Effect of Fed-batch Culturing on the Growth and Lipid Production of Chlorella vulgaris fo. tertia Applying pH-auxostat Acetic Acid and Predefined Exponential Glucose Feeding

IF 1.4 4区 工程技术 Q3 ENGINEERING, CHEMICAL Periodica Polytechnica Chemical Engineering Pub Date : 2022-01-27 DOI:10.3311/ppch.19093
B. Nagy, K. Nagy, Balázs Ivanics, D. Fozer, I. Balogh, Á. Németh
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Abstract

The techniques of heterotrophic microalgae cultivation used to be resulting in higher productivity and better yield than autotrophic culturing. Batch cultivation strategy is commonly used with high glucose concentration, but its potential is limited for biomass production at an industrial scale. Usually, the best productivity can obtain at lower glucose concentration. Moreover, other carbon sources can cause inhibition at higher concentrations. Therefore, the fed-batch cultivation strategy is an obvious choice, as it can maintain the optimal amount of carbon source can be maintained throughout the fermentation by automating the feeding. Such self-regulatory automation is provided by the pH-auxostat addition of acetic acid, which was investigated in this study for Chlorella vulgaris fo. tertia. The pH-auxostat fermentation was upscaled, then the feeding profile was modelled and transformed to another fermentation where glucose was used as a carbon source instead of acetic acid. Thus, the preferred carbon sources were compared under the same circumstances. It was found that the tested strain consumes dissolved oxygen very fast on both carbon substrates. It favored the acetic acid at high nitrogen and phosphorus concentrations. The final biomass concentration was 29.2 g/L under pH-auxostat fed-batch strategy with acetic acid and 18.8 g/L with glucose, respectively. The highest lipid content (393 mg/g) was measured from the biomass in the case of acetic acid. The fermentation settings need further optimization, but the results concluded that pH-auxostat acetic acid feeding has a great potential for scale-up of Chlorella fermentation.
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补料分批培养对小球藻生长及产脂的影响。应用ph -抑氧乙酸和预定义指数葡萄糖饲养
异养微藻的培养技术比自养微藻具有更高的生产力和更好的产量。批量培养策略通常用于高葡萄糖浓度,但其潜力有限,在工业规模的生物质生产。通常,在较低的葡萄糖浓度下可以获得最佳的生产效率。此外,其他碳源在较高浓度下也能引起抑制作用。因此,分批喂料培养策略是一个明显的选择,因为它可以通过自动化喂料在整个发酵过程中保持最佳的碳源量。这种自我调节自动化是由pH-auxostat添加醋酸提供的,本研究对普通小球藻进行了研究。tertia。对ph -抑菌发酵进行了升级,然后对进料曲线进行了建模,并将其转化为另一种发酵,其中葡萄糖代替醋酸作为碳源。因此,在相同的情况下,比较了优选的碳源。结果表明,所测菌株在两种碳基质上都能快速消耗溶解氧。在高氮、高磷浓度条件下有利于乙酸的生成。ph -促生长素分批补料时,乙酸和葡萄糖的最终生物量浓度分别为29.2 g/L和18.8 g/L。在醋酸的情况下,生物质的脂质含量最高(393 mg/g)。发酵条件还需进一步优化,但结果表明ph -抑素乙酸投喂对小球藻发酵具有很大的放大潜力。
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来源期刊
CiteScore
3.10
自引率
7.70%
发文量
44
审稿时长
>12 weeks
期刊介绍: The main scope of the journal is to publish original research articles in the wide field of chemical engineering including environmental and bioengineering.
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