Nickel-Based Catalysts for Deoxygenation of Biorefinery Products to Renewable Fuels: A Mini Review

Faruk Usman, Aminu Muhammad Bayawa, A. M. Sokoto, Abdullahi Bako Rabah
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Abstract

Nickel-based catalysts have shown decent performance in deoxygenation reactions. Although palladium catalyst is very effective for this  reaction, its high cost increases the cost of production. This review concerns the deoxygenation reactions of higher fatty acids, vegetable  oils, bio-oil and its model compounds to fuels using nickel-based catalysts. The hydrodeoxygenation and decarboxylation of model fatty  acids and vegetable oils over nickel-based catalysts have been found to produce appreciable hydrocarbons that can be used directly as  fuel in diesel engines. Similarly, bio-oil and its model compounds produce hydrocarbons in the presence of various nickel-based catalysts,  but the yield is not as prominent as in vegetable oils. In general, the catalytic performance of nickel in such reactions depends  on the co-metal, support and the reaction conditions. Like palladium and platinum, the electronic properties of nickel-metal have been  shown to significantly contribute to the cleavage of the C–C or C–H bonds during the reactions. It has been reported that hydrogen  molecule is stuck in the defect sites of the nickel=metal surface resulting in a decrease in the activation energy of hydrogen dissociation.  Nickel, is, therefore, one of the most promising metals for catalyzing hydrodeoxygenation of bio-oils into hydrocarbons. 
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将生物精炼产品脱氧为可再生燃料的镍基催化剂:小型综述
镍基催化剂在脱氧反应中表现出良好的性能。虽然钯催化剂对该反应非常有效,但其高昂的成本增加了生产成本。本综述涉及使用镍基催化剂将高级脂肪酸、植物油、生物油及其模型化合物脱氧为燃料的反应。研究发现,模型脂肪酸和植物油在镍基催化剂上进行氢脱氧和脱羧反应可产生可观的碳氢化合物,可直接用作柴油发动机的燃料。同样,生物油及其模型化合物在各种镍基催化剂的作用下也能产生碳氢化合物,但产量不如植物油显著。一般来说,镍在此类反应中的催化性能取决于共金属、支持物和反应条件。与钯和铂一样,镍金属的电子特性已被证明对反应过程中 C-C 或 C-H 键的裂解有重要作用。据报道,氢分子被卡在镍金属表面的缺陷点上,导致氢解离的活化能降低。 因此,镍是催化生物油加氢脱氧成碳氢化合物的最有前途的金属之一。
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