Catalytic Applications in the Production of Hydrotreated Vegetable Oil (HVO) as a Renewable Fuel: A Review

Catalysts Pub Date : 2024-07-14 DOI:10.3390/catal14070452
Nur-Sultan Mussa, K. Toshtay, M. Capron
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Abstract

The significance and challenges of hydrotreatment processes for vegetable oils have recently become apparent, encompassing various reactions like decarbonylation, decarboxylation, and hydrogenation. Heterogeneous noble or transition metal catalysts play a crucial role in these reactions, offering high selectivity in removing oxygen and yielding desired hydrocarbons. Notably, both sulphided and non-sulphided catalysts exhibit effectiveness, with the latter gaining attention due to health and toxicity concerns associated with sulphiding agents. Nickel-based catalysts, such as NiP and NiC, demonstrate specific properties and tendencies in deoxygenation reactions, while palladium supported on activated carbon catalysts shows superior activity in hydrodeoxygenation. Comparisons between the performances of different catalysts in various hydrotreatment processes underscore the need for tailored approaches. Transition metal phosphides (TMP) emerge as promising catalysts due to their cost-effectiveness and environmental friendliness. Ultimately, there is an ongoing pursuit of efficient catalysts and the importance of further advancements in catalysis for the future of vegetable oil hydrotreatment.
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作为可再生燃料的加氢处理植物油 (HVO) 生产中的催化应用:综述
植物油加氢处理工艺包括脱碳、脱羧和加氢等各种反应,其重要性和挑战近来已变得显而易见。异质贵金属或过渡金属催化剂在这些反应中起着至关重要的作用,在脱氧和生成所需碳氢化合物方面具有很高的选择性。值得注意的是,硫化催化剂和非硫化催化剂都很有效,而后者由于硫化剂的健康和毒性问题而备受关注。镍基催化剂(如 NiP 和 NiC)在脱氧反应中表现出特殊的性质和趋势,而活性炭上的钯支撑催化剂则在加氢脱氧中表现出卓越的活性。不同催化剂在各种加氢处理工艺中的性能比较突出表明,需要采用量身定制的方法。过渡金属磷化物 (TMP) 因其成本效益和环境友好性而成为一种前景广阔的催化剂。归根结底,高效催化剂和催化技术的进一步发展对植物油加氢处理的未来至关重要。
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