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采用磁性粒子的淡水微藻收获的物理化学方法。

Physicochemical approach to freshwater microalgae harvesting with magnetic particles.

机构信息

Department of Biotechnology, Institute of Chemical Technology Prague, Technicka 5, 166 28 Prague, Czech Republic.

出版信息

Colloids Surf B Biointerfaces. 2013 Dec 1;112:213-8. doi: 10.1016/j.colsurfb.2013.07.053. Epub 2013 Aug 8.

Abstract

Magnetic harvesting of microalgal biomass provides an attractive alternative to conventional methods. The approach to this issue has so far been pragmatic, focused mainly on finding cheap magnetic agents in combination with harvestable microalgae species. The aim of this work was to study experimentally and theoretically the mechanisms leading to cell-magnetic agent attachment/detachment using real experiments and predictions made by colloidal adhesion (XDLVO) model. Two types of well defined magnetic beads (MBs) carrying ion exchange functional groups (DEAE - diethylaminoethyl and PEI - polyethylenimine) were studied in connection with microalgae (Chlorella vulgaris). Optimal harvesting efficiencies (>90%) were found for DEAE and PEI MBs, while efficient detachment was achieved only for DEAE MBs (>90%). These findings were in accordance with the predictions by XDLVO model. Simultaneously there was found a discrepancy between the XDLVO prediction and the poor detachment of PEI MBs from microalgal surface. This can be ascribed to an additional interaction (probably covalent bonds) between PEI and algal surface, which the XDLVO model is unable to capture given by its non-covalent nature.

摘要

磁性收获微藻生物质为传统方法提供了一种有吸引力的替代方法。到目前为止,解决这个问题的方法一直是务实的,主要集中在寻找廉价的磁性剂并与可收获的微藻物种结合。本工作的目的是使用实际实验和胶体附着(XDLVO)模型的预测来实验和理论上研究导致细胞-磁性剂附着/分离的机制。研究了两种具有离子交换官能团(DEAE - 二乙基氨基乙基和 PEI - 聚乙烯亚胺)的明确定义的磁性珠(MB)与微藻(普通小球藻)的关系。对于 DEAE 和 PEI MB,发现了最佳的收获效率(>90%),而仅对于 DEAE MB 实现了有效的分离(>90%)。这些发现与 XDLVO 模型的预测一致。同时,在 XDLVO 预测与 PEI MB 从微藻表面的不良分离之间发现了差异。这可以归因于 PEI 和藻类表面之间的附加相互作用(可能是共价键),XDLVO 模型由于其非共价性质而无法捕获。

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