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Green and sustainable route for oxidative depolymerization of lignin: New platform for fine chemicals and fuels

机译:木质素氧化解聚丝的绿色和可持续途径:精细化学品和燃料的新平台

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摘要

Depolymerization of lignin biomass to its value-added chemicals and fuels is pivotal for achieving the goals for sustainable society, and therefore has acquired key interest among the researchers worldwide. A number of distinct approaches have evolved in literature for the deconstruction of lignin framework to its mixture of complex constituents in recent decades. Among the existing practices, special attention has been devoted for robust site selective chemical transformation in the complex structural frameworks of lignin. Despite the initial challenges over a period of time, oxidation and oxidative cleavage process of aromatic building blocks of lignin biomass toward the fine chemical synthesis and fuel generation has improved substantially. The development has improved in terms of cost effectiveness, milder reaction conditions, and purity of compound individuals. These aforementioned oxidative protocols mainly involve the breaking of C-C and C-O bonds of complex lignin frameworks. More precisely in the line with environmentally friendly greener approach, the catalytic oxidation/oxidative cleavage reactions have received wide spread interest for their mild and selective nature toward the lignin depolymerization. This mini-review aims to provide an overview of recent developments in the field of oxidative depolymerization of lignin under greener and environmentally benign conditions. Also, these oxidation protocols have been discussed in terms of scalability and recyclability as catalysts for different fields of applications.
机译:木质素生物量对其增值化学品和燃料的解聚是为了实现可持续社会的目标,因此在全世界的研究人员中获得了关键兴趣。在近几十年中,在近几十年中对其复杂成分混合的Lignin框架进行解构的文献中的许多不同的方法。在现有的实践中,在木质素的复杂结构框架中致力于强大的植物选择性化学转化。尽管在一段时间内呈现初始挑战,但木质素生物量朝向精细化学合成和燃料产生的芳香结构块的氧化和氧化切割过程大大提高。在成本效益,较温和的反应条件和复合个体的纯度方面,该开发得到了改善。这些上述氧化方案主要涉及复合木质素框架的C-C和C-O键的破碎。更精确地在环保更环保的方法中,催化氧化/氧化切割反应对它们的温和和选择性自然朝向木质素脱聚进行了广泛的扩散兴趣。该迷你审查旨在概述近期木质素氧化解聚领域的发展概述,在绿色和环境良性条件下。此外,这些氧化方案已经以可扩展性和可再循环性讨论的,作为不同应用领域的催化剂。

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