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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Design of algal film photobioreactors: Material surface energy effects on algal film productivity, colonization and lipid content
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Design of algal film photobioreactors: Material surface energy effects on algal film productivity, colonization and lipid content

机译:藻膜光生物反应器的设计:材料表面能对藻膜生产力,定殖和脂质含量的影响

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A parallel plate air lift reactor was used to examine the growth kinetics of mixed culture algal biofilms grown on various materials (acrylic, glass, polycarbonate, polystyrene and cellulose acetate). The growth kinetics of the algal biofilms were non-linear overall and their overall productivities ranged from 1.10-2.08 g/m~2 day, with those grown on cellulose acetate having the highest productivity. Overall algal biofilm productivity was largely explained by differences in the colonization time which in turn was strongly correlated to the polar surface energy of the material, but weakly correlated to water-material contact angle. When colonization time was taken into account, the productivity for all materials except acrylic was not significantly different at approximately 2 g/m2/day. Lipid content of the algal biofilms ranged from 6% to 8% (w/w) and was not correlated to water-material contact angle or polar surface energy. The results have potential application for selecting appropriate materials for algal film photobioreactors.
机译:使用平行板气举反应器来检查在各种材料(丙烯酸,玻璃,聚碳酸酯,聚苯乙烯和醋酸纤维素)上生长的混合培养藻类生物膜的生长动力学。藻类生物膜的生长动力学总体上是非线性的,它们的总生产率在1.10-2.08 g / m〜2天之间,其中以乙酸纤维素生长的生产率最高。藻类生物膜的整体生产力在很大程度上由定居时间的差异解释,而定居时间的差异与材料的极性表面能密切相关,而与水与材料的接触角则弱相关。当考虑到定植时间时,除丙烯酸外的所有材料的生产率在大约2 g / m2 / day时没有显着差异。藻类生物膜的脂质含量为6%至8%(w / w),与水-材料接触角或极性表面能无关。该结果对于为藻膜光生物反应器选择合适的材料具有潜在的应用价值。

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