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首页> 外文期刊>Biochemical Engineering Journal >PhotoBiobox: A tablet sized, low-cost, high throughput photobioreactor for microalgal screening and culture optimization for growth, lipid content and CO2 sequestration
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PhotoBiobox: A tablet sized, low-cost, high throughput photobioreactor for microalgal screening and culture optimization for growth, lipid content and CO2 sequestration

机译:PhotoBiobox:平板电脑大小,低成本,高通量的光生物反应器,用于微藻筛查和培养优化,以实现生长,脂质含量和二氧化碳封存

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Microbial screening and culture optimization is a laborious, multifaceted and expensive procedure often taking years and millions to identify the ideal strain for specific use. In this study, a high throughput, tablet-sized, low cost photobioreactor, herein referred as "PhotoBiobox", was fabricated and tested for screening and culture optimization of microalgae suitable for biomass and biodiesel production, and CO2 sequestration. PhotoBiobox is equipped with a LED array and photo gradient filter offering different light intensities. PhotoBiobox was fabricated to screen and cultivate several microbial strains in 96-well plate in wide temperature range and CO2 atmosphere. To test its efficacy, a total of 12 microalgal strains were isolated from Korean freshwaters, identified and screened for high growth and lipid accumulation potential. Among the 12 strains, Parachlorella sp., JD076 showed highest growth rate, remarkable stability and tolerance to different temperature regimes. Optimization experiments using PhotoBiobox revealed that this strain had optimum temperature range and light intensity of 24-25 degrees C and 400 mu mol m(-2) s(-1), respectively, with high growth rate and lipid content in 5% CO2 condition. The screening and optimization of culture conditions using PhotoBiobox took just 15 days, in total, which could radically reduce both screening costs and time. PhotoBiobox can be used as a screening and optimization reactor in several areas of microbiology and cell biology, while serving as a prototype for furthering research on miniaturization in this field. (C) 2015 Elsevier B.V. All rights reserved.
机译:微生物筛选和培养优化是一项费力,多方面且昂贵的过程,通常需要数百万年才能确定特定用途的理想菌株。在该研究中,制造并测试了高通量,片剂大小,低成本的光生物反应器,在本文中称为“ PhotoBiobox”,用于筛选和培养适合于生物质和生物柴油生产以及二氧化碳封存的微藻培养优化。 PhotoBiobox配备有提供不同光强度的LED阵列和照片渐变滤镜。制造PhotoBiobox的目的是在宽温度范围和CO2气氛下在96孔板中筛选和培养几种微生物菌株。为了测试其功效,从韩国淡水中分离出总共12种微藻菌株,对其进行了鉴定和筛选,以检测其高生长和脂质积累潜力。在这十二种菌株中,副球菌JD076表现出最高的生长速度,显着的稳定性和对不同温度条件的耐受性。使用PhotoBiobox进行的优化实验表明,该菌株的最佳温度范围和光强度分别为24-25摄氏度和400μmol m(-2)s(-1),在5%CO2条件下具有高生长速率和脂质含量。使用PhotoBiobox筛选和优化培养条件总共需要15天,这可以从根本上减少筛选成本和时间。 PhotoBiobox可以在微生物学和细胞生物学的多个领域用作筛选和优化反应器,同时可以作为该领域进一步研究微型化的原型。 (C)2015 Elsevier B.V.保留所有权利。

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