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Screening of commercial natural and synthetic cationic polymers for flocculation of freshwater and marine microalgae and effects of molecular weight and charge density

机译:用于淡水和海洋微藻絮凝的商业天然和合成阳离子聚合物的筛选以及分子量和电荷密度的影响

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摘要

Twenty-five natural and synthetic cationic polymers of different molecular weights and charge densities were evaluated for microalgae flocculation. Tanfloc is a natural low molecular weight tannin polymer whereas Zetag and Flopam are both synthetic high molecular weight polyacrylamide polymers. Five exponential concentrations (0.55, 1.66, 5, 15 and 45 mg L− 1) were tested for freshwater Chlorella vulgaris and marine Nannochloropsis oculata. All polymers were efficient (> 90% at ≥ 1.66 mg L− 1) for C. vulgaris. However, for N. oculata, only Tanfloc was effective. Charge density positively influenced flocculation decreasing the required polymer dosage. Restabilization was observed only for synthetic polymers when overdosed. Natural polymers performed similarly for both species. Overall, Tanfloc SL and Flopam FO 4990 SH were the most efficient polymers for microalgae flocculation though Tanfloc is a more economical option (US$37 per ton− 1 of biomass) and environmentally friendly than Flopam (US$171 per ton− 1 of biomass).
机译:评价了二十五个不同分子量和电荷密度的天然和合成阳离子聚合物的微藻絮凝效果。 Tanfloc是天然的低分子量单宁聚合物,而Zetag和Flopam都是合成的高分子量聚丙烯酰胺聚合物。测试了淡水小球藻和海洋Nannochloropsis oculata的五个指数浓度(0.55、1.66、5、15和45 mg L-1)。所有聚合物对寻常梭状芽胞杆菌都是有效的(≥1.66 mg L-1时> 90%)。但是,对于N. oculata,仅Tanfloc有效。电荷密度对絮凝有积极影响,减少了所需的聚合物用量。当过量时,仅对于合成聚合物观察到再稳定化。天然聚合物对两种物种的表现相似。总体而言,Tanfloc SL和Flopam FO 4990 SH是用于微藻絮凝的最有效的聚合物,尽管Tanfloc比Flopam(每吨-1生物质171美元)更经济(每吨1生物质1美元)和更环保。

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