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Research Article

Verification of propylene glycol preparation from glycerol via the acetol pathway by in situ hydrogenolysis

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Pages 675-682 | Published online: 09 Apr 2014

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Read on this site (1)

Randy L. Maglinao & B. Brian He. (2014) Optimization of in situ hydrogenolysis of glycerol to propylene glycol and ethanol. Biofuels 5:5, pages 569-577.
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Articles from other publishers (11)

Martín N. Gatti, Francisco Pompeo, Nora N. Nichio & Gerardo F. Santori. (2023) Crude Glycerol Hydrogenolysis to Bio-Propylene Glycol: Effect of Its Impurities on Activity, Selectivity and Stability. Processes 11:6, pages 1731.
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Martín N. Gatti, Federico M. Perez, Gerardo F. Santori, Nora N. Nichio & Francisco Pompeo. (2023) Heterogeneous Catalysts for Glycerol Biorefineries: Hydrogenolysis to 1,2-Propylene Glycol. Materials 16:9, pages 3551.
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Martin Nicolás Gatti, Nora Nancy Nichio & Francisco Pompeo. (2022) Advances for Biorefineries: Glycerol Hydrogenolysis to 1,3-Propylene Glycol. Reactions 3:3, pages 451-498.
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Taynara S. de Andrade, Mariana M.V.M. Souza & Robinson L. Manfro. (2020) Hydrogenolysis of glycerol to 1,2-propanediol without external H2 addition in alkaline medium using Ni-Cu catalysts supported on Y zeolite. Renewable Energy 160, pages 919-930.
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Mingxin Lv, Qianghua Xin, Defu Yin, Zhen Jia, Chunyan Yu, Teng Wang, Shitao Yu, Shiwei Liu, Lu Li & Yue Liu. (2020) Magnetically Recoverable Bifunctional Catalysts for the Conversion of Cellulose to 1,2-Propylene Glycol. ACS Sustainable Chemistry & Engineering 8:9, pages 3617-3625.
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Randy L. Maglinao, Eleazer P. Resurreccion, Sandeep Kumar, Amado L. MaglinaoJr.Jr., Sergio Capareda & Bryan R. Moser. (2019) Hydrodeoxygenation–Alkylation Pathway for the Synthesis of a Sustainable Lubricant Improver from Plant Oils and Lignin-Derived Phenols. Industrial & Engineering Chemistry Research 58:10, pages 4317-4330.
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J. Callison, N.D. Subramanian, S.M. Rogers, A. Chutia, D. Gianolio, C.R.A. Catlow, P.P. Wells & N. Dimitratos. (2018) Directed aqueous-phase reforming of glycerol through tailored platinum nanoparticles. Applied Catalysis B: Environmental 238, pages 618-628.
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Kyriaki Polychronopoulou, Nikolaos Charisiou, Kyriakos Papageridis, Victor Sebastian, Steven Hinder, Aasif Dabbawala, Ayesha AlKhoori, Mark Baker & Maria Goula. (2018) The Effect of Ni Addition onto a Cu-Based Ternary Support on the H2 Production over Glycerol Steam Reforming Reaction. Nanomaterials 8:11, pages 931.
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Isabelle C. Freitas, Robinson L. Manfro & Mariana M.V.M. Souza. (2018) Hydrogenolysis of glycerol to propylene glycol in continuous system without hydrogen addition over Cu-Ni catalysts. Applied Catalysis B: Environmental 220, pages 31-41.
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Andres Gonzalez-Garay, Maria Gonzalez-Miquel & Gonzalo Guillen-Gosalbez. (2017) High-Value Propylene Glycol from Low-Value Biodiesel Glycerol: A Techno-Economic and Environmental Assessment under Uncertainty. ACS Sustainable Chemistry & Engineering 5:7, pages 5723-5732.
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Oleg V. Manaenkov, Joshua J. Mann, Olga V. Kislitza, Yaroslav Losovyj, Barry D. Stein, David Gene Morgan, Maren Pink, Olga L. Lependina, Zinaida B. Shifrina, Valentina G. Matveeva, Esther M. Sulman & Lyudmila M. Bronstein. (2016) Ru-Containing Magnetically Recoverable Catalysts: A Sustainable Pathway from Cellulose to Ethylene and Propylene Glycols. ACS Applied Materials & Interfaces 8:33, pages 21285-21293.
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