Comparison of batch, fed-batch and continuous operation modes for scalable polyhydroxyalkanoate (PHA) production and carbon sequestration from phenol

羟基烷酸 苯酚 化学 生产(经济) 批处理 制浆造纸工业 固碳 碳纤维 批量生产 废物管理 有机化学 计算机科学 经济 二氧化碳 生物 细菌 微观经济学 工程类 复合数 程序设计语言 遗传学 算法
作者
Qiuyue Tao,Heyun Huang,Mingfeng Yang,Yuqi Zou,Marie K. Harder,Qun Yan,Bo Liang,Ιωάννα Ντάϊκου,Γεωργία Αντωνοπούλου,Gérasimos Lyberatos,Yi Zhang
出处
期刊:Journal of water process engineering [Elsevier BV]
卷期号:60: 105147-105147 被引量:8
标识
DOI:10.1016/j.jwpe.2024.105147
摘要

Polyhydroxyalkanoates (PHA) are biodegradable intracellular polymers, and a renewable alternative to conventional plastics. To reduce PHA's cost, this study combined an unconventional carbon source, i.e. a toxic aromatics phenol, with an acclimated consortium, to develop a scalable PHA production process. The resultant process performance was systematically compared across three operational modes: batch, fed-batch, and continuous. Phenol toxicity caused inhibition in the batch mode, reducing the PHA synthesis rate but resulting in a high PHA content in cells (PHA% > 50 %). Fed-batch feeding alleviated such inhibition, facilitating a high PHA titer and yield from the substrate. Interestingly, a higher feeding rate in the fed-batch reactor improved its performance, probably by providing a suitable food-to-microbe ratio for the biomass. Using a continuous mode also reduced phenol toxicity, but resulted in more synthesis of non-PHA cellular materials (NPCM). The difference might have been caused by different metabolic states and the presence of intermediates in the reactors. Comparing all 14 conditions under the three modes, feeding phenol more gradually tended to channel substrate away from PHA to NPCM synthesis. The volumetric productivity generally ranged from 3 to 12 mg L−1 min−1, while the biomass productivity was between 2 and 11 mg g initial CDW−1 min−1. A 3-stage, production-harvest and starvation-production process was then designed to simulate real industrialized manufacturing, where the operational modes had a long-term effect on biomass' productivity. Fed-batch mode performed the best, as it fixed 1/3 of phenol's organic carbon in PHA product, suggesting high potential for future application.
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