1 |
Implementation of formation mechanisms in DEM simulation of the spheronization process of pharmaceutical pellets Weis D, Grohn P, Evers M, Thommes M, Garcia E, Antonyuk S Powder Technology, 378, 667, 2021 |
2 |
Contact Behavior of Microcrystalline Cellulose Pellets Depending on their Water Content Grohn P, Weis D, Thommes M, Heinrich S, Antonyuk S Chemical Engineering & Technology, 43(5), 887, 2020 |
3 |
A molding method of Na2CO3/Al2O3 sorbents with high sphericity and low roughness for enhanced attrition resistance in CO2 sorption/desorption process via extrusion-spheronization method Liu W, Wu Y, Cai TY, Xu ZK, Liu DY, Ma JL, Chen XP, Liu D Powder Technology, 366, 520, 2020 |
4 |
A contact model for the deformation behaviour of pharmaceutical pellets under cyclic loading Weis D, Krull F, Mathy J, Evers M, Thommes M, Antonyuk S Advanced Powder Technology, 30(11), 2492, 2019 |
5 |
Structurally improved, urea-templated, K2CO3-based sorbent pellets for CO2 capture Wang P, Sun J, Guo YF, Zhao CW, Li WL, Wang GD, Lei S, Lu P Chemical Engineering Journal, 374, 20, 2019 |
6 |
Porous extruded-spheronized Li4SiO4 pellets for cyclic CO2 capture Hu YC, Qu MY, Li HL, Yang YD, Yang JP, Qu WQ, Liu WQ Fuel, 236, 1043, 2019 |
7 |
A semi-industrial preparation procedure of CaO-based pellets with high CO2 uptake performance Tong XL, Liu WQ, Yang YD, Sun J, Hu YC, Chen HQ, Li QW Fuel Processing Technology, 193, 149, 2019 |
8 |
Development of extended release loxoprofen sodium multiparticulates using different hydrophobic polymers Farooq M, Shoaib MH, Yousuf RI, Qazi F, Hanif M Polymer Bulletin, 76(5), 2537, 2019 |
9 |
Spheronization of micronized theophylline anhydrate and monohydrate using a mechanical powder processor Kondo K, Kawamura M, Niwa T Powder Technology, 342, 36, 2019 |
10 |
Increasing Porosity of Molded Calcium-Based Sorbents by Glucose Templating forCyclic CO2 Capture Xu YQ, Ding HR, Luo C, Zheng Y, Li XS, Xu Y, Zhang ZW, Zhao WX, Zhang LQ Chemical Engineering & Technology, 41(5), 956, 2018 |