화학공학소재연구정보센터
검색결과 : 13건
No. Article
1 Assessment of tracing element characteristics of F-type fly and bottom ash mixture
Kumar S, Singh A, Kumar H
Energy Sources Part A-recovery Utilization and Environmental Effects, 40(24), 2967, 2018
2 Design of slurry transportation pipeline for the flow of muti-particulate coal ash suspension
Singh MK, Kumar S, Ratha D, Kaur H
International Journal of Hydrogen Energy, 42(30), 19135, 2017
3 Modeling air concentration of fly ash in Belgrade, emitted from thermal power plants TNTA and TNTB
Nikezic DP, Grsic ZJ, Dramlic DM, Dramlic SD, Loncar BB, Dimovic SD
Process Safety and Environmental Protection, 106, 274, 2017
4 Leaching characteristics of bottom ash from thermal power plants
Kumar S, Gandhi BK, Mohapatra SK
Energy Sources Part A-recovery Utilization and Environmental Effects, 38(5), 686, 2016
5 Comprehensive characterization of Indian bottom ash: Assessment of its potential utilization
Kumar S, Singh M, Mohapatra SK
Energy Sources Part A-recovery Utilization and Environmental Effects, 38(18), 2704, 2016
6 An assessment of the physical, mineral, and rheological properties of fly ash for stowing in coal mines
Kumar S, Singh G, Mohapatra SK
Energy Sources Part A-recovery Utilization and Environmental Effects, 38(20), 2955, 2016
7 Treatment of dairy wastewater by commercial activated carbon and bagasse fly ash: Parametric, kinetic and equilibrium modelling, disposal studies
Kushwaha JP, Srivastava VC, Mall ID
Bioresource Technology, 101(10), 3474, 2010
8 Effect of particle gradation on flow characteristics of ash disposal pipelines
Kumar U, Mishra R, Singh SN, Seshadri V
Powder Technology, 132(1), 39, 2003
9 The surface chemistry of leaching coal fly ash
Iyer R
Journal of Hazardous Materials, 93(3), 321, 2002
10 A novel energy-efficient process utilizing regenerative burners for the detoxification of fly ash
Ward DB, Goh YR, Clarkson PJ, Lee PH, Nasserzadeh V, Swithenbank J
Process Safety and Environmental Protection, 80(B6), 317, 2002