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声-芬顿辅助木质素解聚为有价值的酚类化合物

Sono-Fenton-Assisted Depolymerization of Lignin to Valuable Phenolic Compounds.

作者信息

Kumari Preety, Vinu Ravikrishnan

机构信息

Department of Chemical Engineering and National Centre for Combustion Research and Development, Indian Institute of Technology Madras, Chennai 600036, India.

出版信息

ACS Omega. 2025 Jun 27;10(27):28944-28955. doi: 10.1021/acsomega.5c00431. eCollection 2025 Jul 15.

Abstract

Lignin, a naturally occurring aromatic polymer, is often regarded as an underutilized resource within the expanding paper and pulp and bioethanol industries. The aim of the present work is to employ a nonconventional, benign method like sonication-assisted Fenton treatment to depolymerize alkali lignin, and optimize the reaction conditions like time (15-90 min), lignin concentration (1-6 g/L), ultrasound power (300, 450 W), dosage of HO (0.01-0.04 mol), and amount of FeSO (5-20 wt %) to maximize the oil yields and total phenolics. Kinetics of depolymerization of lignin at optimal conditions was also studied by tracking the molecular weight reduction of lignin with time. The highest yield of lignin oil and rate constant achieved were 37% and 4.7 × 10 min, respectively, at 60 min, 4 g/L lignin concentration, 10 wt % FeSO, 0.02 mol of HO, and 450 W ultrasound power. The total phenolic content in the liquid phase was 0.75 mmol g. Free-radical reactions mediated by active hydroxyl (OH) species generated by the synergetic action of both the Fenton reagent and ultrasound aid in breaking down the complex lignin molecule into valuable, low-molecular-weight phenolic monomers like vanillin, acetovanillone, vanillic acid, phenol, and guaiacol. The selectivity to vanillin was high (36%) under the optimal reaction condition.

摘要

木质素是一种天然存在的芳香族聚合物,在不断发展的造纸、纸浆和生物乙醇行业中,常被视为一种未得到充分利用的资源。本工作的目的是采用一种非常规的、温和的方法,如超声辅助芬顿处理,使碱木质素解聚,并优化反应条件,如时间(15 - 90分钟)、木质素浓度(1 - 6克/升)、超声功率(300、450瓦)、过氧化氢用量(0.01 - 0.04摩尔)和硫酸亚铁用量(5 - 20重量%),以最大限度提高油产率和总酚含量。还通过跟踪木质素分子量随时间的降低情况,研究了木质素在最佳条件下的解聚动力学。在60分钟、木质素浓度4克/升、10重量%硫酸亚铁、0.02摩尔过氧化氢和450瓦超声功率条件下,木质素油的最高产率和速率常数分别达到37%和4.7×10⁻³分钟⁻¹。液相中的总酚含量为0.75毫摩尔/克。芬顿试剂和超声的协同作用产生的活性羟基(·OH)物种介导的自由基反应,有助于将复杂的木质素分子分解为有价值的低分子量酚类单体,如香草醛、乙酰香草酮、香草酸、苯酚和愈创木酚。在最佳反应条件下,对香草醛的选择性较高(36%)。

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