Department of Municipal Engineering, College of Civil and Transportation Engineering, Guangzhou University, Guangzhou, PR China.
Department of Municipal Engineering, College of Civil and Transportation Engineering, Guangzhou University, Guangzhou, PR China.
Bioresour Technol. 2024 Sep;407:131143. doi: 10.1016/j.biortech.2024.131143. Epub 2024 Jul 21.
Anaerobic fermentation has emerged as a promising method of transforming waste activated sludge into high-value products (e.g., volatile fatty acids (VFAs)). This work developed sodium citrate (SC)-calcium oxide (CaO) pretreatment to accelerate the production of VFAs by enhancing sludge solubilization and disintegration of extracellular polymeric substances. The results showed that co-pretreatment with 0.25 g/g TSS of SC and 0.05 g/g TSS of CaO effectively boosted VFAs accumulation (5823.3 mg COD/L), which was 12.2 times higher than the Control group. SC-CaO pretreatment enhanced hydrolysis and acidogenesis by providing ample organic substrates, thereby promoting the growth of hydrolytic and acidogenic bacteria. Additionally, the fermentation broth resulting from co-pretreatment exhibited lower phosphorus concentration and higher biodegradability. Economic analysis confirmed that the combined pretreatment is cost-effective. This work provides a viable strategy for enhancing high-value product recovery from sludge.
厌氧发酵已成为一种很有前途的方法,可以将废活性污泥转化为高价值产品(例如挥发性脂肪酸 (VFAs))。本研究采用柠檬酸(SC)-氧化钙(CaO)预处理来加速 VFAs 的生产,通过增强污泥的溶解和细胞外聚合物的解体来实现。结果表明,用 0.25g/gTSS 的 SC 和 0.05g/gTSS 的 CaO 进行共预处理,可有效促进 VFAs 的积累(5823.3mgCOD/L),是对照组的 12.2 倍。SC-CaO 预处理通过提供充足的有机底物来促进水解和产酸,从而增强水解和产酸菌的生长。此外,共预处理后的发酵液表现出更低的磷浓度和更高的生物降解性。经济分析证实了联合预处理具有成本效益。这项工作为提高从污泥中回收高价值产品的效率提供了一种可行的策略。