Methane Production Reduced by Lignin Derivatives in Pulping Wastewater: Inhibition of Free Hydrolase

Jinxun Lei, Zhihong Xu, Yong Chen, Guo Yu, Zexiang Liu, Shuangfei Wang, Jian Zhang, Kelin Li, Li Xie
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Abstract

The lignin derivatives generated during pulping might be responsible for the suboptimal performance of anaerobic reactors during the treatment of pulping wastewater. However, the exact mechanisms by which these derivatives exert influence remain unclear. This study investigated the influence of lignin derivatives, simulated using humic acids (HAs), in anaerobic granular sludge (AnGS). Compared to the enzymes present during floc-bonding and granule-bonding, the HAs impeded the conversion of unhydrolyzed substrates into methane and caused considerable inactivation of free enzymes. Simultaneously, the HAs suppressed agglomeration and weakened the strength of the AnGS. Furthermore, calcium ions helped maintain the integrity of the sludge structure. Therefore, the inhibition of extracellular enzymes using lignin derivatives delays the methanation of unhydrolyzed substrates, resulting in a reduced biomass within AnGS reactors owing to sludge disintegration and biomass loss. This study serves as a reference for investigating the persistent risks originating from lignin derivatives associated with using anaerobic granular-sludge bed reactors to treat pulping wastewater.
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制浆废水中的木质素衍生物减少了甲烷的产生:抑制游离水解酶
制浆过程中产生的木质素衍生物可能是造成厌氧反应器在处理制浆废水时性能不佳的原因。然而,这些衍生物产生影响的确切机制仍不清楚。本研究利用腐植酸(HAs)模拟了木质素衍生物对厌氧颗粒污泥(AnGS)的影响。与絮凝结合和颗粒结合过程中存在的酶相比,腐殖酸阻碍了未水解底物向甲烷的转化,并导致大量游离酶失活。此外,钙离子有助于保持污泥结构的完整性。因此,使用木质素衍生物抑制胞外酶会延迟未水解底物的甲烷化,从而导致 AnGS 反应器内的生物量因污泥解体和生物量损失而减少。这项研究为调查木质素衍生物在使用厌氧颗粒污泥床反应器处理制浆废水时产生的持久性风险提供了参考。
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