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首页> 外文期刊>Innovative Food Science & Emerging Technologies >Pulsed electric energy and ultrasonication assisted green solvent extraction of bio-molecules from different microalgal species
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Pulsed electric energy and ultrasonication assisted green solvent extraction of bio-molecules from different microalgal species

机译:来自不同微藻物种的脉冲电能和超声辅助生物分子的绿色溶剂提取

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The effects of physical treatments (pulsed electrical fields (PEF), high voltage electrical discharges (HVED) and ultrasonication (US)) on aqueous extraction of carbohydrates and proteins, and ethanolic extraction of chlorophyll a from three microalgal species (Nannochloropsis sp., P. tricornutum and P. kessleri) have been studied. The total energy consumption of 530 kJ/kg suspension was applied for each treatment. For studied species, HVED was the most effective for extraction of carbohydrates, while US was the most effective for extraction of proteins and chlorophyll a. The observed differences for studied species can reflect the more fragile cell wall structure for P. tricornutum as compared with Nannochloropsis sp. or P. kessleri. The applied PEF, HVED and US treatments along with combinations of aqueous extraction of carbohydrates and proteins, and ethanolic extraction of pigments can be used in future implementations of selective extraction of valuable bio-molecules from microalgae.
机译:物理处理(PEF),高压输电(HVEVE)和超声波(US))对碳水化合物和蛋白质的水性提取物,以及来自三种微藻物种的叶绿素A(Nannochloropsis sp.,p 。已经研究过Tricornutum和P. Kessleri)。每次治疗施用530kJ / kg悬浮液的总能耗。对于所研究的物种,HVEVE是提取碳水化合物最有效的,而美国对蛋白质和叶绿素A的提取最有效。与Nannchloropsis SP相比,所观察到的研究差异可以反映P. Tricornutum的更脆弱的细胞壁结构。或p. kessleri。应用的PEF,覆盖和美国治疗以及碳水化合物和蛋白质的组合,以及颜料的乙醇萃取可用于未来的微藻的有价值生物分子的选择性的实现。

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