Showing results (11-20 of 24) with videos related to
Sort By:
Pageof 3
Journal of Colloid and Interface Science|December 23, 2015
Novel nanoporous MnOx (x=∼1.75) sorbent for the removal of SO2 and NH3 made from MnC2O4·2H2OXiaowei Ma, Nicholas Campbell, Lénaïc Madec, et al.ACS Combinatorial Science|December 1, 2011
SO2 and NH3 gas adsorption on a ternary ZnO/CuO/CuCl2 impregnated activated carbon evaluated using combinatorial methodsJennifer V Romero, Jock W H Smith, Braden M Sullivan, et al.Journal of Colloid and Interface Science|March 24, 2018
Role of CuO in improving NH3 and SO2 capture on nanoporous Fe2O3 sorbentsXiaowei Ma, Xiuyun Zhao, Aaron Liu, et al.Journal of Hazardous Materials|August 24, 2010
A combinatorial approach to screening carbon based materials for respiratory protectionJ V Romero, J W H Smith, C L White, et al.ACS Combinatorial Science|January 5, 2013
Evaluation of the SO(2) and NH(3) gas adsorption properties of CuO/ZnO/Mn(3)O(4) and CuO/ZnO/NiO ternary impregnated activated carbon using combinatorial materials science methodsJennifer V Romero, Jock W H Smith, Braden M Sullivan, et al.Journal of Hazardous Materials|September 7, 2012
The effect of co-impregnated acids on the performance of Zn-based broad spectrum respirator carbonsJ W H Smith, J V Romero, T R Dahn, et al.Journal of Colloid and Interface Science|October 14, 2009
Investigation of copper oxide impregnants prepared from various precursors for respirator carbonsJ W H Smith, P Westreich, A J Smith, et al.British Journal of Anaesthesia|October 13, 2006
Continuous peripheral nerve block in combat casualties receiving low-molecular weight heparinC C Buckenmaier, C H Shields, A A Auton, et al.ACS Combinatorial Science|October 8, 2011
Gas adsorption properties of the ternary ZnO/CuO/CuCl(2) impregnated activated carbon system for multigas respirator applications assessed through combinatorial methods and dynamic adsorption studiesJennifer V Romero, Jock W H Smith, Braden M Sullivan, et al.Journal of Hazardous Materials|May 14, 2010
The investigation of copper-based impregnated activated carbons prepared from water-soluble materials for broad spectrum respirator applicationsJ W H Smith, P Westreich, H Abdellatif, et al.Pageof 3