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首页> 外文期刊>Journal of Biotechnology >Understanding the salinity effect on cationic polymers in inducing flocculation of the microalga Neochloris oleoabundans
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Understanding the salinity effect on cationic polymers in inducing flocculation of the microalga Neochloris oleoabundans

机译:了解盐度对阳离子聚合物诱导微藻新绿藻絮凝絮凝的影响

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A mechanistic study was performed to evaluate the effect of salinity on cationic polymeric flocculants, that are used for the harvesting of microalgae. The polyacrylamide Synthofloc 5080H and the polysaccharide Chitosan were employed for the flocculation of Neochloris oleoabundans. In seawater conditions, a maximum biomass recovery of 66% was obtained with a dosage of 90 mg/L Chitosan. This recovery was approximately 25% lower compared to Synthofloc 5080H reaching recoveries greater than 90% with dosages of 30 mg/L. Although different recoveries were obtained with both flocculants, the polymers exhibit a similar apparent polymer length, as was evaluated from viscosity measurements. While both flocculants exhibit similar polymer lengths in increasing salinity, the zeta potential differs. This indicates that polymeric charge dominates flocculation. With increased salinity, the effectivity of cationic polymeric flocculants decreases due to a reduction in cationic charge. This mechanism was confirmed through a SEM analysis and additional experiments using flocculants with various charge densities. (C) 2016 The Authors. Published by Elsevier B.V.
机译:进行了一项机械研究,以评估盐度对阳离子聚合絮凝剂的影响,该絮凝剂用于收获微藻。聚丙烯酰胺Synthofloc 5080H和多糖壳聚糖用于新油菜的絮凝。在海水条件下,壳聚糖的剂量为90 mg / L时,最大生物量回收率为66%。与Synthofloc 5080H相比,该回收率约低25%,在30 mg / L的剂量下,回收率大于90%。尽管两种絮凝剂的回收率均不同,但根据粘度测量结果,聚合物的表观聚合物长度相似。虽然两种絮凝剂在增加盐度方面显示出相似的聚合物长度,但zeta电位不同。这表明聚合电荷在絮凝中占主导地位。随着盐度的增加,由于阳离子电荷的减少,阳离子聚合物絮凝剂的有效性降低。通过使用各种电荷密度的絮凝剂的SEM分析和其他实验,证实了这一机理。 (C)2016作者。由Elsevier B.V.发布

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