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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Flocculation properties of several microalgae and a cyanobacterium species during ferric chloride, chitosan and alkaline flocculation
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Flocculation properties of several microalgae and a cyanobacterium species during ferric chloride, chitosan and alkaline flocculation

机译:氯化铁,壳聚糖和碱性絮凝过程中几种微藻和蓝细菌的絮凝特性

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Flocculation holds great potential as a low-cost harvesting method for microalgae biomass production. Three flocculation methods (ferric chloride, chitosan, and alkaline flocculation) were compared in this study for the harvesting of 9 different freshwater and marine microalgae and one cyanobacterium species. Ferric chloride resulted in a separation efficiency greater than 90% with a concentration factor (CF) higher than 10 for all species. Chitosan flocculation worked generally very well for freshwater microalgae, but not for marine species. Alkaline flocculation was most efficient for harvesting of Nannochloropsis, Chlamydomonas and Chlorella sp. The concentration factor was highly variable between microalgae species. Generally, minimum flocculant dosages were highly variable across species, which shows that flocculation may be a good harvesting method for some species but not for others. This study shows that microalgae and cyanobacteria species should not be selected solely based on their productivity but also on their potential for low-cost separation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:絮凝作为微藻生物质生产的低成本收获方法具有巨大潜力。在本研究中,比较了三种絮凝方法(三氯化铁,壳聚糖和碱性絮凝)用于收获9种不同的淡水和海洋微藻以及一种蓝藻。氯化铁导致所有物种的分离效率均高于90%,而浓缩系数(CF)则高于10。壳聚糖絮凝通常对淡水微藻非常有效,但对海洋物种却不起作用。碱性絮凝最有效地收获拟南芥,衣藻和小球藻。在微藻种之间,浓度因子变化很大。通常,最小絮凝剂剂量在不同物种之间变化很大,这表明絮凝对于某些物种可能是一种很好的收获方法,而对于其他物种则不是。这项研究表明,微藻和蓝细菌的种类不应该仅仅根据它们的生产力来选择,还应该根据它们低成本分离的潜力来选择。 (C)2016 Elsevier Ltd.保留所有权利。

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