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Effect of chemical and biological treatment on COD fingerprints of textile wastewaters

机译:生化处理对纺织废水化学需氧量指纹图谱的影响

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Particle size distribution (PSD) via sequential filtration/ultrafiltration was used as the tool for COD fractionation and colour profiling of textile wastewaters before and after treatment. Profiles prior to treatment suggested PSD-based COD fingerprints characteristic for the influents. Treatment efficiencies were determined via comparing the profiles of the effluents from chemical- and biological-treatment to those of the corresponding influents. COD fingerprints of the wastewaters from the textile plants, applying different treatment alternatives, were different especially at the upper size range; yet profiles after treatment were similar, with the soluble fraction (<2 nm) being almost the only apparent one. Half of the overall COD-removal via chemical treatment was at the particulate- and upper colloidal-ranges, revealing that this alternative was effective at higher ranges, but not at the soluble fraction. In contrast, biological treatment was effective at both ends of size distribution, with total removal at the particulate range and 50% elimination at the soluble portion. Overall colour content and PSD-based colour profiles of the influents were also different. Chemical treatment was successful in removing colour originating from the entire colloidal range, but was not efficient at the soluble fraction. Conversely, colour removal efficiency of biological treatment was moderate throughout the entire size spectrum.
机译:通过顺序过滤/超滤的粒度分布(PSD)用作处理之前和之后的纺织品废水的COD分馏和颜色配置文件的工具。处理之前的资料表明进水具有基于PSD的COD指纹特征。通过将化学处理和生物处理的出水曲线与相应进水的曲线进行比较,可以确定处理效率。纺织厂废水的化学需氧量指纹图谱,采用不同的处理替代方法,尤其是在较大尺寸范围内有所不同。然而处理后的轮廓相似,可溶部分(<2 nm)几乎是唯一可见的部分。通过化学处理去除的总COD的一半在微粒和较高的胶体范围内,这表明该替代方法在较高的范围内有效,但对可溶性部分无效。相反,生物处理在尺寸分布的两端都是有效的,在颗粒范围内全部去除,在可溶性部分消除50%。进水的总体颜色含量和基于PSD的颜色配置文件也有所不同。化学处理成功地去除了源自整个胶体范围的颜色,但对于可溶性部分却无效。相反,在整个尺寸范围内,生物处理的脱色效率中等。

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