화학공학소재연구정보센터
검색결과 : 16건
No. Article
1 Tuning the product distribution during the catalytic pyrolysis of waste tires: The effect of the nature of metals and the reaction temperature
Osorio-Vargas P, Menares T, Lick ID, Casella ML, Romero R, Jimenez R, Arteaga-Perez LE
Catalysis Today, 372, 164, 2021
2 Comparative assessment of various gasification fuels with waste tires for hydrogen production
Hasan A, Dincer I
International Journal of Hydrogen Energy, 44(34), 18818, 2019
3 Co-pyrolysis and hyrdogenation of waste tires and thar coal blends
Khan A, Akhtar J, Shahzad K, Sheikh N, Munir S
Energy Sources Part A-recovery Utilization and Environmental Effects, 39(15), 1664, 2017
4 Wicking of light hydrophobic liquid phase from water by pulverized rubber: Theoretical and experimental analyses
Boglaienko D, Tansel B
Journal of Hazardous Materials, 325, 189, 2017
5 Co-pyrolysis of waste tire/coal mixtures for smokeless fuel, maltenes and hydrogen-rich gas production
Bicakova O, Straka P
Energy Conversion and Management, 116, 203, 2016
6 Desulfurization of pyrolysis fuels obtained from waste: Lube oils, tires and plastics
Al-Lal AM, Bolonio D, Llamas A, Lapuerta M, Canoira L
Fuel, 150, 208, 2015
7 Demonstration of the waste tire pyrolysis process on pilot scale in a continuous auger reactor
Martinez JD, Murillo R, Garcia T, Veses A
Journal of Hazardous Materials, 261, 637, 2013
8 Adsorbents obtained from waste tires for NO2 removal under dry conditions at room temperature
Hofman M, Pietrzak R
Chemical Engineering Journal, 170(1), 202, 2011
9 SOME OBSERVATIONS FROM STUDIES OF RF PLASMA PYROLYSIS OF WASTE TIRES
Tang L, Huang HT
Chemical Engineering Communications, 197(12), 1541, 2010
10 Factors influencing the quality of pyrolytic oil from used tires
Cao Q, Jin LE, Bao WR, Lu YK
Energy Sources Part A-recovery Utilization and Environmental Effects, 30(9), 833, 2008