解聚
木质素
化学
超声
制浆造纸工业
溶解度
有机化学
漆酶
黑液
牙髓(牙)
云芝
产量(工程)
生物量(生态学)
硫酸盐法
酶水解
水溶液
牛皮纸
化学工程
间歇式反应器
过程(计算)
碳化
作者
Florian Teuffo,Xavier Trivelli,Stéphane Menuel,Loubna Firdaous,Muriel Bigan,Rénato Froidevaux
出处
期刊:Recycling
[Multidisciplinary Digital Publishing Institute]
日期:2026-02-02
卷期号:11 (2): 28-28
标识
DOI:10.3390/recycling11020028
摘要
The recycling of industrial biomass waste, such as black liquor rich in lignin from the pulp and paper industry, represents a sustainable strategy to reduce environmental impact and promote resource valorization. Enzymatic depolymerization of lignin is considered a promising approach due to the high specificity of lignin-degrading enzymes. However, lignin’s poor solubility in aqueous and acidic conditions, combined with its structural complexity and recalcitrance, limits its enzymatic reactivity. In this study, Trametes versicolor laccase was used to depolymerize lignin following a sonication pretreatment designed to improve its solubility and reactivity. Response surface methodology (RSM) identified lignin concentration and sonication time as the most influential parameters for optimizing pretreatment efficiency. The enzymatic depolymerization process revealed a competition between condensation and depolymerization reactions. Characterization of the reaction products using GPC, FTIR, and NMR confirmed the formation of lignin-derived aromatic compounds. These findings highlight the effectiveness of sonication as a pretreatment method to enhance enzymatic lignin degradation. Future research will focus on integrating depolymerization and product separation processes to limit lignin repolymerization and increase the yield of depolymerized aromatic products.
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