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Combination of cell disruption method and pH variation as pre-treatment for lipid extraction of Nannochloropsis sp.

机译:细胞破坏方法和pH变异的组合作为Nannchloropsis脂质提取的预处理。

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The quantity of fossil-based fuel also has depleted due to over-exploitation. Therefore, environmentally friendly and more sustainable energy resources are being searched to fill in the energy supplies in the future. Microalgae have been considered by the researcher as alternative biofuel feedstock due to their high lipid content. Lipid extraction is one of the crucial steps in biofuel production from microalgae. The aim of this study was to analyze the best combination of pre-treatments to obtain microalgae lipid for biodiesel. The utilization of different cell disruption methods, including sonication and microwave, combined with pH variation (3, 5, 7) was implemented on microalgae Nannochloropsis sp. The experiment shows cell disruption with sonication and combined with low pH 3 of oil extraction from Nannochlorpsis sp. resulted in the highest yield of oil content (1.15% gr/gr dry weight). The lipid extracted from each pH pre-treatment were analyzed using GCMS for its fatty acid profile. The best pretreatments combination was obtained from lipid extraction from pH 5 and sonication-assisted method.
机译:由于过度开采,化石燃料的数量也耗尽。因此,正在搜索环境友好和更可持续的能源资源来填补未来的能源供应。研究人员认为微藻作为替代生物燃料原料,由于其高脂质含量。脂质提取是微藻生物燃料生产中的一个关键步骤之一。本研究的目的是分析预治疗的最佳组合,以获得生物柴油的微藻脂质。在MicroalGae Nannchloropsis SP上实施了不同细胞破坏方法,包括超声处理和微波,与pH变异(3,5,7)相结合。该实验表明,通过超声处理和从Nannochlorpsis SP的低pH 3的低pH 3结合的细胞破坏。导致油含量最高(1.15%GR / GR干重)。使用GCMS分析从每种pH预处理中提取的脂质,用于其脂肪酸谱。从pH5和超声处理辅助方法中从脂质萃取获得最佳预处理组合。

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