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首页> 外文期刊>International journal of urban sciences >Iron removal using adsorptive filtration treatment for low iron concentration water from urban industrial region
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Iron removal using adsorptive filtration treatment for low iron concentration water from urban industrial region

机译:吸附过滤处理去除城市工业区低铁浓度水的铁

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Iron in urban runoff water from urban industrial regions is undesirable because of aesthetic and operational reasons. Generally iron is removed by chemical treatment processes. However, these systems have a limitation for water recycled as drinking water resources (Z0.3 mg/L). Conventionally, low iron concentration (0.3 mg/L-6 mg/L) in runoff is treated by the process of aeration followed by fiitration in water treatment. The shortcomings of this process include short filter runs due to fouling by large volumes of sludge production and elevated headloss. Iron (II) is present in surface runoff in the urban industrial region and roadway, and can be removed by the adsorptive filtration or the conventional floc filtration process. The adsorptive filtration process has several potential advantages such as longer run, shorter ripening time, low sludge production and cost saving. In this study, the adsorptive filtration process shows better performance than the floc filtration. The use of the adsorptive filtration process is a feasible strategy to reduce the filter ripening time and sludge production with high iron (II) adsorption capacity. Also, this method can apply for treatment of discharging surface runoff and can be used as an alternative water resource through a decentralized system or best management practices (BMPs).
机译:由于美学和操作上的原因,来自城市工业区的城市径流水中的铁是不可取的。通常,铁是通过化学处理工艺除去的。但是,这些系统对作为饮用水资源的循环水具有限制(Z0.3 mg / L)。常规地,径流中低铁浓度(0.3 mg / L-6 mg / L)通过曝气和水处理中的过滤处理。该方法的缺点包括由于大量污泥产生和增加的水头损失造成的结垢导致过滤器运行时间短。铁(II)存在于城市工业区和道路的地表径流中,可以通过吸附过滤或常规絮凝过滤工艺除去。吸附过滤工艺具有多个潜在优势,例如运行时间更长,熟化时间更短,污泥产量低以及节省成本。在这项研究中,吸附过滤过程显示出比絮凝过滤更好的性能。吸附过滤工艺的使用是减少过滤器成熟时间和高铁(II)吸附能力的污泥生产的可行策略。而且,该方法可用于处理地表径流,并可通过分散系统或最佳管理实践(BMP)用作替代水资源。

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