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首页> 外文期刊>Current Environmental Engineering >Optimizing Lipid Accumulation Content by Cryptococcus curvatus Using Response Surface Methodology and Molasses as Sole Carbon Source
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Optimizing Lipid Accumulation Content by Cryptococcus curvatus Using Response Surface Methodology and Molasses as Sole Carbon Source

机译:使用响应表面方法和糖蜜作为唯一碳源的响应表面方法和糖蜜优化脂质累积含量

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摘要

Background: The severe increase in the consumption of fossil fuels has caused great concern. The natural resources required to produce those fossil fuels cannot be replaced in a short period of time. Therefore, the demand for alternative energy sources that can substitute petroleum-based sources and diminish the negative environmental impacts generated from the manufacturing and processing of fossil fuels has garnered attention.Objective: Among the studied alternatives, biodiesel production using microorganisms has shown several advantages over other types of biofuels. However, the production of biodiesel is still not economically feasible. As such, this study uses sugar cane molasses to reduce the cost of raw materials and optimize the culture conditions to obtain a high lipid yield from an oleaginous yeast that can be eventually used to produce biofuel.Results and Conclusion: The following culture medium conditions were found to maximize the lipid accumulation from the yeast, Cryptococcus curvatus when grown in a 5% m/v molasses medium (50 g/L molasses): 34.89°C, pH 5.99, and C:Nof 121.25 as result offlask testing and data analysis with the Box-Behnken Design. The existence of palmitic acid (C16:0), oleic acid (C18:l), and linoleic acid (CI8:2) as the dominant components accounting for 82.26% of the total was confirmed through the fatty acid composition and lipid analysis (FAMEs). This suggests that the lipids accumulated by C. curvatus may be suitable to be used as a biodiesel source. This result was corroborated by the bis-allylic position equivalent (46.23) and cetane number values (52.31), which met both American and European standards for biodiesel quality.
机译:背景:化石燃料消耗的严重增加导致了很大的关注。生产这些化石燃料所需的自然资源不能在短时间内更换。因此,对替代能源的需求可以替代石油源的源源和减少化石燃料的制造和加工产生的负面环境影响已经受到关注。目的:在学习的替代方案中,使用微生物的生物柴油产生的产生了几个优点其他类型的生物燃料。然而,生物柴油的生产仍然在经济上不可行。因此,本研究使用甘蔗糖蜜来降低原料的成本,并优化培养条件,以获得来自含油酵母的高脂产量,这些酵母可以最终用于产生生物燃料。结果和结论:以下培养基条件是以下培养基条件发现在5%M / L糖蜜培养基(50g / L糖蜜):34.89°C,pH 5.99和C:NOF 121.25中生长时,从酵母中达到酵母的脂质积累,如结果脱落测试和数据分析用box-behnken设计。通过脂肪酸组成和脂质分析证实了棕榈酸(C16:0),油酸(C18:L)和亚油酸(C18:L)和亚油酸(C12:2)作为总量的82.26%的占总成分(FAMES )。这表明C. cucuatus累积的脂质可以适合用作生物柴油源。通过双烯丙基位置(46​​.23)和十六烷值值(52.31),该结果得到了证实,其符合美国和欧洲生物柴油质量标准。

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