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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >A new biofilm based microalgal cultivation approach on shifting sand surface for desert cyanobacterium Microcoleus vaginatus
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A new biofilm based microalgal cultivation approach on shifting sand surface for desert cyanobacterium Microcoleus vaginatus

机译:基于新的生物膜微藻栽培方法,用于沙漠碎片散孔迷路

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摘要

Biofilm based microalgal cultivation has recently received great attention because of its low water requirement and harvesting cost. However, the contradiction between microalgal attachment and harvesting still hinders the development of this technology. Therefore, in this study the most readily available and inexpensive shifting sand was used as attached substrate for microalgal (Microcoleus vaginatus) biofilm cultivation under different water conditions. After the inoculation, a stable and easily peeled microalgal biofilm formed through filamentous binding and exopolysaccharide cementing. In general, microalgal biomass, photosynthetic activity and exopolysaccharide accumulation were all significantly affected by the cultivation time, water content and their interaction (P < 0.001). According to the maximal photosynthetic activity and microalgal productivity, cultivation time of microalgal biofilm on sand surface should be controlled around 15-25 days, with water content at 10%. Based on the biofilm cultivation system, microalgal biomass yield reached up to 11 g m(-2) eventually on the sand surface. (C) 2017 Published by Elsevier Ltd.
机译:基于生物膜的微藻栽培最近受到极大的关注,因为它的水需求量低,收获成本。然而,微藻附着和收获之间的矛盾仍然阻碍了这项技术的发展。因此,在本研究中,最容易获得的和廉价的换档砂被用作在不同水条件下的微藻(MicroColeus Vaginatus)生物膜培养的附着基板。接种后,通过丝状结合和外偶粘合形成稳定且易去皮的微藻生物膜。通常,微藻生物质,光合活性和潜水糖累积都受到培养时间,含水量及其相互作用的显着影响(P <0.001)。根据最大光合活性和微观生产力,砂表面上微藻生物膜的培养时间应在15-25天内控制,水含量为10%。基于生物膜培养系统,在沙面上最终达到11g m(-2)的微藻生物质产率。 (c)2017年由elestvier有限公司出版

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