1 |
Reactivation of spent FCC catalyst by mixed acid leaching for efficient catalytic cracking Lu G, Lu X, Liu P Journal of Industrial and Engineering Chemistry, 92, 236, 2020 |
2 |
Production of high purity rare earth mixture from iron-rich spent fluid catalytic cracking (FCC) catalyst using acid leaching and two-step solvent extraction process Nguyen LP, Pham YTH, Ngo PT, Tran TV, Tran LV, Le NTH, Nguyen LH, Dang TT, Nguyen DA, Wenzel M, Hartmann D, GLoe K, Weigand JJ, Kretschmer K Korean Journal of Chemical Engineering, 35(5), 1195, 2018 |
3 |
A novel nickel catalyst derived from layered double hydroxides (LDHs) supported on fluid catalytic cracking catalyst residue (FC3R) for rosin hydrogenation Huang YY, Chen XP, Deng YF, Zhou D, Wang LL Chemical Engineering Journal, 269, 434, 2015 |
4 |
Spent FCC catalyst: Potential anti-corrosive and anti-biofouling material Trivedi PA, Parmar PR, Parikh PA Journal of Industrial and Engineering Chemistry, 20(4), 1388, 2014 |
5 |
Investigation on corrosion control of mild steel buried in soil by spent FCC catalyst coating Trivedi PA, Solanki NM, Butani N, Parikh PA Journal of Industrial and Engineering Chemistry, 20(4), 2264, 2014 |
6 |
A comparative study of liquid product on non-catalytic and catalytic degradationof waste plastics using spent FCC catalyst Lee KH, Shin DH Korean Journal of Chemical Engineering, 23(2), 209, 2006 |
7 |
Stabilization treatment for reutilization of spent refinery catalyst into value-added product Sun DD Energy Sources, 25(6), 607, 2003 |
8 |
Catalytic Degradation of Waste Polyolefinic Polymers using Spent FCC Catalyst with Various Experimental Variables Lee KH, Shin DH Korean Journal of Chemical Engineering, 20(1), 89, 2003 |
9 |
Thermal and Catalytic Degradation of Waste High-density Polyethylene (HDPE) Using Spent FCC Catalyst Lee KH, Jeon SG, Kim KH, Noh NS, Shin DH, Park J, Seo Y, Yee JJ, Kim GT Korean Journal of Chemical Engineering, 20(4), 693, 2003 |