一种微纳米气泡强化降解高浓度有机废水的系统及方法

By employing a three-stage treatment process and a synergistic catalytic oxidation system, the problem of unstable treatment effect of micro-nano bubble technology in the treatment of high-concentration organic wastewater has been solved, achieving efficient and economical wastewater treatment and promoting the large-scale application of the technology.

CN122403680APending Publication Date: 2026-07-17ANHUI TONGYUAN ENVIRONMENT ENERGY SAVING CO LTD
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Patent Information

Application Number
CN202610684926.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-05-19
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing micro-nano bubble technology has unstable treatment effects in the treatment of high-concentration organic wastewater, making it difficult to meet standards. It also has low ozone utilization, easy catalyst deactivation and difficult regeneration, resulting in high operating costs and making it difficult to apply on a large scale.

Method used

A three-stage treatment process is adopted, including pretreatment, micro-nano bubble oxidation, micro-nano ozone bubble catalytic oxidation, and deep treatment units. It combines a triple synergistic catalytic oxidation system of air micro-nano bubbles, ozone micro-nano bubbles, and composite ultraviolet light, and constructs a system synergistic treatment system through ozone recovery and catalyst online regeneration technology.

Benefits of technology

It achieves efficient and stable treatment of high-concentration organic wastewater, with effluent quality meeting standards. It reduces ozone reagent consumption and catalyst replacement frequency, improves the system's economy and applicability, and lays the foundation for the large-scale application of micro-nano bubble technology.

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Abstract

本发明公开了一种微纳米气泡强化降解高浓度有机废水的系统及方法,属于污水处理技术领域,包括依次连通的预处理单元、微纳米气泡氧化单元、微纳米臭氧气泡催化氧化单元和深度处理单元;微纳米气泡氧化单元采用空气微纳米气泡进行初步氧化并提升废水可生化性,微纳米臭氧气泡催化氧化单元构建臭氧微纳米气泡‑复合紫外光‑催化剂填料层三重协同催化氧化体系,同时集成臭氧回收循环利用装置和催化剂在线再生功能。本发明通过多级单元协同与多重氧化路径耦合,实现高浓度有机废水的高效深度降解,运行成本低、自动化程度高,适用于化工、制药、印染等行业高浓度有机废水的处理,具有良好的工业化应用前景。
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