1 |
Influence of nickel precursors on the properties and performance of Ni impregnated zeolite 5A and 13X catalysts in CO2 methanation Wei LY, Haije W, Kumar N, Peltonen J, Peurla M, Grenman H, de Jong W Catalysis Today, 362, 35, 2021 |
2 |
3D printed versus spherical adsorbents for gas sweetening Middelkoop V, Coenen K, Schalck J, Annaland MV, Gallucci F Chemical Engineering Journal, 357, 309, 2019 |
3 |
A model-based approach for the evaluation of new zeolite 13X-based adsorbents for the efficient post-combustion CO2 capture using P/VSA processes Nikolaidis GN, Kikkinides ES, Georgiadis MC Chemical Engineering Research & Design, 131, 362, 2018 |
4 |
13X Ex-Cu zeolite performance characterization towards H2S removal for biogas use in molten carbonate fuel cells Barelli L, Bidini G, Micoli L, Sisani E, Turco M Energy, 160, 44, 2018 |
5 |
CO2 separation from offshore natural gas in quiescent and flowing states using 13X zeolite Chen SJ, Tao ZC, Fu Y, Zhu M, Li WL, Li XD Applied Energy, 205, 1435, 2017 |
6 |
Properties of AC and 13X zeolite modified with CuCl2 and Cu(NO3)(2) in phosphine removal and the adsorptive mechanisms Xu XW, Huang GQ, Qi S Chemical Engineering Journal, 316, 563, 2017 |
7 |
Removal of toluene from industrial gas over 13X zeolite supported catalysts by adsorption-plasma catalytic process Yi HH, Yang X, Tang XL, Zhao SZ, Wang JG, Cui XX, Feng TC, Ma YQ Journal of Chemical Technology and Biotechnology, 92(9), 2276, 2017 |
8 |
Gas. and water vapor transport properties of mixed matrix membranes containing 13X zeolite Wolinska-Grabczyk A, Kubica P, Jankowski A, Wojtowicz M, Kansy J, Wojtyniak M Journal of Membrane Science, 526, 334, 2017 |
9 |
Cryogenic pressure temperature swing adsorption process for natural gas upgrade Moreira MA, Ribeiro AM, Ferreira APP, Rodrigues AE Separation and Purification Technology, 173, 339, 2017 |
10 |
Simulation and optimization of a 6-step dual-reflux VSA cycle for post-combustion CO2 capture Khurana M, Farooq S Chemical Engineering Science, 152, 507, 2016 |