State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing, 210023, Jiangsu, PR China.
State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing, 210023, Jiangsu, PR China.
J Environ Manage. 2023 Nov 1;345:118801. doi: 10.1016/j.jenvman.2023.118801. Epub 2023 Aug 15.
Alkaline fermentation for volatile fatty acids (VFAs) production has shown potential as a viable approach to treat sewage sludge. The hydrolysis and acidogenesis of sludge are greatly influenced by mixing. However, the effects of mixing intensity on VFAs production in sludge alkaline fermentation (SAF) remain poorly understood. This study investigated the impacts of mixing intensity (30, 90 and 150 rpm continuous mixing, and 150 rpm intermittent mixing) on VFAs production, dissolved organic matter (DOM) characteristics, phospholipid fatty acid profiles and microbial population distribution in SAF. Results showed that 150 rpm continuous and intermittent mixing enhanced the hydrolysis of sludge, while 150 rpm intermittent mixing resulted in the highest VFAs production (3886 ± 266.1 mg COD/L). Analysis of fluorescent and molecular characteristics of DOM revealed that 150 rpm intermittent mixing facilitated the conversion of released DOM, especially proteins-like substances, into VFAs. The abundance of unsaturated and branched fatty acids of microbes increased under 150 rpm intermittent mixing, which could aid in DOM degradation and VFAs production. Firmicutes and Tissierella were enriched at 150 rpm intermittent mixing, which favored the maximum VFAs yield. Moreover, Firmicutes were found to be the key functional microorganisms influencing the yield of VFAs during SAF. This study provides an understanding about the mixing intensity effects on VFAs production during SAF, which could be helpful to improve the yield of VFAs.
碱性发酵生产挥发性脂肪酸 (VFAs) 已被证明是一种可行的处理污水污泥的方法。污泥的水解和产酸过程受到混合的极大影响。然而,混合强度对污泥碱性发酵 (SAF) 中 VFAs 生产的影响仍知之甚少。本研究考察了混合强度(30、90 和 150 rpm 连续混合,以及 150 rpm 间歇混合)对 SAF 中 VFAs 生产、溶解有机物质 (DOM) 特性、磷脂脂肪酸谱和微生物种群分布的影响。结果表明,150 rpm 连续和间歇混合增强了污泥的水解,而 150 rpm 间歇混合导致 VFAs 产量最高(3886±266.1 mg COD/L)。DOM 的荧光和分子特性分析表明,150 rpm 间歇混合有利于将释放的 DOM,特别是蛋白质样物质,转化为 VFAs。微生物中不饱和和支链脂肪酸的丰度在 150 rpm 间歇混合下增加,这有助于 DOM 降解和 VFAs 生产。150 rpm 间歇混合时厚壁菌门和 Tissierella 丰度增加,有利于最大 VFAs 产量。此外,发现厚壁菌门是影响 SAF 中 VFAs 产量的关键功能微生物。本研究深入了解了混合强度对 SAF 中 VFAs 生产的影响,有助于提高 VFAs 的产量。