首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Use of wavelength-selective optical light filters for enhanced microalgal growth in different algal cultivation systems
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Use of wavelength-selective optical light filters for enhanced microalgal growth in different algal cultivation systems

机译:使用波长选择光学滤光片增强不同藻类培养系统中微藻的生长

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摘要

This work is to use thin film nano-materials as light filters to selectively transmit certain wavelengths from natural sunlight to algal culture. A red light filter (620-710 nm) and blue filter (450-495 nm) were evaluated. Algae were grown in flasks, flat panel reactors, and rotating algal biofilm (RAB) system. It was found that the light filters did not improve algal growth in flask cultures, probably due to the additional reflection of light by the glass wall of the flasks. However, the light filters significantly (P < 0.05) improved biomass yield (13-34%) in flat panel reactors and biomass productivity (70-100%) in RAB system, depending on the growth mode and lighter filters. Such improvements may be due to the eliminating the ultra-violet (UV) damaging the cellular structure. The biomass compositions did not change significantly among different light-filter cultures (P > 0.05). The research shows a great potential of using light filters to improve microalgal growth. (C) 2014 Elsevier Ltd. All rights reserved.
机译:这项工作是使用薄膜纳米材料作为滤光器,以选择性地将某些波长从自然日光传输到藻类培养物。评价了红色滤光片(620-710 nm)和蓝色滤光片(450-495 nm)。藻类在烧瓶,平板反应器和旋转藻类生物膜(RAB)系统中生长。发现滤光片不能改善烧瓶培养物中藻类的生长,这可能是由于烧瓶的玻璃壁对光的附加反射所致。然而,取决于生长方式和较轻的滤光片,滤光片可显着(P <0.05)改善平板反应器中的生物质产率(13-34%)和RAB系统中的生物质生产率(70-100%)。这样的改进可能是由于消除了破坏细胞结构的紫外线(UV)。在不同的滤光器培养物中,生物量组成没有显着变化(P> 0.05)。研究表明,使用滤光片改善微藻生长的巨大潜力。 (C)2014 Elsevier Ltd.保留所有权利。

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