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A dehydration membrane reactor towards highly efficient LPG synthesis via CO2 hydrogenation

Journal Article · · Chemical Engineering Journal
Not Available
Sponsoring Organization:
USDOE
Grant/Contract Number:
FE0031909
OSTI ID:
2478191
Journal Information:
Chemical Engineering Journal, Journal Name: Chemical Engineering Journal Journal Issue: C Vol. 501; ISSN 1385-8947
Publisher:
ElsevierCopyright Statement
Country of Publication:
Switzerland
Language:
English

References (36)

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Highly selective synthesis of LPG from CO2 hydrogenation over In2O3/SSZ-13 binfunctional catalyst journal August 2021
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Membrane application in Fischer–Tropsch synthesis reactors—Overview of concepts journal October 2005
Semi-indirect synthesis of LPG from syngas: Conversion of DME into LPG journal October 2005
Direct synthesis of liquefied petroleum gas from syngas over H-ZSM-5 enwrapped Pd-based zeolite capsule catalyst journal April 2018
Novel efficient process for methanol synthesis by CO 2 hydrogenation journal January 2016
High Temperature Water Permeable Membrane Reactors for CO2 Utilization journal September 2021
An experimental study of CO2 hydrogenation into methanol involving a zeolite membrane reactor journal August 2004
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The design of a CZ@H-β-P catalyst with core shell structure and its application in LPG synthesis from syngas journal July 2018
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Synthesis of a Cu/Zn-BTC@LTA derivatived Cu–ZnO@LTA membrane reactor for CO2 hydrogenation journal October 2022
Synthesis of Na+-gated nanochannel membranes for the ammonia (NH3) separation journal February 2023
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Direct synthesis of LPG from synthesis gas over Pd–Zn–Cr/Pd-β hybrid catalysts journal December 2007
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Membrane Application in Fischer−Tropsch Synthesis to Enhance CO 2 Hydrogenation journal December 2005
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Catalytic reduction of CO 2 by H 2 for synthesis of CO, methanol and hydrocarbons: challenges and opportunities journal January 2016
Hydrogenation of CO2to LPG over CuZnZr/MeSAPO-34 catalysts journal January 2020
The high-yield direct synthesis of dimethyl ether from CO2 and H2 in a dry reaction environment journal January 2021
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