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微纳米气泡(MNBs)共凝聚用于强化饮用水处理:一种新型净化工艺的效率及机理研究

Co-coagulation of micro-nano bubbles (MNBs) for enhanced drinking water treatment: A study on the efficiency and mechanism of a novel cleaning process.

作者信息

Lu Jinsuo, Huang Xiaojiang, Zhang Zhiqiang, Pang Heliang, Chen Kunyu, Xia Haozhe, Sui Yiyu, Chen Rongwen, Zhao Ziang

机构信息

School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China; Shaanxi Key Laboratory of Environmental Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China; State Key Laboratory of Green Building in West China, Xi'an University of Architecture and Technology, Xi'an 710055, China.

School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China; Shaanxi Key Laboratory of Environmental Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.

出版信息

Water Res. 2022 Nov 1;226:119245. doi: 10.1016/j.watres.2022.119245. Epub 2022 Oct 13.

Abstract

MNBs (Micro-nano bubbles) are widely used in cleaning processes for environmental treatments, but few studies have examined the interaction of MNBs with coagulation. In this study, a novel process, i.e., MNBs-coagulation, was developed for enhanced drinking water treatment. The humic acid (HA) removal efficiency was used to evaluate the effectiveness of MNBs-coagulation for drinking water treatment. The hydrolysis component ratio of polymeric aluminum chloride (PACl) with and without MNBs, the complexation strength of HA and PACl, and flocculent functional group characterization were used to analyze the mechanism of the MNBs-coagulation process to enhance drinking water treatment. The results of a Jar test showed that the MNBs-coagulation process could improve the removal efficiency of HA (up to a 27.9% increase in DOC removal). In continuous-flow experiments to remove HA, MNBs-coagulation can increase the removal efficiency of UV by about 26.5% and with no significant change in turbidity. These results are attributed to the inherent hydroxyl radical generating properties of MNBs, the forced hydrolysis of PACl by MNBs to increase the Al percentage, and the ability of MNBs to increase the complexation strength of HA with PACl. At the same time, the MNBs-coagulation process has a strong anti-interference ability, almost no interference from anions and cations such as Cl, SO and Ca, and has a good performance in natural surface water. In summary, MNBs-coagulation has strong potential for practical applications to enhance the efficiency of drinking water treatment.

摘要

微纳米气泡(MNBs)广泛应用于环境处理的清洁过程中,但很少有研究考察其与混凝的相互作用。本研究开发了一种新型工艺,即MNBs - 混凝,用于强化饮用水处理。采用腐殖酸(HA)去除效率来评估MNBs - 混凝处理饮用水的效果。通过有无MNBs时聚合氯化铝(PACl)的水解组分比例、HA与PACl的络合强度以及絮凝官能团表征,分析MNBs - 混凝过程强化饮用水处理的机理。搅拌试验结果表明,MNBs - 混凝工艺可提高HA的去除效率(DOC去除率提高达27.9%)。在去除HA的连续流实验中,MNBs - 混凝可使UV去除效率提高约26.5%,且浊度无显著变化。这些结果归因于MNBs固有的羟基自由基生成特性、MNBs促使PACl水解以提高铝含量的能力以及MNBs提高HA与PACl络合强度的能力。同时,MNBs - 混凝工艺具有较强的抗干扰能力,几乎不受Cl、SO和Ca等阴离子和阳离子的干扰,在天然地表水中表现良好。综上所述,MNBs - 混凝在实际应用中具有强化饮用水处理效率的强大潜力。

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