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亚铁调控的铜绿微囊藻适度预氧化及藻絮体的形成用于藻类细胞和有机物的高效浮选。

Fe(II)-regulated moderate pre-oxidation of Microcystis aeruginosa and formation of size-controlled algae flocs for efficient flotation of algae cell and organic matter.

机构信息

Key Laboratory of Drinking Water Science and Technology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.

State Key Joint Laboratory of Environmental Simulation and Pollution Control, School of Environment, Tsinghua University, Beijing 100084, China.

出版信息

Water Res. 2018 Jun 15;137:57-63. doi: 10.1016/j.watres.2018.03.005. Epub 2018 Mar 5.

Abstract

The coagulation/flocculation/flotation (C/F/F) process is becoming a popular method for algae-laden water treatment. However, the efficiency of flotation is highly dependent on the ability of the preceding coagulation/flocculation process to form flocculated algae flocs. This study aims to improve the Microcystis aeruginosa flotation efficiency from algae cell and organic matter aspects by applying Fe(II)-regulated pretreatment enhanced Al coagulation process. The ability of the C/F/F process to remove cyanobacterial cells can be enhanced from 8% to 99% at a Fe(II) dose of 30 μM. The Al dose needed can be reduced by more than half while achieving successful flotation. The introduced Fe(II) after KMnO can not only realize moderate pre-oxidation of cyanobacterial cells, but also form in-situ Fe(III). The DOC value can also be decreased significantly due to the formation of in-situ Fe(III), which is more efficient in dissolved organic matter (DOM) removal compared with pre-formed Fe(III). In addition, the gradually hydrolyzed in-situ Fe(III) can facilitate the hydrolysis of Al as a dual-coagulant and promote the clustering and cross-linking of Al hydrolyzates, which can enhance the formation of size-controlled algae flocs. Finally, the size-controlled algae flocs can be effectively floated by the bubbles released in the flotation process due to the efficient collision and attachment between flocs and bubbles. Therefore, the efficient flotation of algae cell and organic matter can be realized by the Fe(II) regulated moderate pre-oxidation of M. aeruginosa and formation of size-controlled algae flocs.

摘要

混凝/絮凝/浮选(C/F/F)工艺正成为处理富藻水的一种流行方法。然而,浮选的效率高度依赖于混凝/絮凝过程形成絮凝藻絮体的能力。本研究旨在通过应用 Fe(II)调节的预处理强化 Al 混凝过程,从藻类细胞和有机物两个方面提高铜绿微囊藻的浮选效率。在 Fe(II)剂量为 30 μM 的条件下,C/F/F 工艺去除蓝藻细胞的能力可从 8%提高到 99%。在成功浮选的同时,所需的 Al 剂量可减少一半以上。KMnO4 后引入的 Fe(II)不仅可以实现蓝藻细胞的适度预氧化,还可以原位形成 Fe(III)。由于原位形成的 Fe(III)可以显著降低 DOC 值,因此在去除溶解有机物 (DOM) 方面比预形成的 Fe(III)更有效。此外,逐渐水解的原位 Fe(III)可以促进 Al 的水解作为双重混凝剂,并促进 Al 水解产物的聚集和交联,从而增强大小可控的藻絮体的形成。最后,由于絮体和气泡之间的有效碰撞和附着,大小可控的藻絮体可以通过浮选过程中释放的气泡有效地浮选出来。因此,通过对铜绿微囊藻进行 Fe(II)调节的适度预氧化和形成大小可控的藻絮体,可以实现藻类细胞和有机物的有效浮选。

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