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A novel subcritical fucoxanthin extraction with a biorefinery approach

机译:一种新型亚临界性浮豆花素,含生物术方法

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摘要

Eco-friendly, cost efficient and effective extraction methods have become significant for the industries applying zero waste principles. The two main objectives of this study were; to examine fucoxanthin extraction from wet Phaeodactylum tricornutum using subcritical fluid extraction and to characterize the residual biomass in order to determine the potential application areas. The highest fucoxanthin yield of 0.69 +/- 0.05 mg/g wet cell weight was achieved using methanol with solvent-to-solid ratio of 200:1 at 120 rpm, 20 MPa pressure and at 35 degrees C for 60 min by subcritical extraction. Microscopy images showed that most of the cells were disrupted and intracellular components were effectively released. Based on the results of energy dispersive spectroscopy, biomass contained a mixture of organic molecules including mainly carbon (57-72%), oxygen (26-41%), magnesium (0.6-1.4%) and silica (0.4-1%) (wt%). These results make the residual biomass a potential candidate for various areas such as bioenergy, material sciences and sensor technologies.
机译:环保,成本效率和有效的提取方法对应用零废物原则的行业变得非常重要。这项研究的两个主要目标是;检查亚临界流体萃取的湿酞菁Tricornutum从湿Phaeodartylum Tricornutum萃取,并表征残留生物质以确定潜在的应用领域。使用甲醇在120rpm,20mPa压力下的溶剂至固体比为200:1,在35℃下,通过亚临临60mP,在35℃下,使用甲醇,在35℃下实现最高的岩藻素产率。显微镜图像显示,大多数细胞被破坏,细胞内部件有效释放。基于能量色散光谱的结果,生物质含有有机分子的混合物,包括碳(57-72%),氧(26-41%),镁(0.6-1.4%)和二氧化硅(0.4-1%)( wt%)。这些结果使残余生物质成为生物能源,材料科学和传感器技术等各种区域的潜在候选者。

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