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评价通过提高 pH 值诱导絮凝来收获微藻和再利用絮凝后的介质。

Evaluation of flocculation induced by pH increase for harvesting microalgae and reuse of flocculated medium.

机构信息

Department of Chemistry, Jinan University, Guangzhou 510070, PR China.

出版信息

Bioresour Technol. 2012 Apr;110:496-502. doi: 10.1016/j.biortech.2012.01.101. Epub 2012 Jan 28.

Abstract

Flocculation induced by pH increase for harvesting microalgae and reuse of flocculated medium were evaluated. Increasing the medium pH value induced the highest flocculation efficiency of up to 90% for freshwater microalgae (Chlorella vulgaris, Scenedesmus sp., Chlorococcum sp.) with low/medium biomass concentrations and marine microalgae (Nannochloropsis oculata, Phaeodactylum tricornutum). The mechanism may be explained that Mg(2+) in the growth medium hydrolyzed to form magnesium hydroxide precipitate, which coagulated microalgal cells by sweeping flocculation and charge neutralization. Additionally, this study revealed that the microalgal biomass concentrations and released polysaccharide (RPS) from microalgae could influence the flocculation efficiencies. Furthermore, neutralizing pH and then supplementing nutrients allowed the flocculated medium to maintain an approximate growth yield to that of the fresh medium in algal cultivation. These results suggest that the method presented here is effective, and allows the reuse of the flocculated medium, thereby contributing to the economic production from algae to biodiesel.

摘要

评估了通过 pH 值升高诱导絮凝来收获微藻和再利用絮凝介质。提高介质 pH 值可诱导最高达 90%的淡水微藻(普通小球藻、栅藻、绿球藻)和海洋微藻(盐生杜氏藻、三角褐指藻)的絮凝效率,这些微藻的生物量浓度较低/中等。其机制可以解释为生长介质中的 Mg(2+) 水解形成氢氧化镁沉淀,通过扫集絮凝和电荷中和来凝聚微藻细胞。此外,本研究表明,微藻的生物量浓度和从微藻释放的多糖(RPS)会影响絮凝效率。此外,中和 pH 值然后补充营养物质可以使絮凝后的培养基在藻类培养中保持近似于新鲜培养基的生长产量。这些结果表明,本文提出的方法是有效的,并允许再利用絮凝后的培养基,从而有助于从藻类到生物柴油的经济生产。

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