重新使用
小粒咖啡
生物过程
食品科学
制浆造纸工业
生物量(生态学)
废水
生物技术
营养物
生产力
环境科学
化学
废物管理
生物
农学
环境工程
园艺
工程类
有机化学
经济
古生物学
宏观经济学
作者
Omar Pillaca‐Pullo,André Moreni Lopes,Waldir D. Estela‐Escalante
摘要
Abstract Coffee is a crop of significant socioeconomic importance, and the reuse of agri‐food by‐products and biowaste has great potential across several industries. Coffee wastewater (CWW) is a valuable resource containing essential nutrients that can be utilized by Candida sorboxylosa for single‐cell protein (SCP) production. This utilization contributes to mitigating the negative impacts of agro‐industrial waste. The optimization of culture conditions using the design of experiments (DoE) technique is crucial in understanding the environmental factors influencing metabolite production. In our study, the DoE technique was employed to analyze culture conditions, including room temperature, pH 8.4, agitation at 200 rpm, a headspace of 60% (v/v), and an inoculum of 0.75 DO 600nm over 28‐h period. This approach resulted in a remarkable SCP yield of 64.4% and dry cell weight (DCW) of 2.26 g/L. It is noteworthy that there is no literature reporting SCP production under alkaline pH conditions in yeast. Interestingly, our work demonstrated that an alkaline pH of 8.4 significantly influenced SCP production by C. sorboxylosa . The DoE technique proved to be an efficient statistical tool for optimizing culture conditions, offering several advantages, such as: (i) conducting cultures at room temperature to minimize unnecessary energy consumption; (ii) reducing the incubation time from 46 to 28 h, thereby enhancing overall productivity; (iii) achieving 1.7‐fold increase in SCP yield compared to previous basal production levels.
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