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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhancement of microalgae production by embedding hollow light guides to a flat-plate photobioreactor
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Enhancement of microalgae production by embedding hollow light guides to a flat-plate photobioreactor

机译:通过将空心光导嵌入平板光生物反应器中来增强微藻生产

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摘要

To offset the adverse effects of light attenuation on microalgae growth, hollow polymethyl methacrylate (PMMA) tubes were embedded into a flat-plate photobioreactor (PBR) as light guides. In this way, a fraction of incident light could be transmitted and emitted to the interior of the PBR, providing a secondary light source for cells in light-deficient regions. The average light intensity of interior regions 3-6 cm from surfaces with 70 lmol m (2) s (1) incident light was enhanced 2-6.5 times after 3.5 days cultivation, resulting in a 23.42% increase in biomass production to that cultivated in PBR without PMMA tubes. The photosynthetic efficiency of microalgae in the proposed PBR was increased to 12.52%. Moreover, the installation of hollow PMMA tubes induced turbulent flow in the microalgae suspension, promoting microalgae suspension mixing. However, the enhanced biomass production was mainly attributed to the optimized light distribution in the PBR. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了抵消光衰减对微藻生长的不利影响,将空心聚甲基丙烯酸甲酯(PMMA)管嵌入到平板光生物反应器(PBR)中作为光导。以此方式,一部分入射光可以被传输和发射到PBR的内部,从而为光缺乏区域中的细胞提供了辅助光源。培养3.5天后,距70 lmol m(2)s(1)入射光的表面3-6 cm处的内部区域的平均光强度提高了2-6.5倍,导致生物量的产量比在70lmol m(2)s(1)的情况下提高了23.42%不带PMMA管的PBR。拟议的PBR中微藻的光合效率提高到12.52%。此外,中空PMMA管的安装在微藻悬浮液中引起湍流,从而促进了微藻悬浮液的混合。但是,生物量产量的提高主要归因于PBR中优化的光分布。 (C)2016 Elsevier Ltd.保留所有权利。

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