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基于高级氧化法的家具工业废水处理

Advanced oxidation-based treatment of furniture industry wastewater.

作者信息

Tichonovas Martynas, Krugly Edvinas, Grybauskas Arturas, Jankūnaitė Dalia, Račys Viktoras, Martuzevičius Dainius

机构信息

a Department of Environmental Technology , Kaunas University of Technology , Kaunas , Lithuania.

出版信息

Environ Technol. 2018 Sep;39(17):2215-2222. doi: 10.1080/09593330.2017.1352037. Epub 2017 Jul 16.

Abstract

The paper presents a study on the treatment of the furniture industry wastewater in a bench scale advanced oxidation reactor. The researched technology utilized a simultaneous application of ozone, ultraviolet radiation and surface-immobilized TiO nanoparticle catalyst. Various combinations of processes were tested, including photolysis, photocatalysis, ozonation, catalytic ozonation, photolytic ozonation and photocatalytic ozonation were tested against the efficiency of degradation. The efficiency of the processes was primarily characterized by the total organic carbon (TOC) analysis, indicating the remaining organic material in the wastewater after the treatment, while the toxicity changes in wastewater were researched by Daphnia magna toxicity tests. Photocatalytic ozonation was confirmed as the most effective combination of processes (99.3% of TOC reduction during 180 min of treatment), also being the most energy efficient (4.49-7.83 MJ/g). Photocatalytic ozonation and photolytic ozonation remained efficient across a wide range of pH (3-9), but the pH was an important factor in photocatalysis. The toxicity of wastewater depended on the duration of the treatment: half treated water was highly toxic, while fully treated water did not possess any toxicity. Our results indicate that photocatalytic ozonation has a high potential for the upscaling and application in industrial settings.

摘要

本文介绍了在实验室规模的高级氧化反应器中处理家具工业废水的一项研究。所研究的技术同时应用了臭氧、紫外线辐射和表面固定化TiO纳米颗粒催化剂。测试了各种工艺组合,包括光解、光催化、臭氧化、催化臭氧化、光催化臭氧化和光解臭氧化,并对其降解效率进行了测试。这些工艺的效率主要通过总有机碳(TOC)分析来表征,TOC分析表明处理后废水中剩余的有机物质,同时通过大型溞毒性试验研究了废水毒性的变化。光催化臭氧化被确认为最有效的工艺组合(在180分钟的处理过程中TOC降低了99.3%),也是最节能的(4.49 - 7.83 MJ/g)。光催化臭氧化和光解臭氧化在较宽的pH范围(3 - 9)内都保持高效,但pH值在光催化中是一个重要因素。废水的毒性取决于处理时间:处理一半的水毒性很高,而完全处理后的水没有任何毒性。我们的结果表明,光催化臭氧化在扩大规模和工业应用方面具有很大潜力。

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