Abid Nozha, Karray Fatma, Kallel Imen, Slim Mariam, Barakat Abdellatif, Mhiri Najla, Chamkha Mohamed, Sayadi Sami
Laboratory of Environmental Bioprocesses, Center of Biotechnology of Sfax, Sfax, Tunisia.
Research Laboratory of Environmental Toxicology-Microbiology and Health (LR17ES06), Faculty of Sciences, University of Sfax, Sfax, Tunisia.
Front Bioeng Biotechnol. 2023 Jan 4;10:1100533. doi: 10.3389/fbioe.2022.1100533. eCollection 2022.
The current research work attempted to investigate, for the first time, the impact of biochar addition, on anaerobic digestion of olive mill wastewater with different initial chemical oxygen demand loads in batch cultures (10 g/L, 15 g/L, and 20 g/L). Methane yields were compared by applying one-way analysis of variance (ANOVA) followed by post-hoc Tukey's analysis. The results demonstrated that adding at 5 g/L biochar to olive mill wastewater with an initial chemical oxygen demand load of 20 g/L increased methane yield by 97.8% and mitigated volatile fatty acid accumulation compared to the control batch. According to the results of microbial community succession revealed by the Illumina amplicon sequencing, biochar supplementation significantly increased diversity of the microbial community and improved the abundance of potential genera involved in direct interspecies electron transfer, including and . Consequently, biochar can be a promising alternative in terms of the recovery of metabolic activity during anaerobic digestion of olive mill wastewater at a large scale.
当前的研究工作首次尝试调查在分批培养中(初始化学需氧量负荷分别为10 g/L、15 g/L和20 g/L)添加生物炭对橄榄榨油废水厌氧消化的影响。通过应用单因素方差分析(ANOVA)并随后进行事后Tukey分析来比较甲烷产量。结果表明,与对照批次相比,向初始化学需氧量负荷为20 g/L的橄榄榨油废水中添加5 g/L生物炭可使甲烷产量提高97.8%,并减轻挥发性脂肪酸的积累。根据Illumina扩增子测序揭示的微生物群落演替结果,添加生物炭显著增加了微生物群落的多样性,并提高了参与直接种间电子转移的潜在属的丰度,包括 和 。因此,就大规模厌氧消化橄榄榨油废水过程中代谢活性的恢复而言,生物炭可能是一种有前景的替代物。