Green Synthesis of Cutting-Edge Nonionic Surfactants Derived from Lignin

木质素 化学 生物高聚物 有机化学 绿色化学 木质纤维素生物量 胶束 生物量(生态学) 临界胶束浓度 纤维素 化学工程 聚合物 离子液体 催化作用 工程类 海洋学 水溶液 地质学
作者
Fabio Bucciol,Pierluigi Quagliotto,Laura Tedesco,Emanuela Calcio Gaudino,Giancarlo Cravotto,Silvia Tabasso
出处
期刊:ACS Sustainable Chemistry & Engineering [American Chemical Society]
卷期号:13 (1): 343-351
标识
DOI:10.1021/acssuschemeng.4c07411
摘要

Surfactants play a crucial role in both everyday life and industrial applications. Unfortunately, most are still derived from fossil sources and are not biodegradable, highlighting the need for nontoxic, biologically derived alternatives. Lignin is a biopolymer found in lignocellulosic biomass, which represents a renewable source of bioaromatic compounds rich in phenolic moieties, making it suitable for further modifications. However, its recalcitrance to chemical and biochemical processes hinders its conversion to value-added products. In this work, a sustainable synthetic process for the preparation of new biobased surfactants under mild conditions was developed. The starting material was vanillic acid (VA), which is a lignin-derived model compound. VA esters were prepared by exploiting several primary aliphatic alcohols with different chain lengths (C4–C10) to obtain the nonpolar tail, achieving a complete conversion after 45 min at 120 °C. The polar head was synthesized by direct coupling with glycerol carbonate in neat conditions, replacing the use of toxic epichlorohydrin, and improving yields (63.1% vs 20.5%). The resulting products were characterized by using the pyrene fluorescence method to prove their surfactant behavior and measure their critical micelle concentration (CMC), showing a correlation between the length of the nonpolar tail and the CMC. The C8 derivative showed the lowest CMC, with an estimated value of 5.05 × 10–5 M. This work demonstrates the potential for converting lignin-derived platform chemicals into renewable nonionic surfactants for a wide range of applications.
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