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CO<sub>2sub> methanation and co-methanation of CO and CO<sub>2sub> over Mn-promoted Ni/Al<sub>2sub>O<sub>3sub> catalysts

Kechao Zhao,Zhenhua Li,Li Bian

Frontiers of Chemical Science and Engineering 2016, Volume 10, Issue 2,   Pages 273-280 doi: 10.1007/s11705-016-1563-5

Abstract: The effect of the Mn content on the activity of the Ni/Al O catalysts for CO methanation and the co-methanationThe co-methanation tests on the 1.71Mn-Ni/Al O catalyst indicated that adding Mn markedly enhanced theCO methanation activity especially at low temperatures but it had little influence on the CO methanationCO methanation was more sensitive to the reaction temperature and the space velocity than the CO methanationin the co-methanation process.

Keywords: Mn promotion     nickel catalysts     CO<sub>2sub> methanation     co-methanation of CO and CO<sub>2sub>    

Characterization and catalytic activity of soft-templated NiO-CeO

Luciano Atzori, Maria Giorgia Cutrufello, Daniela Meloni, Barbara Onida, Delia Gazzoli, Andrea Ardu, Roberto Monaci, Maria Franca Sini, Elisabetta Rombi

Frontiers of Chemical Science and Engineering 2021, Volume 15, Issue 2,   Pages 251-268 doi: 10.1007/s11705-020-1951-8

Abstract: After reduction in H at 400 °C for 1 h, the catalytic performance was studied in the CO and CO co-methanationCatalytic tests were performed at atmospheric pressure and 300 °C, using CO/CO /H molar compositionswas strongly affected by both the CO/CO /H ratio and the space velocity.of CO and CO methanation.co-methanation reaction in a wide range of operating conditions and stable (up to 50 h) also when submitted

Keywords: soft template method     NiO-CeO<sub>2sub> catalysts     CO and CO<sub>2sub> co-methanation     synthetic natural    

A Storage-Driven CO<sub>2sub> EOR for a Net-Zero Emission Target Article

Yueliang Liu, Zhenhua Rui

Engineering 2022, Volume 18, Issue 11,   Pages 79-87 doi: 10.1016/j.eng.2022.02.010

Abstract: >2sub> emissions by storing CO<sub>2sub> in oil reservoirs.CO<sub>2sub> EOR—whose main target is to realize net-zero or even negative CO<sub>2sub> emissionsStorage-driven CO<sub>2sub> EOR is superior to conventional CO<sub>2sub> EOR in improving sweepingthan conventional CO<sub>2sub> EOR.Moreover, the amount of sequestrated CO2 in storage-driven CO<sub>2sub> EOR exceeds the amount

Keywords: CO<sub>2sub>     EOR     Net CO<sub>2sub>     emissions     Dimethyl ether     Storage-driven CO<sub>2sub>     EOR     CO<sub>2sub>     sequestration    

Methanation of carbon dioxide: an overview

Wei WANG, Jinlong GONG

Frontiers of Chemical Science and Engineering 2011, Volume 5, Issue 1,   Pages 2-10 doi: 10.1007/s11705-010-0528-3

Abstract: Although being very challenging, utilization of carbon dioxide (CO ) originating from production processesthe synthesis of chemicals offer the way to mitigate the increasing CO buildup.Among the catalytic reactions, methanation of CO is a particularly promising technique for producingarticle focuses on recent developments in catalytic materials, novel reactors, and reaction mechanism for methanationof CO .

Keywords: CO<sub>2sub> methanation     hydrogenation     catalysis     methane     environmental science    

Reduction potential of the energy penalty for CO capture in CCS

Frontiers in Energy 2023, Volume 17, Issue 3,   Pages 390-399 doi: 10.1007/s11708-023-0864-x

Abstract: CO<sub>2sub> capture and storage (CCS) has been acknowledged as an essential part of a portfolio oftechnologies that are required to achieve cost-effective long-term CO<sub>2sub> mitigation.One of the crucial reasons for this delay lies in the unaffordable penalty caused by CO<sub>2sub> capture

Keywords: CO<sub>2sub> capture and storage (CCS)     CO<sub>2sub> separation     energy penalty    

Frontier science and challenges on offshore carbon storage

Frontiers of Environmental Science & Engineering 2023, Volume 17, Issue 7, doi: 10.1007/s11783-023-1680-6

Abstract:

● The main direct seal up carbon options and challenges are reviewed.

Keywords: Offshore carbon storage     Direct CO<sub>2sub> injection     CO<sub>2sub>-CH<sub>4sub> replacement     CO<sub>2sub>-EOR     CCS hubs     CO<sub>2sub> transport    

Development of H<sub>2sub>O/CO<sub>2sub> co-electrolysis in solid oxide electrolysis cell

Fan Hui,Song Shidong,Han Minfang

Strategic Study of CAE 2013, Volume 15, Issue 2,   Pages 107-112

Abstract: In this paper, the progress on structure and working principle of SOEC for co-electrolyzing steamThe structure of SOEC, the recent development of high temperature steam/CO2 co-electrolysis from

Keywords: SOEC     H<sub>2sub>O/CO<sub>2sub> co-electrolysis     syngas     electrolysis efficiency     water electrolysis    

The Contribution of Solar Energy Technology to Reduction of CO<sub>2sub> Emissions in Future in China

Zhao Yuwen

Strategic Study of CAE 2003, Volume 5, Issue 4,   Pages 38-40

Abstract:

The effect of solar energy technology on the reduction of CO<sub>2sub> emissions in future in Chinaan appreciable effect after 2010, and a remarkable effect emissions after 2020 on the reduction of CO<sub>2sub>.

Keywords: solar energy     reduction of CO<sub>2sub> emissions    

An investigation of the CHOH and CO selectivity of CO hydrogenation over Cu–Ce–Zr catalysts

Frontiers of Chemical Science and Engineering 2022, Volume 16, Issue 6,   Pages 950-962 doi: 10.1007/s11705-022-2162-2

Abstract: 2sub> to CO/CH<sub>3sub>OH products.The Cu–Ce–Zr catalyst with 2 wt% Ce loading shows higher CO selectivity (S<sub>COsub> = 0.0%The solid solution enhances the CO<sub>2sub> adsorption ability.At the CO<sub>2sub> adsorption step, a larger number of hydroxyl groups over the Cu–Ce–Zr catalystHence, the Cu–Ce–Zr catalyst with 8 wt% Ce loading favors CH<sub>3sub>OH selectivity and CO<sub>2

Keywords: CO<sub>2sub> hydrogenation     Cu–Ce–Zr     hydroxyls     CO/CH<sub>3sub>OH selectivity    

A CO and CO

Guoxing Chen, Marc Widenmeyer, Binjie Tang, Louise Kaeswurm, Ling Wang, Armin Feldhoff, Anke Weidenkaff

Frontiers of Chemical Science and Engineering 2020, Volume 14, Issue 3,   Pages 405-414 doi: 10.1007/s11705-019-1886-0

Abstract: Their chemical compatibility, oxygen permeability, CO and CO tolerance, and long-term CO resistancethrough a 0.65 mm thick membrane was measured for (La Ca ) (Ni Cu )O , using either helium or pure COThe membrane showed excellent chemical stability towards CO for more than 1360 h and phase stabilityin presence of CO for 4 h at high temperature.In addition, this membrane did not deteriorate in a high-energy CO plasma.

Keywords: K<sub>2sub>NiF<sub>4sub> structure     oxygen permeation membrane     CO<sub>2sub> and CO resistances     CO<sub>2sub> plasma resistance     long-term robustness    

Review on cryogenic technologies for CO removal from natural gas

Yujing BI, Yonglin JU

Frontiers in Energy 2022, Volume 16, Issue 5,   Pages 793-811 doi: 10.1007/s11708-022-0821-0

Abstract: CO<sub>2sub> in natural gas (NG) is prone to condense directly from gas to solid or solidify from liquidMeanwhile, CO<sub>2sub> will also affect the calorific value of NG.Based on the above reasons, CO<sub>2sub> must be removed during the NG liquefaction process.In this paper, the phase behavior of the CH<sub>4sub>-CO<sub>2sub> binary mixture is summarized,which provides a basis for the process design of cryogenic CO<sub>2sub> removal from NG.

Keywords: cryogenic CO<sub>2sub> removal     purification of natural gas (NG)     biogas upgrading     CH<sub>4sub>-CO<sub>2sub> binary system    

Ultrasound-assisted co-precipitation synthesis of mesoporous Co3O4–CeO2 composite oxides for highly selective

Frontiers of Chemical Science and Engineering 2022, Volume 16, Issue 8,   Pages 1211-1223 doi: 10.1007/s11705-022-2145-3

Abstract: In this study, a Co<sub>3sub>O<sub>4sub>–CeO<sub>2sub> composite oxide catalyst was successfullyprepared through ultrasound-assisted co-precipitation.3+/Co2+ and Ce4+/Ce3+ redox pairs, than bulk CeO<sub>2sub> and/or Co<sub>3sub>O<sub>4sub>.<sub>3sub>O<sub>4sub>–CeO<sub>2sub>.

Keywords: Co<sub>3sub>O<sub>4sub>–CeO<sub>2sub> composite oxides     cyclohexanone     cyclohexanol     ultrasonic-assistedco-precipitation     selective oxidation     solvent-free    

Controlling the Reconstruction of Ni/CeO<sub>2sub> Catalyst during Reduction for Enhanced CO Methanation Article

Xinyu Cao,Tiancheng Pu,Bar Mosevitzky Lis,Israel E. Wachs,Chong Peng,Minghui Zhu,Yongkang Hu,

Engineering 2022, Volume 14, Issue 7,   Pages 94-99 doi: 10.1016/j.eng.2021.08.023

Abstract: The unique post-activation catalyst structure offered enhanced CO adsorption and an improved CO methanation

Keywords: Nickel–ceria catalyst     Catalyst activation     Crystallinity     Methanation     In situ spectroscopy    

One-Step Synthesis of Structurally Stable CO<sub>2sub>-Philic Membranes with Ultra-High PEO Loading Article

Bin Zhu, Shanshan He, Yadong Wu, Songwei Li, Lu Shao

Engineering 2023, Volume 26, Issue 7,   Pages 220-228 doi: 10.1016/j.eng.2022.03.016

Abstract: <sub>2sub> levels because CO<sub>2sub>-philic membranes have demonstrated significant applicationpotential, especially, for CO<sub>2sub>/light gas separation.In this regard, poly(ethylene oxide) (PEO), which is a representative CO<sub>2sub>-philic material,<sub>2sub>.and CO<sub>2sub>/light gas selectivity at high feed pressure (up to 20 bar).

Keywords: Membrane separation     Gas separation     CO<sub>2sub> capture     CO<sub>2sub>-philic membrane     Poly(ethylene    

Bamboo-like -doped carbon nanotubes encapsulating M(Co, Fe)-Ni alloy for electrochemical production ofsyngas with potential-independent CO/H ratios

Frontiers of Chemical Science and Engineering 2022, Volume 16, Issue 4,   Pages 498-510 doi: 10.1007/s11705-021-2082-6

Abstract: The electrochemical conversion of CO<sub>2sub>-H<sub>2sub>O into CO-H<sub>2sub> using renewableLow-cost electrocatalysts to produce tunable syngas with a potential-independent CO/H<sub>2sub> ratioMore importantly, stable CO/H<sub>2sub> ratios of 2:1 and 1.5:1, corresponding to the ratio to producebiofuels by syngas fermentation, could be realized on Co<sub>1sub>Ni-NCNT and Co<sub>2sub>Ni-NCNT/H<sub>2sub> ratio from electrochemical CO<sub>2sub> reduction.

Keywords: electrochemical reduction of CO<sub>2sub>     syngas     N-doped carbon nanotubes     encapsulated alloynanoparticles     CO/H<sub>2sub> ratio    

Title Author Date Type Operation

CO<sub>2sub> methanation and co-methanation of CO and CO<sub>2sub> over Mn-promoted Ni/Al<sub>2sub>O<sub>3sub> catalysts

Kechao Zhao,Zhenhua Li,Li Bian

Journal Article

Characterization and catalytic activity of soft-templated NiO-CeO

Luciano Atzori, Maria Giorgia Cutrufello, Daniela Meloni, Barbara Onida, Delia Gazzoli, Andrea Ardu, Roberto Monaci, Maria Franca Sini, Elisabetta Rombi

Journal Article

A Storage-Driven CO<sub>2sub> EOR for a Net-Zero Emission Target

Yueliang Liu, Zhenhua Rui

Journal Article

Methanation of carbon dioxide: an overview

Wei WANG, Jinlong GONG

Journal Article

Reduction potential of the energy penalty for CO capture in CCS

Journal Article

Frontier science and challenges on offshore carbon storage

Journal Article

Development of H<sub>2sub>O/CO<sub>2sub> co-electrolysis in solid oxide electrolysis cell

Fan Hui,Song Shidong,Han Minfang

Journal Article

The Contribution of Solar Energy Technology to Reduction of CO<sub>2sub> Emissions in Future in China

Zhao Yuwen

Journal Article

An investigation of the CHOH and CO selectivity of CO hydrogenation over Cu–Ce–Zr catalysts

Journal Article

A CO and CO

Guoxing Chen, Marc Widenmeyer, Binjie Tang, Louise Kaeswurm, Ling Wang, Armin Feldhoff, Anke Weidenkaff

Journal Article

Review on cryogenic technologies for CO removal from natural gas

Yujing BI, Yonglin JU

Journal Article

Ultrasound-assisted co-precipitation synthesis of mesoporous Co3O4–CeO2 composite oxides for highly selective

Journal Article

Controlling the Reconstruction of Ni/CeO<sub>2sub> Catalyst during Reduction for Enhanced CO Methanation

Xinyu Cao,Tiancheng Pu,Bar Mosevitzky Lis,Israel E. Wachs,Chong Peng,Minghui Zhu,Yongkang Hu,

Journal Article

One-Step Synthesis of Structurally Stable CO<sub>2sub>-Philic Membranes with Ultra-High PEO Loading

Bin Zhu, Shanshan He, Yadong Wu, Songwei Li, Lu Shao

Journal Article

Bamboo-like -doped carbon nanotubes encapsulating M(Co, Fe)-Ni alloy for electrochemical production ofsyngas with potential-independent CO/H ratios

Journal Article