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Study of polyacrylamide grafted starch based algal flocculation towards applications in algal biomass harvesting

机译:聚丙烯酰胺接枝淀粉基藻絮凝技术在藻类生物质收获中的应用研究

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摘要

Microalgae may be the source of high amount of lipid and protein. It has the property for carbon dioxide sequestration, recycling and also can remove pollutants from wastewater. Using traditional methods, collection of algal biomass is either cost effective, time consuming or may be toxic due to use of chemical salts. The aim of this study is to harvest freshwater microalgae (Chlorella sp. CB4) biomass by using polymer. Polyacrylamide grafted starch (St-g-PAM) has been synthesized by microwave assisted method involving a synergism of microwave radiation and ceric ammonium nitrate (CAN) to initiate the grafting reaction. The synthesis was optimized in terms of CAN and monomer (acrylamide) concentration. The algal flocculation efficacy of all the grades of this graft copolymer was studied through standard 'Jar test' procedure. Effects of percentage grafting, pH and zeta potential on percentage recovery of algal biomass were thoroughly investigated.
机译:微藻可能是大量脂质和蛋白质的来源。它具有二氧化碳隔离,回收利用的特性,还可以去除废水中的污染物。使用传统方法,收集藻类生物质要么具有成本效益,耗时,要么由于使用化学盐而有毒。这项研究的目的是通过使用聚合物来收获淡水微藻(Chlorella sp。CB4)生物质。聚丙烯酰胺接枝淀粉(St-g-PAM)是通过微波辅助方法合成的,该方法涉及微波辐射和硝酸铈铵(CAN)的协同作用以引发接枝反应。根据CAN和单体(丙烯酰胺)浓度优化了合成。通过标准的“ Jar测试”程序研究了所有等级的该接枝共聚物的藻絮凝功效。彻底研究了接枝百分比,pH和zeta电位对藻类生物量回收百分比的影响。

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