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Extraction of microalgae derived lipids with supercritical carbon dioxide in an industrial relevant pilot plant

机译:在工业相关的中试工厂中用超临界二氧化碳萃取微藻类脂质

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Microalgae are capable of producing up to 70% w/w triglycerides with respect to their dry cell weight. Since microalgae utilize the greenhouse gas CO2, they can be cultivated on marginal lands and grow up to ten times faster than terrestrial plants, the generation of algae oils is a promising option for the development of sustainable bioprocesses, that are of interest for the chemical lubricant, cosmetic and food industry. For the first time we have carried out the optimization of supercritical carbon dioxide (SCCO2) mediated lipid extraction from biomass of the microalgae Scenedesmus obliquus and Scenedesmus obtusiusculus under industrrially relevant conditions. All experiments were carried out in an industrial pilot plant setting, according to current ATEX directives, with batch sizes up to 1.3 kg. Different combinations of pressure (7-80 MPa), temperature (20-200 A degrees C) and CO2 to biomass ratio (20-200) have been tested on the dried biomass. The most efficient conditions were found to be 12 MPa pressure, a temperature of 20 A degrees C and a CO2 to biomass ratio of 100, resulting in a high extraction efficiency of up to 92%. Since the optimized CO2 extraction still yields a crude triglyceride product that contains various algae derived contaminants, such as chlorophyll and carotenoids, a very effective and scalable purification procedure, based on cost efficient bentonite based adsorbers, was devised. In addition to the sequential extraction and purification procedure, we present a consolidated online-bleaching procedure for algae derived oils that is realized within the supercritical CO2 extraction plant.
机译:就其干细胞重量而言,微藻能够产生高达70%w / w的甘油三酸酯。由于微藻利用温室气体CO2,它们可以在边缘土地上种植,并且生长速度比陆生植物快十倍,因此藻油的产生是发展可持续生物过程的有前途的选择,化学润滑剂对此很感兴趣,化妆品和食品工业。在工业上相关的条件下,我们首次进行了超临界二氧化碳(SCCO2)介导的从微藻斜角藻和钝角藻的生物质中提取脂质的优化。根据当前的ATEX指令,所有实验均在工业试验工厂中进行,批量最大为1.3 kg。在干燥的生物质上测试了压力(7-80 MPa),温度(20-200 A摄氏度)和二氧化碳与生物质之比(20-200)的不同组合。发现最有效的条件是12 MPa的压力,20 A的温度和100的CO2与生物量之比,从而导致高达92%的高提取效率。由于优化的CO2提取仍可产生包含各种藻类衍生污染物(例如叶绿素和类胡萝卜素)的甘油三酯粗品,因此,基于成本高效的膨润土吸附剂,设计了一种非常有效且可扩展的纯化程序。除了顺序提取和纯化程序外,我们还提供了藻类衍生油的在线合并漂白程序,该程序可在超临界CO2提取工厂内实现。

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