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Removal of harmful algal blooms in freshwater by buoyant-bead flotation using chitosan-coated fly ash cenospheres

机译:用壳聚糖涂层粉煤灰吊膜通过浮珠浮选去除淡水中的有害藻类绽放

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Harmful algal blooms (HABs) are a growing problem worldwide, damaging human and ecosystem health. In this study, a novel buoyant-bead flotation (BBF) method using chitosan-coated fly ash cenospheres (CFACs) was developed to remove HABs in freshwater. To achieve a high removal efficiency of harmful algae (Chlorella vulgaris, Scenedesmus quadricauda, and Microcystis aeruginosa), this study investigated the effects of chitosan/fly ash ratios in CFAC composite, CFAC concentration, flotation time, and pH values on the microalgae removal. The optimized ratio of CFACs is 0.1:12, and the optimized CFAC concentration is 0.3-0.7 g L-1. However, the lower or higher ratios (0.1:4, 0.1:8, 0.1:16) result in microalgae reaching a zero-point charge too late or early, which failed to effectively remove HABs with an appropriate coal fly ash dosage. An optimized removal efficiency of 98.50% for Microcystis aeruginosa was reached at pH of 6.0. The optimized efficiency of Scenedesmus quadricauda and Chlorella vulgaris was 99.37% and 91.63%, respectively, at pH of 8.0. At neutral pH conditions, the surface charge of microalgae cells and CFACs are different, promoting aggregate formation. When CFACs were used to remove microalgae, aggregate size significantly influenced removal efficiency. Meanwhile, at the optimized pH and concentration, the removal efficiency of all three algal species exceeded 90.00% in 5 min. The study highlights an efficient and inexpensive method for removing HABs and obtains the optimized operational conditions.
机译:有害的藻类绽放(HABS)是全世界越来越大的问题,破坏人类和生态系统健康。在该研究中,开发了一种使用壳聚糖涂覆的粉煤灰延长体(CFACs)的新型浮珠浮选(BBF)方法以除去淡水中的HAB。为了达到有害藻类的高消除效率(Chlarella Vallara,Scenedesmus Quadricauda和Microcystis eruginosa),研究了壳聚糖/粉煤灰比在CFAC复合,CFAC浓度,浮选时间和pH值上的壳聚糖/粉煤灰比在微藻中去除的影响。 CFAC的优化比为0.1:12,优化的CFAC浓度为0.3-0.7g L-1。然而,比率或更高的比率(0.1:4,0.1:8,0.1:16)导致微藻达到零点电荷的太晚或早期,这未能有效地用适当的煤粉煤灰剂量去除疾病。在6.0的pH下达到微囊杆菌铜绿假单胞菌的优化去除效率为98.50%。 CHE的PH为8.0分别为99.37%和91.63%的Scenedesmus Quadricricauda和小球藻的优化效率。在中性pH条件下,微藻细胞和CFACs的表面电荷不同,促进骨料形成。当CFAC用于去除微藻时,聚集体大小显着影响去除效率。同时,在优化的pH和浓度下,5分钟内所有三种藻类物种的去除效率超过90.00%。该研究突出了一种高效且廉价的方法,用于去除HABS并获得优化的操作条件。

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