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在微流控反应器中集成混合纳米催化作用,实现木质素启发型化学品的选择性光催化。

Selective photocatalysis of lignin-inspired chemicals by integrating hybrid nanocatalysis in microfluidic reactors.

机构信息

Institute of Physical Chemistry, Polish Academy of Sciences, Kasprzaka 44/52, 01-224 Warsaw, Poland.

出版信息

Chem Soc Rev. 2017 Nov 13;46(22):6675-6686. doi: 10.1039/c7cs00257b.

Abstract

This tutorial review assesses the available and possible strategies for attaining higher selectivity and yield of value-added chemicals from lignin using nanocatalysts embedded in a photomicroreactor. The design of the photomicroreactor, the choice of photocatalysts and the techniques for assembling the catalysts in such confined spaces are crucial elements. Lignin, a predominant industrial byproduct and pollutant, has been recognized today as a rich reservoir for aromatic chemicals and a prominent resource. The conventional batch photocatalytic studies on lignin, often using dissolved lignin under alkaline conditions, often generates a wide range of valuable organic chemicals which find applications in the pharmaceutical, food processing, cosmetic and fine chemical industries. The role of photocatalysis in such lignin depolymerizations is questionable as the dissolution procedure initiates fragmentation of lignin prior to light exposure. The complexity of the lignin structure also impedes necessary and decisive information to understand the reaction mechanism during such reactions in batch photoreactors. Considering these facts, photocatalysis studies on lignin entail a thoughtful reevaluation and focus on understanding the role of photocatalysis in the product generation and authenticating the implicated reaction mechanisms. The development of a photocatalytic system for lignin depolymerization in a continuous microreactor is a superior approach for the generation of valuable products emanating from lignin depolymerization and the successful execution of such strategies can pave the way for the commercialization of bio-based chemicals.

摘要

本教程综述评估了使用嵌入光微反应器中的纳米催化剂从木质素中获得附加值更高的化学品的更高选择性和产率的现有和可能策略。光微反应器的设计、光催化剂的选择以及在这些受限空间中组装催化剂的技术是关键要素。木质素是一种主要的工业副产物和污染物,如今已被认为是芳香化学品的丰富来源和重要资源。传统的木质素批处理光催化研究通常在碱性条件下使用溶解的木质素,通常会产生广泛的有价值的有机化学品,这些化学品在制药、食品加工、化妆品和精细化工行业中有应用。光催化在这种木质素解聚中的作用值得怀疑,因为溶解程序在暴露于光之前就引发了木质素的碎片化。木质素结构的复杂性也妨碍了在批处理光反应器中进行此类反应时理解反应机制所需的必要和决定性信息。考虑到这些事实,木质素的光催化研究需要进行深思熟虑的重新评估,并侧重于理解光催化在产物生成中的作用,并验证所涉及的反应机制。在连续微反应器中开发木质素解聚的光催化系统是一种从木质素解聚中产生有价值产物的优越方法,成功执行这些策略可为基于生物的化学品的商业化铺平道路。

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