臭氧对分散印染废水的脱色效果

Q4 Engineering
Semiha EREN, Hüseyin Aksel EREN, Gizem BAYAÇLI, İrem ÖZYURT
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引用次数: 0

摘要

由于人口的快速增长和工业化,各个部门产生的废水对环境和生物构成了威胁。纺织工业废水在这些废水来源中排名第一。这些废水含有染料和不同的化学物质。这些含有许多杂质的水必须妥善处理,否则它们可能会在排放的环境中造成严重的问题。各种物理、化学和生物方法用于废水的脱色。然而,由于这些方法的成本和效率较低,人们正在研究创新和更经济的方法。在这些新技术中,高级氧化工艺(AOPs)是目前正在研究的一种高效的新方法,用于净化一般技术无法去除的某些杂质。AOP方法包括紫外光催化反应、超声反应、Fenton/过氧化氢反应、超声声波反应等。其中一种方法是臭氧化法。对纺织染厂分散染色后废水的臭氧脱色进行了研究。在测定过程中,对印染后废水配方的高级氧化法之一臭氧氧化法进行了脱色研究,并对样品的吸色性和COD值进行了检测和评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
COLOR REMOVAL OF DISPERSE DYEING WASTE WATER BY OZONE IN AN EXAMPLE DYEHAUSE
As a result of rapid population growth and industrialization, wastewater generated in various sectors poses a threat to the environment and living things.Textile industry wastewater comes first among these wastewater sources.These wastewaters contain dyestuffs and different chemicals. These waters, which contain many impurities, must be treated well, otherwise they may cause serious problems in the environments where they are discharged. Various physical, chemical and biological methods are used for color removal in wastewater. However, due to the cost and low efficiency of these methods, researches are carried out on innovative and more economical methods. Among the new technologies, advanced oxidation processes (AOPs) are highly efficient new methods being studied for the purification of certain impurities that cannot be removed by general techniques. AOP methods include photocatalytic reaction with UV, ultrasound, Fenton/Peroxide, ultrasound sound waves and similar reactions. One of these methods is ozonation method. In this study, ozone decolorization of wastewater after disperse dyeing taken from textile dyehouse was investigated. In the determined procedure, the removal of color by ozonation method, which is one of the advanced oxidation methods for wastewater recipes after dyeing, was investigated and the color absorbance and COD values of the samples were examined and the results were evaluated.
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来源期刊
Tekstil ve Muhendis
Tekstil ve Muhendis Engineering-Industrial and Manufacturing Engineering
CiteScore
0.40
自引率
0.00%
发文量
12
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