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184. Aguado, S.; Coronas, J.; Santamaría, J. Use of Zeolite Membrane Reactors for the Combustion of VOCs Present in Air at Low Concentrations. Chem. Eng. Res. Des. 2005, 83, 295–301. 185. Tanaka, K.; Yoshikawa, R.; Ying, C.; Kita, H.; Okamoto, K. Application of zeolite membranes to esterification reactions. Catal. Today 2001, 67, 121–125. 186. Tanaka, K.; Yoshikawa, R.; Ying, C.; Kita, H.; Okamoto, K. Application of zeolite T membrane to vapor-permeation-aided esterification of lactic acid with ethanol. Chem. Eng. Sci. 2002, 57, 1577–1584. 187. Salomón,M.A.;Coronas,J.;Menéndez,M.;Santamaría,J.SynthesisofMTBEinzeolite membrane reactors. Appl. Catal. A 2000, 200, 201–210. 188. Pera-Titus,M.;Llorens,J.;Cunill,F.TechnicalandeconomicalfeasibilityofzeoliteNaA membrane-based reactors in liquid-phase etherification reactions. Chem. Eng. Process. Process Intensif. 2009, 48, 1072–1079. 189. Aresta,M.;Galatola,M.Lifecycleanalysisappliedtotheassessmentoftheenvironmental impact of alternative synthetic processes. The dimethylcarbonate case: Part 1. J. Clean Prod. 1999, 7, 181–193. 190. Aresta,M.;Dibenedetto,A.;Tommasi,I.DevelopingInnovativeSyntheticTechnologies of Industrial Relevance Based on Carbon Dioxide as Raw Material. Energy Fuels 2001, 15, 269–273. 191. Diban, N.; Urtiaga, A.M.; Ortiz, I.; Ereña, J.; Bilbao, J.; Aguayo, A.T. Influence of the membrane properties on the catalytic production of dimethyl ether with in situ water removal for the successful capture of CO2. Chem. Eng. J. 2013, 234, 140–148. 192. Olah, G.A.; Goeppert, A.; Prakash, G.K.S. Chemical Recycling of Carbon Dioxide to Methanol and Dimethyl Ether: From Greenhouse Gas to Renewable, Environmentally Carbon Neutral Fuels and Synthetic Hydrocarbons. J. Org. Chem. 2009, 74, 487–498. 193. Aguayo,A.T.;Ereña,J.;Sierra,I.;Olazar,M.;Bilbao,J.Deactivationandregeneration of hybrid catalysts in the single-step synthesis of dimethyl ether from syngas and CO2. Catal. Today 2005, 106, 265–270. 194. Diban, N.; Urtiaga, A.M.; Ortiz, I.; Ereña, J.; Bilbao, J.; Aguayo, A.T. Improved Performance of a PBM Reactor for Simultaneous CO2 Capture and DME Synthesis. Ind. Eng. Chem. Res. 2014, 53, 19479–19487. 195. Rohde,M.P.;Unruh,D.;Schaub,G.MembraneapplicationinFischer-Tropschsynthesis reactors—Overview of concepts. Catal. Today 2005, 106, 143–148. 196. Rohde,M.P.;Schaub,G.;Khajavi,S.;Jansen,J.C.;Kapteijn,F.Fischer-Tropschsynthesis with in situ H2O removal—Directions of membrane development. Microporous Mesoporous Mater. 2008, 115, 123–136. 197. Espinoza,R.L.;duToit,E.;Santamaria,J.;Menendez,M.;Coronas,J.;Irusta,S.Useof membranes in Fischer-Tropsch reactors. In Studies in Surface Science and Catalysis; Avelino Corma, F.V.M.S.M., José Luis, G.F., Eds.; Elsevier: Amsterdam, The Netherlands, 2000; Volume 130, pp. 389–394. 67PDF Image | Zeolite Catalysis
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