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Effects of pH, salinity, biomass concentration, and algal organic matter on flocculant efficiency of synthetic versus natural polymers for harvesting microalgae biomass

机译:pH,盐度,生物量浓度和藻类有机物对合成聚合物与天然聚合物收获微藻生物量的絮凝剂效率的影响

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摘要

This study investigated the effects of pH, salinity, biomass concentration, and algal organic matter (AOM) on the efficiency of four commercial cationic flocculants. The tannin-based biopolymers Tanfloc SG and SL and the polyacrylamide polymers Flopam FO 4800 SH and FO 4990 SH were tested for flocculation of two microalgae models, the freshwater Chlorella vulgaris and the marine Nannochloropsis oculata. Both biomass concentration and AOM presence affected all polymers evaluated whereas salinity and pH affected only Flopam and Tanfloc, respectively. A restabilization effect due to overdosing was only observed for Flopam polymers and increasing Tanfloc dose resulted in improved efficiency. Flopam polymers showed a significant decrease in the maximum quantum yield of photosystem II as function of polymer dose for Chlorella, which supported the need for toxicological studies to assess the potential toxicity of Flopam. In overall, Tanfloc was not affected by salinity nor presented potential toxicity therefore being recommended for the flocculation of both freshwater and marine species.
机译:这项研究调查了pH,盐度,生物量浓度和藻类有机物(AOM)对四种商业阳离子絮凝剂效率的影响。测试了基于单宁的生物聚合物Tanfloc SG和SL以及聚丙烯酰胺聚合物Flopam FO 4800 SH和FO 4990 SH对两种微藻模型(淡水小球藻和海洋Nannochloropsis oculata)的絮凝作用。生物量浓度和AOM的存在均影响所有评估的聚合物,而盐度和pH分别仅影响Flopam和Tanfloc。仅对于氟罗姆聚合物观察到由于过量给药引起的再稳定化作用,增加Tanfloc剂量可提高效率。 Flopam聚合物显示出光系统II的最大量子产率随小球藻聚合物剂量的变化而显着降低,这支持进行毒理学研究以评估Flopam的潜在毒性的需要。总体而言,Tanfloc不受盐度的影响,也没有潜在的毒性,因此建议将其用于淡水和海洋物种的絮凝。

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