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Literatura académica sobre el tema "Carbon-free ethylene production"
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Artículos de revistas sobre el tema "Carbon-free ethylene production"
Stoiljkovic, Dragoslav, Slobodan Jovanovic, Jovica Djordjevic y Budimir Damjanovic. "Decompositions in the production of low density polyethylene: Reasons, consequences and prevention". Chemical Industry 61, n.º 6 (2007): 357–63. http://dx.doi.org/10.2298/hemind0706357s.
Texto completoMaqbool, Muhammad, Toheed Akhter, Sadaf Ul Hassan, Asif Mahmood, Waheed Al-Masry y Shumaila Razzaque. "Correction: Development of a chromium oxide loaded mesoporous silica as an efficient catalyst for carbon dioxide-free production of ethylene oxide". RSC Advances 14, n.º 1 (2024): 445. http://dx.doi.org/10.1039/d3ra90116e.
Texto completoRosner, Fabian, Mike C. Tucker, Boxun Hu y Hanna Breunig. "Techno-Economic Analysis of Electrochemical Refineries Using Solid Oxide Cells for Oxidative Coupling of Methane". ECS Meeting Abstracts MA2023-01, n.º 54 (28 de agosto de 2023): 322. http://dx.doi.org/10.1149/ma2023-0154322mtgabs.
Texto completoMaqbool, Muhammad, Toheed Akhter, Sadaf Ul Hassan, Asif Mahmood, Waheed Al-Masry y Shumaila Razzaque. "Development of a chromium oxide loaded mesoporous silica as an efficient catalyst for carbon dioxide-free production of ethylene oxide". RSC Advances 13, n.º 46 (2023): 32424–32. http://dx.doi.org/10.1039/d3ra05858a.
Texto completoShukrullah, S., N. M. Mohamed, Y. Khan, M. Y. Naz, A. Ghaffar y I. Ahmad. "Effect of Gas Flowrate on Nucleation Mechanism of MWCNTs for a Compound Catalyst". Journal of Nanomaterials 2017 (2017): 1–9. http://dx.doi.org/10.1155/2017/3407352.
Texto completoSengupta, Annesha, Prem Pritam, Damini Jaiswal, Anindita Bandyopadhyay, Himadri B. Pakrasi y Pramod P. Wangikar. "Photosynthetic Co-production of Succinate and Ethylene in a Fast-Growing Cyanobacterium, Synechococcus elongatus PCC 11801". Metabolites 10, n.º 6 (16 de junio de 2020): 250. http://dx.doi.org/10.3390/metabo10060250.
Texto completoNanaiah, Geeta K. y Jeffrey A. Anderson. "ELECTROLYTE LEAKAGE AND EVOLUTION OF ETHYLENE AND ETHANE FROM PEPPER LEAF DISKS FOLLOWING TEMPERATURE STRESS AND FATTY ACID INFILTRATION". HortScience 27, n.º 6 (junio de 1992): 683a—683. http://dx.doi.org/10.21273/hortsci.27.6.683a.
Texto completoKhairul Salleh, Badrul Nazahan, Nardiah Rizwana Jaafar y Rosli Md Illias. "Molecular and Interactions Modelling of PETase and Its Variant with Different Types of Crosslinker in Enzyme Immobilization". Journal of Bioprocessing and Biomass Technology 1, n.º 1 (22 de diciembre de 2022): 13–18. http://dx.doi.org/10.11113/bioprocessing.v1n1.7.
Texto completoLiu, Xuan, James Sievert, Mary Lu Arpaia y Monica A. Madore. "Postulated Physiological Roles of the Seven-carbon Sugars, Mannoheptulose, and Perseitol in Avocado". Journal of the American Society for Horticultural Science 127, n.º 1 (enero de 2002): 108–14. http://dx.doi.org/10.21273/jashs.127.1.108.
Texto completoZhang, Lei, Chunjiang Liu, Yang Jia, Yidan Mu, Yao Yan y Pengcheng Huang. "Pyrolytic Modification of Heavy Coal Tar by Multi-Polymer Blending: Preparation of Ordered Carbonaceous Mesophase". Polymers 16, n.º 1 (4 de enero de 2024): 161. http://dx.doi.org/10.3390/polym16010161.
Texto completoTesis sobre el tema "Carbon-free ethylene production"
Guillon, Morvan. "Développement de matériaux pour le couplage de la valorisation de CO2 avec l'électrolyse haute température (HTE) pour la production d'éthylène". Electronic Thesis or Diss., Strasbourg, 2024. http://www.theses.fr/2024STRAF026.
Texto completoEthylene production is a major energy challenge for the 21st century. The oxidative coupling of methane reaction enables ethylene to be produced from methane and oxygen. This reaction is therefore of particular interest as it enables ethylene production without dependence on petroleum feedstocks, which are mainly used for ethylene production. The aim of this study is to develop a material for insertion in the anode of a high-temperature electrolyzer to produce decarbonated ethylene from CO2. After a reduction step at the cathode of the same electrolyzer, methane can be produced using power-to-methane technology. Methane is injected at the anode of the electrolyzer to carry out the oxidative coupling of methane reaction. The materials developed in this work must therefore meet the characteristics associated with a good anode and act as a catalyst for the oxidative coupling of methane reaction. Mixed oxides were synthesized and characterized. The activity of the catalysts was evaluated on a laboratory scale, varying the operating parameters to determine the optimum conditions for delivering the best ethylene yield