariu V, Badescu V
Powder Technology, 96(1), 42, 1998
7 Experimental observations on the saturation mass in the capture process of an ordered transverse high gradient magnetic separation matrix
Iacob G, Rezlescu N
Powder Technology, 97(3), 233, 1998
8 Experimental Results on an Axial High-Gradient Magnetic Filter Cell with Bounded Flow-Field
Badescu V, Murariu V, Rotariu O, Rezlescu N
Powder Technology, 90(2), 131, 1997
9 Numerical Results and Designing Aspects Concerning the HGMF Filtering Cells with Bound Flow-Field
Badescu V, Rotariu O, Murariu V, Rezlescu N
International Journal of Multiphase Flow, 22(4), 797, 1996
10 Capture Modeling for an Axial High-Gradient Magnetic Separation Filter with a Bounded Flow-Field
Rezlescu N, Murariu V, Rotariu O, Badescu V
Powder Technology, 83(3), 259, 1995