首页> 外文期刊>Arabian Journal for Science and Engineering >The Role of Cationic Coagulant-to-Cell Interaction in Dictating the Flocculation-Aided Sedimentation of Freshwater Microalgae
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The Role of Cationic Coagulant-to-Cell Interaction in Dictating the Flocculation-Aided Sedimentation of Freshwater Microalgae

机译:阳离子凝集剂与细胞的相互作用在絮凝辅助淡水微藻沉积中的作用

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The coagulant chitosan and poly(diallyldimethylammonium chloride) (PDDA) were proven effective to aid the sedimentation of microalgal cells through electrostatic patch flocculation. A total amount of 30 mg/L chitosan and PDDA can achieve cell separation efficiency of and %, respectively. The chitosan outperformed PDDA and promoted 4.4 times faster rate of cell sedimentation than the self-sedimentation rate of cells. The chitosan employed the mechanism of charge neutralization to form larger flocs, while the PDDA that favored the formation of loops and tails protruding away from cell surface employed the bridging mechanism to form flocs. The rate of cell sedimentation induced by chitosan was the highest at pH 7, 8 (control) and 9 compared to that of PDDA, where the cell flocculation by using chitosan was dominated by charge neutralization mechanism at pH 7 and 8 (control), while the cell flocculation was mainly driven by bridging mechanism at pH 9. This result shows that the chitosan is feasible in the harvesting of freshwater microalgae without the need of pH adjustment. Therefore, the chitosan was proven more reliable and time effective than the PDDA in harvesting the freshwater Chlorella sp. without the need of pH adjustment.
机译:凝集性壳聚糖和聚(二烯丙基二甲基氯化铵)(PDDA)被证明可有效地通过静电贴片絮凝帮助微藻细胞沉淀。壳聚糖和PDDA的总量为30 mg / L时,可分别达到5%和5%的细胞分离效率。壳聚糖的性能优于PDDA,其细胞沉降速率比细胞的自我沉降速率快4.4倍。壳聚糖利用电荷中和机理形成较大的絮状物,而PDDA则通过桥接机制形成絮状物,而PDDA有利于形成从细胞表面突出的环和尾巴。与PDDA相比,在pH 7、8(对照)和9下,壳聚糖诱导的细胞沉降速率最高,后者在pH 7和8(对照)下通过电荷中和机理控制了使用壳聚糖絮凝的细胞,而pH值为9时,细胞絮凝作用主要由桥联机制驱动。该结果表明,壳聚糖在收获淡水微藻的过程中是可行的,无需调节pH。因此,事实证明,壳聚糖在收获淡水小球藻中比PDDA更可靠,更省时。无需调节pH值。

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