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Light requirements in microalgal photobioreactors: An overview of biophotonic aspects

机译:微藻光生物反应器的光需求:生物光子学方面的概述

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In order to enhance microalgal growth in photobioreactors (PBRs), light requirement is one of the most important parameters to be addressed; light should indeed be provided at the appropriate intensity, duration, and wavelength. Excessive intensity may lead to photo-oxidation and -inhibition, whereas low light levels will become growth-limiting. The constraint of light saturation may be overcome via either of two approaches: increasing photosynthetic efficiency by genetic engineering, aimed at changing the chlorophyll antenna size; or increasing flux tolerance, via tailoring the photonic spectrum, coupled with its intensity and temporal characteristics. These approaches will allow an increased control over the illumination features, leading to maximization of microalgal biomass and metabolite productivity. This minireview briefly introduces the nature of light, and describes its harvesting and transformation by microalgae, as well as its metabolic effects under excessively low or high supply. Optimization of the photosynthetic efficiency is discussed under the two approaches referred to above; the selection of light sources, coupled with recent improvements in light handling by PBRs, are chronologically reviewed and critically compared.
机译:为了增强光生物反应器(PBR)中微藻的生长,光需求是最重要的参数之一。确实应该以适当的强度,持续时间和波长提供光。强度过高可能导致光氧化和抑制,而低光照水平将成为生长限制。可以通过以下两种方法之一克服光饱和的限制:通过遗传工程提高光合效率,目的是改变叶绿素天线的大小;或通过调整光子光谱及其强度和时间特性来提高通量公差。这些方法将允许对照明功能的增强控制,从而使微藻生物量和代谢产物的生产率最大化。这篇简短的评论简要介绍了光的性质,并描述了光通过微藻的收获和转化以及在过低或过高供给下的代谢作用。在上述两种方法中讨论了光合效率的优化。按时间顺序审查并严格比较光源的选择以及PBR在光处理方面的最新改进。

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