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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Wastewater to biofuels: Comprehensive evaluation of various flocculants on biochemical composition and yield of microalgae
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Wastewater to biofuels: Comprehensive evaluation of various flocculants on biochemical composition and yield of microalgae

机译:生物燃料的废水:对各种絮凝剂的综合评价生化成分和微藻产量的絮凝剂

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This study attempted to determine an efficient flocculant that was used for the recovery of microalgal species, namely Scenedesmus. The biomass was grown in a pilot-scale raceway pond receiving domestic wastewater discharges. The microalgae achieved treatment efficiencies of 76.5% NH4+-N, 83.1% PO43--P, 73.9% biological oxygen demand (BOD), and 42.8% chemical oxygen demand (COD). During microalgal harvesting, the highest biomass recoveries of 99.0%, 97.5%, and 96.5% were obtained by alum 300 mg/L at pH 7, chitosan 100 mg/L at pH 7, and cationic polymer 10 mg/L at pH 10, respectively. The protein, carbohydrate, and lipid yields of polymer-harvested biomass were 28.0%, 12.4%, and 17.4% (dry cell weight), respectively, which were higher than those obtained when applying either alum or chitosan flocculants. Moreover, the cationic polymer provided no detrimental effects on the fractions of fatty acids derived from the harvested microalgal cells. The microalgal biomass subjected to flocculation by either polymer or chitosan were entire and intact, whereas the lysis of cells was noticed during the alum flocculation process.
机译:该研究试图确定用于恢复微藻物种的有效絮凝剂,即Scenedesmus。生物质在飞行员队伍池塘中生长,接受国内废水排放。微藻达76.5%NH4 + -N,83.1%PO43-P,73.9%生物需氧量(BOD)的治疗效率,42.8%的化学需氧量(COD)。在微藻收获过程中,通过300mg / L在pH7,壳聚糖100mg / L处在pH7的pH 7,pH 10处的阳离子聚合物10mg / L,获得最高生物量回收率为99.0%,97.5%和96.5%。分别。聚合物 - 收获的生物质的蛋白质,碳水化合物和脂质产率分别为28.0%,12.4%和17.4%(干燥电池重量),其施用明矾或壳聚糖絮凝剂时获得的那些。此外,阳离子聚合物不适用于衍生自收获的微藻细胞的脂肪酸的级​​分。通过聚合物或壳聚糖经受絮凝的微观生物量整体并完整,而在植物絮凝过程中发现细胞的裂解。

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