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Reuse of Treated Tannery Wastewater for Irrigation by a Combined Electrocoagulation/ Electrodialysis Process

机译:用综合电凝矿/电渗析工艺重用经处理的制革废水进行灌溉

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Most of countries have plentiful water resources and they all provide priority to the protection of water quality. In this work, a laboratory scale a combined electrocoagulation (EC)/ Electrodialysis (ED) process was applied to treat the tannery wastewater in order to bring the quality up to the international wastewater reuse standards. The effects of operational variables on performance were examined. The electrocoagulation current density, operating time and pH are the most important variables. In wide ranges, conductivity has no remarkable effects on pollutant removal but constitutes a good way for minimizing operating costs. Thus, it was found that that removing of 1 Kg of COD produces 0.35 Kg of organic sludge. In contrast, we concluded that 1 Kg of chromium produces regarding 6.5 Kg of inorganic sludge. However, combined process was sufficient to reuse treated tannery wastewater for irrigation. The quality of treated tannery wastewater was compared with various international standards/guidelines for wastewater reuse. It was found that the studied parameters such as, pH, COD, NH 3 -N, Cr and color were within allowable limits. In addition, electrical conductivity and TDS are important to determine the suitability of wastewater for safe irrigation. Their values are within safe range. Ultimately, it can be confirmed that the study may help to conserve tannery wastewater and alleviate the water shortage problem in the study area.
机译:大多数国家都有丰富的水资源,他们都提供了保护水质的优先权。在这项工作中,应用了实验室尺度组合电凝(EC)/电渗析(ED)过程来处理Tannery废水,以使质量达到国际废水再利用标准。检查了操作变量对性能的影响。电凝电流密度,操作时间和pH是最重要的变量。在宽范围内,电导率对污染物拆除没有显着影响,但构成了最小化运营成本的好方法。因此,发现除去1kg COD产生0.35kg的有机污泥。相比之下,我们得出结论,1千克铬在6.5千克无机污泥中产生。然而,组合过程足以重用治疗的鞣制废水进行灌溉。将经处理的Tannery废水质量与废水再利用的各种国际标准/准则进行了比较。发现研究的参数如pH,COD,NH 3 -N,Cr和颜色在允许的限度范围内。此外,电导率和TDS非常重要,可以确定安全灌溉废水的适用性。它们的值在安全范围内。最终,可以证实该研究可能有助于节省制革废水并减轻研究区域的水资源短缺问题。

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