Center for Microbial Ecology and Technology (CMET), Ghent University, Coupure Links 653, 9000 Ghent, Belgium; Center for Advanced Process Technology for Urban Resource Recovery (CAPTURE), Frieda Saeysstraat 1, 9000 Ghent, Belgium.
Center for Microbial Ecology and Technology (CMET), Ghent University, Coupure Links 653, 9000 Ghent, Belgium.
Bioresour Technol. 2022 Jul;355:127250. doi: 10.1016/j.biortech.2022.127250. Epub 2022 May 10.
Lactic acid-driven chain elongation enables upgrading low-value organic streams into caproic acid. Recently, volumetric production rates over 0.5 g L hhave been reported for carbohydrate-rich streams in expanded granular sludge bed (EGSB) reactors. However, many target streams contain mixtures of carbohydrates and lactic acid, and little is known about their impact on product profile and microbial ecology, or the importance of carbohydrates as substrate to achieve high rates. This manuscript investigated varying glucose-to-lactate ratios and observed that decreasing glucose-content eliminated odd-chain by-products, while glucose omission required acetic acid addition to support lactic acid conversion. Decreasing the glucose-content fed resulted in decreasing amounts of granular biomass, with the disappearance of granules when no glucose was fed. Lowering the HRT to 0.3 days while feeding only lactic and acetic acid likely triggered re-granulation, enabling the highest lactic acid-driven caproic acid production rates reported thus far at 16.4 ± 1.7 g L d.
乳酸驱动的链延伸使低价值有机流转化为己酸。最近,在膨胀颗粒污泥床(EGSB)反应器中,对于富含碳水化合物的流,报告的体积生产速率超过 0.5 g L h。然而,许多目标流都含有碳水化合物和乳酸的混合物,关于它们对产物分布和微生物生态学的影响,以及碳水化合物作为实现高速率的底物的重要性,知之甚少。本文研究了不同的葡萄糖-乳酸比,发现降低葡萄糖含量可以消除奇数链副产物,而葡萄糖缺失则需要添加乙酸来支持乳酸转化。减少进料中的葡萄糖含量会导致颗粒生物量减少,当不进料葡萄糖时,颗粒会消失。当仅进料乳酸和乙酸且 HRT 降低至 0.3 天时,可能会引发再颗粒化,从而实现迄今为止报道的最高乳酸驱动己酸生产速率,为 16.4±1.7 g L d。