Department of Civil and Environmental Engineering, University of Michigan, Ann Arbor, Michigan 48109, United States.
Environ Sci Technol. 2023 Feb 28;57(8):3369-3379. doi: 10.1021/acs.est.2c09014. Epub 2023 Feb 15.
Organic waste streams can be converted into high-value platform chemicals such as medium-chain carboxylic acids (MCCAs) using mixed microbial communities via chain elongation. However, the heterogeneity of waste streams and the use of complex microbial communities can lead to undesirable reactions, thus decreasing process efficiency. We explored suppressing excessive ethanol oxidation to acetate (EEO) by increasing the hydrogen partial pressure (P) through hydrogenotrophic methanogenesis inhibition by periodically adding 2-bromoethanesulfonate (2-BES) to an MCCA-producing bioreactor to reach 10 mM of 2-BES upon addition. The bioreactor was fed with pretreated food waste and brewery waste containing high concentrations of short-chain carboxylic acids and ethanol, respectively. While 2-BES addition initially reduced EEO, some methanogens ( spp.) persisted and resistant populations were selected over time. Besides changing the methanogenic community structure, adding 2-BES also changed the bacterial community structure due to its impact on P. While we demonstrated that P could be manipulated using 2-BES to control EEO, methods that do not require the addition of a chemical inhibitor should be explored to maintain optimum P for long-term suppression of EEO.
有机废物流可通过混合微生物群落通过链伸长转化为高价值的平台化学品,如中链羧酸(MCCA)。然而,废物流的异质性和复杂微生物群落的使用可能导致不良反应,从而降低工艺效率。我们通过周期性地向生产 MCCA 的生物反应器中添加 2-溴乙磺酸盐(2-BES)来增加氢分压(P),探索通过氢营养型甲烷生成抑制来抑制过量的乙醇氧化为乙酸(EEO),当添加时,2-BES 的浓度达到 10mM。生物反应器以预处理的食物废物和含有高浓度短链羧酸和乙醇的啤酒厂废物为食。虽然 2-BES 的添加最初降低了 EEO,但一些产甲烷菌( spp.)持续存在,并且随着时间的推移选择了抗性种群。除了改变产甲烷菌群落结构外,添加 2-BES 还由于其对 P 的影响而改变了细菌群落结构。虽然我们证明可以使用 2-BES 来操纵 P 以控制 EEO,但应该探索不需要添加化学抑制剂的方法来维持最佳 P,以长期抑制 EEO。