Hu Juan, Zeng Yurui, Hu Aibin, Wang Xiaofeng
Collaborative Innovation Center for Emissions Trading System Co-Constructed by the Province and Ministry, Wuhan 430205, China.
School of Discipline Inspection and Supervision, Huanggang Normal University, Huanggang 438000, China.
Toxics. 2025 Jan 10;13(1):49. doi: 10.3390/toxics13010049.
Anaerobic digestion (AD) technology offers significant advantages in addressing environmental issues arising from the intensification of livestock production since it enables waste reduction and energy recovery. However, the molecular composition of dissolved organic matter (DOM) and its linkages to microbial biodiversity during the industrial-scale AD process of chicken manure (CM) remains unclear. In this study, the chemical structure of CM digestate-derived DOM was characterized by using multi-spectroscopic techniques and ultrahigh-resolution mass spectrometry, and the microbial composition was detected by using 16S rRNA gene sequencing. The results revealed that the DOM contained abundant free amino acids and protein-like compounds but fewer humic-like substances, identified as lignin/carboxylate-rich alicyclic molecules, lipids, and proteins/aliphatic compounds featuring enriched SO and NO fragments. In addition, the 16S rRNA results revealed microorganisms that were centered on metabolic function in the production of volatile fatty acids, HS/CH, and the hydrolysis reaction in the AD process. Free amino acids and protein-like compounds were mainly associated with hydrolysis reactions and HS production functional microorganisms. Lignin/carboxylate-rich alicyclic molecules were linked to microorganisms possessing hydrolysis reactions and, indirectly, CH production. This study elucidates the linkage with the microbial and molecular composition of DOM, establishing a theoretical foundation for employing AD in the disposal of CM.
厌氧消化(AD)技术在解决集约化畜牧生产所产生的环境问题方面具有显著优势,因为它能够减少废弃物并实现能量回收。然而,在鸡粪(CM)的工业规模AD过程中,溶解有机物(DOM)的分子组成及其与微生物多样性的联系仍不清楚。在本研究中,利用多光谱技术和超高分辨率质谱对CM消化液衍生的DOM的化学结构进行了表征,并通过16S rRNA基因测序检测了微生物组成。结果表明,DOM含有丰富的游离氨基酸和类蛋白质化合物,但腐殖质类物质较少,鉴定为富含木质素/羧酸盐的脂环族分子、脂质以及具有富集SO和NO片段的蛋白质/脂肪族化合物。此外,16S rRNA结果揭示了以挥发性脂肪酸、HS/CH产生过程中的代谢功能以及AD过程中的水解反应为中心的微生物。游离氨基酸和类蛋白质化合物主要与水解反应和HS产生功能微生物相关。富含木质素/羧酸盐的脂环族分子与具有水解反应的微生物相关,并间接与CH产生相关。本研究阐明了DOM的微生物与分子组成之间的联系,为在CM处理中应用AD奠定了理论基础。