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单宁凝胶及其碳衍生物:综述。

Tannin Gels and Their Carbon Derivatives: A Review.

机构信息

Centre Technologique des Résidus Industriels (CTRI, Technology Center for Industrial Waste), Cégep de l'Abitibi-Témiscamingue (College of Abitibi-Témiscamingue), 425 Boul. du Collège, Rouyn-Noranda, QC J9X 5E5, Canada.

Department of Metallurgical and Materials Engineering PMT-USP, University of São Paulo, Avenida Mello Moraes, 2463, Cidade Universitária, São Paulo CEP 05508-030, Brazil.

出版信息

Biomolecules. 2019 Oct 8;9(10):587. doi: 10.3390/biom9100587.

Abstract

Tannins are one of the most natural, non-toxic, and highly reactive aromatic biomolecules classified as polyphenols. The reactive phenolic compounds present in their chemical structure can be an alternative precursor for the preparation of several polymeric materials for applications in distinct industries: adhesives and coatings, leather tanning, wood protection, wine manufacture, animal feed industries, and recently also in the production of new porous materials (i.e., foams and gels). Among these new polymeric materials synthesized with tannins, organic and carbon gels have shown remarkable textural and physicochemical properties. Thus, this review presents and discusses the available studies on organic and carbon gels produced from tannin feedstock and how their properties are related to the different operating conditions, hence causing their cross-linking reaction mechanisms. Moreover, the steps during tannin gels preparation, such as the gelation and curing processes (under normal or hydrothermal conditions), solvent extraction, and gel drying approaches (i.e., supercritical, subcritical, and freeze-drying) as well as the methods available for their carbonization (i.e., pyrolysis and activation) are presented and discussed. Findings from organic and carbon tannin gels features demonstrate that their physicochemical and textural properties can vary greatly depending on the synthesis parameters, drying conditions, and carbonization methods. Research is still ongoing on the improvement of tannin gels synthesis and properties, but the review evaluates the application of these highly porous materials in multidisciplinary areas of science and engineering, including thermal insulation, contaminant sorption in drinking water and wastewater, and electrochemistry. Finally, the substitution of phenolic materials (i.e., phenol and resorcinol) by tannin in the production of gels could be beneficial to both the bioeconomy and the environment due to its low-cost, bio-based, non-toxic, and non-carcinogenic characteristics.

摘要

单宁是一种最天然、无毒且反应活性极高的芳香类生物分子,被归类为多酚。其化学结构中存在的反应性酚类化合物可以作为制备多种聚合材料的替代前体,应用于不同的行业:胶粘剂和涂料、皮革鞣制、木材保护、葡萄酒制造、动物饲料工业,以及最近在新型多孔材料(即泡沫和凝胶)的生产中。在这些用单宁合成的新型聚合材料中,有机和碳凝胶表现出了显著的结构和物理化学性质。因此,本综述介绍并讨论了由单宁原料制备的有机和碳凝胶的现有研究,以及它们的性质如何与不同的操作条件相关,从而导致其交联反应机制。此外,还介绍并讨论了单宁凝胶制备过程中的步骤,如凝胶化和固化过程(在常温和水热条件下)、溶剂萃取和凝胶干燥方法(即超临界、亚临界和冷冻干燥)以及用于碳化的方法(即热解和活化)。有机和碳单宁凝胶特性的研究结果表明,它们的物理化学和结构性质可以根据合成参数、干燥条件和碳化方法的不同而有很大的变化。关于单宁凝胶的合成和性质的研究仍在进行中,但综述评估了这些高多孔材料在科学和工程多学科领域的应用,包括隔热、饮用水和废水中污染物的吸附以及电化学。最后,由于其低成本、基于生物的、无毒和非致癌特性,用单宁替代酚类材料(即苯酚和间苯二酚)生产凝胶可能对生物经济和环境都有益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ea1/6843342/cf8aa4c7bbfa/biomolecules-09-00587-g001.jpg

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