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首页> 外文期刊>Chemical engineering journal >Green synthesis of gamma-valerolactone (GVL) through hydrogenation of biomass-derived levulinic acid using non-noble metal catalysts: A critical review
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Green synthesis of gamma-valerolactone (GVL) through hydrogenation of biomass-derived levulinic acid using non-noble metal catalysts: A critical review

机译:使用非贵金属催化剂氢化生物质衍生的乙酰丙酸的绿色合成γ-戊酮(GV1):临界评论

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摘要

The distinct physicochemical properties and renewable origin of gamma-valerolactone (GVL) have provided opportunities for diversifying its applications, particularly as a green solvent, excellent fuel additive, and precursor to valuable chemicals. Among the related publications found in the SCOPUS database (approximate to 172 in the last 10 years), we focused our effort to review the conversion of levulinic acid (LA) to GVL over non-noble metal catalysts and the corresponding mechanisms (approximate to 30 publications) as well as the applications of GVL as a solvent, fuel additive, and platform chemical (approximate to 30 publications) mostly in the last five years (some preceding publications have also been included due to their relevance and importance in the field). The use of non-noble metals (e.g., Cu and Zr) presents a greener route of GVL synthesis than the conventional practice employing noble metals (e.g., Pd and Ru), in view of their higher abundance and milder reaction conditions needed (e.g., low pressure and temperature without H-2 involved). The significance of the catalyst characteristics in promoting catalytic transfer hydrogenation of LA to GVL is critically discussed. Structural features and acid-base properties are found to influence the activity and selectivity of catalysts. Furthermore, metal leaching in the presence of water in catalytic systems is an important issue, resulting in catalyst deactivation. Various endeavors for developing catalysts using well-dispersed metal particles along with a combination of Lewis acid and base sites are suggested for efficiently synthesizing GVL from LA.
机译:γ-戊酮(GV1)的不同的物理化学性质和可再生源已经为其应用多样化,特别是作为绿色溶剂,优异的燃料添加剂和宝贵化学品的前体提供了机会。在Scopus数据库中发现的相关出版物(在过去10年中的约172次)中,我们努力通过非贵金属催化剂和相应的机制审查紫水酸(LA)转化为GVL(近似30出版物)以及GVL作为溶剂,燃料添加剂和平台化学(近似30个出版物)的应用主要是在过去的五年中(由于它们的相关性和本领域的重要性也被包括在内的一些前列出版物)。使用非贵金属(例如,Cu和Zr)的GV1合成途径比使用贵金属(例如,Pd和Ru)的常规实践,考虑到它们的较高丰度和所需的更高的反应条件(例如,没有H-2所涉及的低压和温度)。批判性地讨论了促进LA至GV1催化转移氢化的催化剂特性的重要性。发现结构特征和酸碱性质影响催化剂的活性和选择性。此外,在催化系统中存在水的金属浸出是一个重要问题,导致催化剂失活。建议使用井分散的金属颗粒与路易斯酸和基因位点的组合进行催化剂的各种诱导,用于从LA有效地合成GV1。

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