用自来水厂污泥填充人工湿地单元修复刚果红染料污染的废水

Ayad A. H. Faisal, Basim J. Bedah Basim J. Bedah, O. Al-Hashimi
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引用次数: 3

摘要

将纺织品废水处理到地表水体是一个关键问题,尤其是由于其成分中存在染料,这些废水可能对此类水体产生负面影响。与传统方法相比,人工湿地等生物修复方法更具成本效益和环境友好性。本文研究了垂直潜流人工湿地处理刚果红染料污染模拟废水的能力。这些单元用自来水厂污泥床填充,这些污泥床要么未种植,要么种植芦苇和唐香蒲。在停留时间(1-5天)和染料浓度(10-40mg/L)变化的情况下,通过监测废水中的DO、温度、COD和染料浓度来评估现有装置的效果。10 mg/L刚果红染料在水力停留5天后,对染料和COD的最大去除率分别为98%和82%。结果表明,接触时间越长,染料浓度越低,COD和染料浓度的去除率越高。评价废水水质所采用的监测参数(DO、COD、刚果红染料)值均满足灌溉用水要求。利用Grau动力学模型有效地计算了废水中染料浓度随接触时间的变化。官能团(通过FT-IR分析确定)在染料在自来水厂污泥床上的截留中具有显著作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Constructed Wetland Units Filled with Waterworks Sludge for Remediating of Wastewater Contaminated with Congo Red Dye
The disposal of textile effluents to the surface water bodies represents the critical issue especially these effluents can have negative impacts on such bodies due to the presence of dyes in their composition. Biological remediation methods like constructed wetlands are more cost-effective and environmental friendly technique in comparison with traditional methods. The ability of vertical subsurface flow constructed wetlands units for treating of simulated wastewater polluted with Congo red dye has been studied in this work. The units were packed with waterworks sludge bed that either be unplanted or planted with Phragmites australis and Typha domingensis. The efficacy of present units was evaluated by monitoring of DO, Temperature, COD and dye concentration in the effluents under the variation of detention time (1-5 day) and dye concentration (10-40 mg/L). The maximum removal of dye and COD were 98 and 82% respectively for 10 mg/L of Congo red dye after five-day hydraulic retention time (HRT). The results have shown that the removal of COD and dye concentration significantly increased with higher contact time and lower dye concentration. The values of monitored parameters adopted to evaluate the wastewater quality (i.e. DO, COD and Congo red dye) are satisfied the requirements of irrigation water. The dye concentration variation in the effluent with contact time was formulated efficiently by Grau kinetic model. Functional groups (specified by FT-IR analysis) have a remarkable role in the entrapment of dye on the waterworks sludge bed.
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