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Junrong Yue, Duo Sun
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Isolated metal sites in Cu-Zn-Y/Beta for direct and selective butene-rich C3+ olefin formation from ethanol
10.1021/acscatal.1c02177 · 2021
Sustainability and environmental impact of ethanol as a biofuel
10.1515/revce-2013-0024 · 2014
Recent advances in tailor-made catalysts for the direct conversion of ethanol to butadiene
10.1016/j.fuel.2024.131872 · 2024
Renewable diesel and bio-aromatics production from waste cooking oil using ethanol as a hydrogen donor in deoxygenation reaction
10.1016/j.cej.2025.161170 · 2025
Recent developments in (bio)ethanol conversion to fuels and chemicals over heterogeneous catalysts
10.1016/j.biortech.2024.131230 · 2024
A fundamental level understanding of the oxidative steam reforming of ethanol (OSRE) reaction: A review
10.1016/j.ijhydene.2022.12.147 · 2023
Recent advances in Ni-based catalysts for the electrochemical oxidation of ethanol
10.1016/j.jechem.2024.06.045 · 2024
Recent advances in intensified ethylene production - a review
10.1021/acscatal.9b02922 · 2019
Catalytic transformations of ethanol for biorefineries
2014
Recent advances in catalytic conversion of ethanol to chemicals
10.1021/cs4011343 · 2014
Bioethanol to jet fuel: Current status, challenges, and perspectives
10.1016/j.rser.2023.114240 · 2024
Research and progress in catalyst modification for ZSM-5 zeolite catalyzed ethanol-to hydrocarbon reaction
10.1016/j.jiec.2024.11.031 · 2025
Bio-jet fuel conversion technologies
10.1016/j.rser.2015.09.016 · 2016
Recent advancements in catalytic conversion pathways for synthetic jet fuel produced from bioresources
10.1016/j.enconman.2021.114974 · 2022
Bioethanol production from renewable raw materials and its separation and purification: A review
10.17113/ftb.56.03.18.5546 · 2018
Bioethanol production from renewable sources: Current perspectives and technological progress
10.1016/j.rser.2016.12.076 · 2017
The preparation and ethanol fermentation of high-concentration sugars from steam-explosion corn stover
10.1007/s12010-015-1599-x · 2015
Ethanol production by repeated batch and continuous fermentations of blackstrap molasses using immobilized yeast cells on thin-shell silk cocoons
10.1016/j.apenergy.2011.05.020 · 2011
Anhydrous ethanol: A renewable source of energy
10.1016/j.rser.2010.03.015 · 2010
Optimizing bioethanol production from sweet sorghum stem juice under very high gravity fermentation and temperature stress conditions
2025
Sustainable production of bioethanol from office paper waste and its purification via blended polymeric membrane
10.1016/j.enconman.2023.117855 · 2024
Energy saving alternatives for renewable ethanol production with the focus on separation/purification units: A techno-economic analysis
10.1016/j.energy.2021.122363 · 2022
Recent advances in the technologies and catalytic processes of ethanol production
10.3390/catal13071093 · 2023
An alternative synthetic approach for efficient catalytic conversion of syngas to ethanol
10.1021/ar4002697 · 2014
Recent advances in the routes and catalysts for ethanol synthesis from syngas
10.1039/d0cs01003k · 2022
Research progress of hydrogenation of carbon dioxide to ethanol
10.1016/j.ces.2023.119226 · 2023
State-of-the-art advancements in the thermocatalytic conversion of CO2 into ethanol and higher alcohols: recent progress in catalyst development and reaction mechanism
10.1016/j.cej.2024.158467 · 2025
Catalytic oxidation of methane into methanol over copper-exchanged zeolites with oxygen at low temperature
10.1021/acscentsci.6b00139 · 2016
Synthesis of methanol from methane: Challenges and advances on the multi-step (syngas) and one-step routes (DMTM)
10.1016/j.fuproc.2016.01.023 · 2016
Highly selective conversion of methane to ethanol over CuFe2O4-carbon nanotube catalysts at low temperature
10.1016/j.cclet.2021.07.019 · 2022
Utilization of over-ripened fruit (waste fruit) for the eco-friendly production of ethanol
10.1007/s42535-020-00185-8 · 2021
Bimetallic NiSn supported on mesoporous carbon as an efficient catalyst for selective methanol synthesis from CO2
2025
The path to carbon neutrality in China: A paradigm shift in fossil resource utilization
2022
Recent advances in carbon dioxide selective hydrogenation and biomass valorization via single-atom catalysts
2023
A mini review on recent advances in thermocatalytic hydrogenation of carbon dioxide to value-added chemicals and fuels
2022
Utilization of CO2 and recycling of methanol residue from the refining process for production of Bio-methanol
2025
Regeneration process of methyl nitrite in a bubble reactor
2011
Vapor phase carbonylation reactions using methyl nitrite over Pd catalysts
10.1007/s10563-010-9102-8 · 2010
MgO: an excellent catalyst support for CO oxidative coupling to dimethyl oxalate
10.1039/c4cy00245h · 2014
Mechanistic study of selective oxidation of methanol over a monolayer V2O5/CeO2 catalyst
10.1021/acs.jpcc.3c07378 · doi-reference
A TPD study of the partial oxidation of methanol to formaldehyde on CeO2-supported vanadium oxide
10.1016/j.jcat.2003.10.002 · doi-reference
Reactivity of supported vanadium oxide catalysts: The partial oxidation of methanol
10.1006/jcat.1994.1071 · doi-reference
A theoretical investigation of the selective oxidation of methanol to formaldehyde on isolated vanadate species supported on titania
10.1021/jp801339q · doi-reference
A theoretical investigation of the selective oxidation of methanol to formaldehyde on isolated vanadate species supported on silica
10.1021/jp072627a · doi-reference
Deactivation behavior of an iron-molybdate catalyst during selective oxidation of methanol to formaldehyde
10.1039/c8cy01109e · doi-reference
Insights into the role of defects in Fe2(MoO4)3 catalysts
10.1021/acs.jpcc.3c01484 · doi-reference
Unraveling surface and bulk dynamics of iron(III) molybdate during oxidatice dehydrogenation using operando and transient spectroscopies
10.1038/s42004-023-01028-8 · doi-reference
Formaldehyde selectivity in methanol partial oxidation on silver: Effect of reactive oxygen species, surface reconstruction, and stability of intermediates
10.1021/acscatal.1c00344 · doi-reference
One-pot hydrogenolysis of cellulose to bioethanol over Pd-Cu-WOx/SiO2catalysts
10.1016/j.fuel.2021.120311 · doi-reference
One-pot chemocatalytic transformation of cellulose to ethanol over Ru-WOx/HZSM-5
10.1039/c9gc00719a · doi-reference
Oxygen vacancies enriched Ir/WOx catalysts for the directly chem-catalytic conversion of cellulose to ethanol
10.1007/s42864-024-00293-x · doi-reference
One-pot ethanol production from cellulose transformation over multifunctional Pt/WOx and hollow Pt@HZSM-5 catalysts
10.1021/acssuschemeng.1c08204 · doi-reference
One-Pot Production of cellulosic ethanol via tandem catalysis over a multifunctional Mo/Pt/WOx catalyst
10.1016/j.joule.2019.05.020 · doi-reference
Improving both activity and stability for direct conversion of cellulose to ethanol by decorating Pt/WOx with mononuclear NbOx
10.1039/d4gc03390f · doi-reference
Selectively chemo-catalytic hydrogenolysis of cellulose to EG and EtOH over porous SiO2supported tungsten catalysts
10.1016/j.cattod.2022.02.008 · doi-reference
Deactivation mechanism of Cu/SiO2 catalysts in the synthesis of ethylene glycol via methyl glycolate hydrogenation
10.1021/acs.iecr.0c01619 · doi-reference
Boosting the production of glycolic acid from formaldehyde carbonylation via the bifunctional PdO/ZSM-5 catalyst
10.1021/acs.iecr.3c02764 · doi-reference
Carbonylation of formaldehyde with zeolite catalysts
10.1007/s10562-011-0616-0 · doi-reference
An efficient Brønsted acidic polymer resin for the carbonylation of formaldehyde to glycolic acid
10.1007/s11144-020-01819-3 · doi-reference
Carbonylation of formaldehyde over iron exchanged resin catalyst. Ⅰ Batch reactor studies
10.1021/ie00014a002 · doi-reference
Carbonylation of formaldehyde catalyzed by p-toluenesulfonic acid
10.1016/j.cattod.2005.10.038 · doi-reference
Oxidation of methanol to formaldehyde on cation vacant Fe-V-Mo-oxide
10.1016/j.apcata.2011.09.015 · doi-reference
Synthesis of a novel highly active NiMoO4 nanocatalyst for the sustainable production of anhydrous formaldehyde from the non-oxidative dehydrogenation of methanol at relatively low temperature
10.1007/s10562-024-04865-x · doi-reference
Synthesis, characterization and catalytic activity of nanocrystalline Ce2(MoO4)3/SiO2 as a novel catalyst for the selective production of anhydrous formaldehyde from methanol
10.1007/s10562-018-2621-z · doi-reference
Superior catalytic performance of CaMoO4 catalyst in direct dehydrogenation of methanol into anhydrous formaldehyde
10.1016/j.cplett.2018.05.009 · doi-reference
Direct dehydrogenation of methanol to formaldehyde over ZnO-SiO2-based catalysts
10.1039/d4cy00541d · doi-reference
Non-oxidative dehydrogenation of methanol to formaldehyde over bulk β-Ga2O3
10.1002/cctc.202200258 · doi-reference
Non-oxidative dehydrogenation of methanol to formaldehyde over supported GaOx-based catalysts
10.1016/j.jcat.2023.115111 · doi-reference
The titania-catalyzed oxidative dehydrogenation of methanol to formaldehyde
10.1016/j.apcata.2023.119305 · doi-reference
Alkali earth metal molybdates as catalysts for the selective oxidation of methanol to formaldehyde—Selectivity, activity and stability
10.3390/catal10010082 · doi-reference
Methanol oxidation on LaBO3(B = Co, Mn, Fe) perovskite-type catalysts prepared by reactive grinding
10.1016/j.apcata.2008.03.016 · doi-reference
Methanol partial oxidation over palladium-, platinum-, and rhodium-integrated LaMnO3perovskites
10.1016/j.apcatb.2011.07.026 · doi-reference
Regulating oxygen activity of perovskites to promote activity and selectivity for methanol oxidation to formaldehyde
10.1021/acscatal.4c01222 · doi-reference
Catalysis science of methanol oxidation over iron vanadate catalysts: Nature of the catalytic active sites
10.1021/cs1000569 · doi-reference
Unveiling the catalytic active sites of iron-vanadium catalysts for the selective oxidation of methanol to formaldehyde
10.1016/s1872-2067(24)60279-2 · doi-reference
Investigation of the structure and activity of VOx/CeO2/SiO2 catalysts for methanol oxidation to formaldehyde
10.1016/j.jcat.2011.09.024 · doi-reference
Mechanistic studies of methanol oxidation to formaldehyde on isolated vanadate sites supported on high surface area zirconia
10.1021/jp7110692 · doi-reference
Investigation of the structure and activity of VOx/ZrO2/SiO2 catalysts for methanol oxidation to formaldehyde
10.1016/j.jcat.2011.05.001 · doi-reference
Partial oxidation of methanol over highly dispersed vanadia supported on silica SBA-15
10.1007/s10562-005-7997-x · doi-reference