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光氧化过程中的偶氮染料在水介质中:降解动力学模型和生态参数评价。

Photooxidation processes for an azo dye in aqueous media: modeling of degradation kinetic and ecological parameters evaluation.

机构信息

Faculty of Chemical Engineering and Technology, University of Zagreb, Marulicev trg 19, Zagreb 10000, Croatia.

出版信息

J Hazard Mater. 2011 Jan 30;185(2-3):1558-68. doi: 10.1016/j.jhazmat.2010.10.087. Epub 2010 Oct 30.

Abstract

Three photooxidation processes, UV/H(2)O(2), UV/S(2)O(8)(2-) and UV/O(3) were applied to the treatment of model wastewater containing non-biodegradable organic pollutant, azo dye Acid Orange 7 (AO7). Dye degradation was monitored using UV/VIS and total organic carbon (TOC) analysis, determining decolorization, the degradation/formation of naphthalene and benzene structured AO7 by-products, and the mineralization of model wastewater. The water quality during the treatment was evaluated on the bases of ecological parameters: chemical (COD) and biochemical (BOD(5)) oxygen demand and toxicity on Vibrio fischeri determining the EC(50) value. The main goals of the study were to develop an appropriate mathematic model (MM) predicting the behavior of the systems under investigation, and to evaluate the toxicity and biodegradability of the model wastewater during treatments. MM developed showed a high accuracy in predicting the degradation of AO7 when considering the following observed parameters: decolorization, formation/degradation of by-products and mineralization. Good agreement of the data predicted and the empirically obtained was confirmed by calculated standard deviations. The biodegradability of model wastewater was significantly improved by three processes after mineralizing a half of the initially present organic content. The toxicity AO7 model wastewater was decreased as well. The differences in monitored ecological parameters during the treatment indicated the formation of different by-products of dye degradation regarding the oxidant type applied.

摘要

三种光氧化过程,UV/H(2)O(2)、UV/S(2)O(8)(2-)和 UV/O(3),被应用于处理含有难生物降解有机污染物偶氮染料酸性橙 7(AO7)的模型废水。使用 UV/VIS 和总有机碳(TOC)分析监测染料降解,确定萘和苯结构的 AO7 副产物的脱色、降解/形成,以及模型废水的矿化。根据生态参数评估处理过程中的水质:化学需氧量(COD)和生化需氧量(BOD(5))以及对发光菌 Vibrio fischeri 的毒性,确定 EC(50)值。研究的主要目标是开发合适的数学模型(MM)来预测所研究系统的行为,并评估模型废水在处理过程中的毒性和可生物降解性。所开发的 MM 在考虑以下观察到的参数时,在预测 AO7 的降解方面表现出很高的准确性:脱色、副产物的形成/降解和矿化。通过计算标准偏差,证实了预测数据与经验获得的数据之间的良好一致性。三种工艺在矿化一半初始有机含量后,显著提高了模型废水的可生物降解性。AO7 模型废水的毒性也降低了。处理过程中监测到的生态参数的差异表明,应用的氧化剂类型会导致染料降解的不同副产物的形成。

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