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首页> 外文期刊>Journal of microbiology and biotechnology >A Cost Analysis of Microalgal Biomass and Biodiesel Production in Open Raceways Treating Municipal Wastewater and under Optimum Light Wavelength
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A Cost Analysis of Microalgal Biomass and Biodiesel Production in Open Raceways Treating Municipal Wastewater and under Optimum Light Wavelength

机译:最佳光波长下露天水道中微藻生物量和生物柴油生产的成本分析

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Open raceway ponds are cost-efficient for mass cultivation of microalgae compared with photobioreactors. Although low-cost options like wastewater as nutrient source is studied to overcome the commercialization threshold for biodiesel production from microalgae, a cost analysis on the use of wastewater and other incremental increases in productivity has not been elucidated. We determined the effect of using wastewater and wavelength filters on microalgal productivity. Experimental results were then fitted into a model, and cost analysis was performed in comparison with control raceways. Three different microalgal strains, Chlorella vulgaris AG10032, Chlorella sp. JK2, and Scenedesmus sp. JK10, were tested for nutrient removal under different light wavelengths (blue, green, red, and white) using filters in batch cultivation. Blue wavelength showed an average of 27% higher nutrient removal and at least 42% higher chemical oxygen demand removal compared with white light. Naturally, the specific growth rate of microalgae cultivated under blue wavelength was on average 10.8% higher than white wavelength. Similarly, lipid productivity was highest in blue wavelength, at least 46.8% higher than white wavelength, whereas FAME composition revealed a mild increase in oleic and palmitic acid levels. Cost analysis reveals that raceways treating wastewater and using monochromatic wavelength would decrease costs from 2.71 to 0.73 $/kg biomass. We prove that increasing both biomass and lipid productivity is possible through cost-effective approaches, thereby accelerating the commercialization of low-value products from microalgae, like biodiesel.
机译:与光生物反应器相比,开放的跑道池对于微藻的大规模养殖具有成本效益。尽管研究了诸如废水作为营养源的低成本选择方案,以克服微藻生产生物柴油的商业化门槛,但尚未阐明有关废水使用和其他生产率提高的成本分析。我们确定了使用废水和波长过滤器对微藻生产力的影响。然后将实验结果拟合到模型中,并与控制滚道进行成本分析。三种不同的微藻菌株,小球藻AG10032,小球藻。 JK2和Scenedesmus sp。使用分批培养的滤光片测试了JK10在不同光波长(蓝色,绿色,红色和白色)下的营养去除率。与白光相比,蓝色波长的养分去除平均高出27%,化学需氧量去除至少高出42%。自然地,在蓝色波长下培养的微藻的比生长速率平均比白色波长高10.8%。同样,脂质生产率在蓝色波长下最高,比白色波长高至少46.8%,而FAME成分显示油酸和棕榈酸水平有轻度增加。成本分析显示,处理废水并使用单色波长的水道将使成本从2.71美元/千克生物质降低。我们证明,通过具有成本效益的方法来提高生物量和脂质生产率是可能的,从而加速了微藻类低价值产品(如生物柴油)的商业化。

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