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Influence of bimetallic characteristics on the performance of MoCoP and MoFeP catalysts for methyl laurate hydrodeoxygenation Garcia-Perez D, Alvarez-Galvan MC, Capel-Sanchez MC, Blanco-Brieva G, Morales-delaRosa S, Campos-Martin JM, Fierro JLG Catalysis Today, 367, 43, 2021 |
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Synergistic effects between Cu and Ni species in NiCu/gamma-Al2O3 catalysts for hydrodeoxygenation of methyl laurate Miao CX, Zhou GL, Chen S, Xie HM, Zhang XM Renewable Energy, 153, 1439, 2020 |
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Hydrodeoxygenation of methyl laurate over the sulfur-free Ni/gamma-Al2O3 catalysts Chen S, Zhou GL, Xie HM, Jiao ZJ, Zhang XM Applied Catalysis A: General, 569, 35, 2019 |
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Hydroconversion of fatty acid derivative over supported Ni-Mo catalysts under low hydrogen pressure Imai H, Kimura T, Terasaka K, Li XH, Sakashita K, Asaoka S, Al-Khattaf SS Catalysis Today, 303, 185, 2018 |
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Hydroconversion of methyl laurate over silica-supported Ni-Mo catalysts with different Ni sizes Imai H, Abe M, Terasaka K, Suzuki T, Li XH, Yokoi T Fuel Processing Technology, 180, 166, 2018 |
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Isobaric vapor-liquid equilibrium for binary system of methyl caprate plus methyl laurate at 2, 4 and 6 kPa Ding H, Ke WJ, Zhao D, Wang LL, Gao YJ, Liu SJ Journal of Chemical Thermodynamics, 116, 241, 2018 |
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Hydroconversion of methyl laurate on bifunctional Ni2P/AlMCM-41 catalyst prepared via in situ phosphorization using triphenylphosphine Zhao S, Zhang ZN, Zhu KY, Chen JX Applied Surface Science, 404, 388, 2017 |
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Effect of Ni and noble metals (Ru, Pd and Pt) on performance of bifunctional MoP/SiO2 for hydroconversion of methyl laurate Nie ZY, Zhang ZN, Chen JX Applied Surface Science, 420, 511, 2017 |
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Transformation of methyl laurate into lauryl alcohol over a Ru-Sn-Mo/C catalyst by using zerovalent iron and water as an in situ hydrogen source Sagata K, Hirose M, Hirano Y, Kita Y Applied Catalysis A: General, 523, 85, 2016 |
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Effects of P/Ni ratio and Ni content on performance of gamma-Al2O3-supported nickel phosphides for deoxygenation of methyl laurate to hydrocarbons Zhang ZN, Tang MX, Chen JX Applied Surface Science, 360, 353, 2016 |