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Cationic surfactant-based method for simultaneous harvesting and cell disruption of a microalgal biomass

机译:基于阳离子表面活性剂的微藻生物质同时收获和细胞破碎的方法

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Microalgae are one of the most promising sustainable energy sources for biodiesel production. However, the high costs of the downstream process are a major bottleneck for commercial-scale production of biodiesel from a microalgal biomass. A novel approach called the cationic surfactant-based harvesting and cell disruption (CSHD) method was studied to determine its effectiveness in simultaneous microalgal biomass harvesting and cell disruption. Using CSHD, the harvesting efficiency reached more than 91% in less than 5. min and 97% in 90. min. Moreover, CSHD exhibited a powerful ability to disrupt the cells; the lipid recovery was increased 133% compared to not using CSHD. CSHD allowed the extraction of up to 100% of the total lipids from a wet microalgal biomass with 80% water content. All of these results were achieved without using energy-intensive equipment. Altogether, our results suggest that CSHD is an energy-efficient technique for the downstream process of microalgal lipid production.
机译:微藻是生物柴油生产中最有希望的可持续能源之一。然而,下游工艺的高成本是从微藻类生物质商业规模生产生物柴油的主要瓶颈。研究了一种新方法,称为基于阳离子表面活性剂的收获和细胞破坏(CSHD)方法,以确定其在同时收获微藻生物质和细胞中的有效性。使用CSHD,收割效率在不到5分钟的时间内达到91%以上,在90分钟的时间内达到97%。此外,CSHD具有强大的破坏细胞能力。与不使用CSHD相比,脂质回收率提高了133%。 CSHD允许从含水量为80%的湿微藻生物质中提取高达100%的总脂质。所有这些结果都是在不使用高能耗设备的情况下实现的。总而言之,我们的结果表明CSHD是微藻脂质生产下游过程的一种节能技术。

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