Afecto Gonçalves Manuel Joao, González-Fernández Cristina, Greses Silvia
Biotechnological Processes Unit, IMDEA Energy, Madrid, Spain.
Department of Chemical Engineering and Environmental Technology, School of Industrial Engineering, University of Valladolid, Valladolid, Spain.
Bioengineered. 2025 Dec;16(1):2458369. doi: 10.1080/21655979.2025.2458369. Epub 2025 Feb 3.
Anaerobic fermentation (AF) processes are sensitive to temperature fluctuations, which can influence the microbial activity and overall metabolic performances. Anaerobic reactors can face unforeseen temperature control failures, leading to instabilities in the process. The present study investigated the effect of two short-term temperature perturbations (down to 20°C and 15°C) on AF of food wastes (FWs). While 20°C did not exhibit a negative impact on AF performance maintaining the bioconversion yields over 40%, the reactor subjected to 15°C presented an acidogenic limitation, which decreased the bioconversion yields (36.4 ± 1.8%). As a result, 2.2 ± 0.5 g/L of succinic acid was accumulated in the reactor, being identified as a temperature failure indicator. Once the conditions were reestablished (operation temperature of 25ºC), the metabolic redundancies identified in the reactors allowed the AFs recovery to initial fermentation yields. 20°C was further tested as operational temperature resulting in stable bioconversion yield similar to the Control Reactor (43.2 ± 0.3%). These results showed the feasibility of conducting AF under low temperatures, indicating the potential of this technology to increase the cost-effectiveness of AF at psychrophilic conditions.
厌氧发酵(AF)过程对温度波动敏感,这会影响微生物活性和整体代谢性能。厌氧反应器可能会面临不可预见的温度控制故障,从而导致过程不稳定。本研究调查了两种短期温度扰动(降至20°C和15°C)对食物垃圾(FWs)厌氧发酵的影响。虽然20°C对厌氧发酵性能没有负面影响,生物转化产率保持在40%以上,但经受15°C的反应器出现了产酸限制,这降低了生物转化产率(36.4±1.8%)。结果,反应器中积累了2.2±0.5g/L的琥珀酸,被确定为温度故障指标。一旦条件恢复(操作温度为25ºC),反应器中确定的代谢冗余使厌氧发酵恢复到初始发酵产率。进一步测试了20°C作为操作温度,其生物转化产率稳定,与对照反应器相似(43.2±0.3%)。这些结果表明了在低温下进行厌氧发酵的可行性,表明该技术在嗜冷条件下提高厌氧发酵成本效益的潜力。