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首页> 外文期刊>Ultrasonics sonochemistry >Application of ultrasound for green extraction of proteins from spirulina. Mechanism, optimization, modeling, and industrial prospects
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Application of ultrasound for green extraction of proteins from spirulina. Mechanism, optimization, modeling, and industrial prospects

机译:超声波螺旋藻蛋白质萃取的应用。 机制,优化,建模和工业前景

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摘要

A green and innovative method, manothermosonication (MTS), for proteins extraction from dry Arthrospira platensis cyanobacteria assisted by ultrasound was designed in this work. Manothermosonication (probe, 20 kHz) was compared to a conventional process performed in the same conditions without ultrasounds. The extraction was carried out with a continuous flow rate at 15 mL/hour. Extraction parameters were optimized using a central composite design. Moreover, mathematic modelling and microscopic investigations were realized to allow a better understanding of ultrasound physical and structural effects on spirulina filaments and mass transfer phenomena over time. Crude extract and sections stained with toluidine blue were analyzed with optical and scanning electron microscopies. According to experimental results, MTS promoted mass transfer (high effective diffusivity, D,) and enabled to get 229% more proteins (28.42 +/- 1.15 g/100 g DW) than conventional process without ultrasound (8.63 +/- 1.15 g/100 g DW). With 28.42 g of proteins per 100 g of dry spirulina biomass in the extract, a protein recovery rate of 50% was achieved in 6 effective minutes with a continuous MTS process. Microscopic observations showed that acoustic cavitation impacted spirulina filaments by different mechanisms such as fragmentation, sonoporation, detexturation. These various phenomena make extraction, release and solubilization of spirulina bioactive compounds easier.
机译:在这项工作中设计了一种绿色和创新的方法,用于从干燥的arthospira Platensis Cyanobacteria从干燥的arthospira platensis cyanobacteria提取的蛋白质。将制剂(探针,20kHz)与在不具有超声的同一条件下进行的常规方法进行比较。萃取以15mL /小时的连续流速进行。使用中央复合设计优化提取参数。此外,实现了数学建模和微观调查,以便更好地了解螺旋藻长丝和传质现象的超声物理和结构效应。用光学和扫描电子显微镜分析用甲苯胺蓝染色的粗提取物和截面。根据实验结果,MTS促进了大规模转移(高有效扩散,D,),使得蛋白质(28.42 +/- 1.15g / 100g DW)的蛋白质更多地获得229%(8.63 +/- 1.15g / 100 g dw)。在提取物中,每100克干燥的螺旋藻生物质为28.42g蛋白质,蛋白质回收率为50%,在6例有效分钟内实现,连续的MTS工艺。显微镜观察表明,声学气化受到不同机制的影响,如碎片,声孔,戒断。这些各种现象更容易提取,释放和溶解螺旋藻生物活性化合物。

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