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Evaluate of head loss, sediment value and copper removal in sand media (rapid sand filter)

机译:评估砂粒介质(快速砂滤器)中的水头损失,沉积物价值和铜去除率

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Along with the technology development and increasing consumption of water resources, we are experiencing low qualities in the mentioned resources. Copper brings about serious environment al pollution, threatening human health and ecosystem. This metal found variously in water resources and industrial activities. Therefore, it needs to treat the water resources from these excessive amounts. Different methods have used for this reason but the most used method during recent years has been the absorption by economic absorbers such as sand. Rapid sand filters usually used in water and wastewater treatment plants for water clarification. In this research, a single layer gravity rapid sand filter has used to reduce different concentrations of copper. sediment value and head loss arising in filter media is simulated by using combination of Carman-Kozeny, Rose and Gregory models in different discharges of rapid sand filter. Results have shown that with increasing in discharge and decreasing in input copper concentration, arriving time to given head loss, is increasing. In addition, results demonstrated that with increasing in copper concentration in influent, removal efficiency is decreasing somewhat. Results of this research can applied in an appropriate design of rapid sand filter to copper removal, a prediction of rapid sand filter ability to copper removal and an estimation of arising head loss during filter work thus evaluating of time interval backwash. DOI: http://dx.doi.org/10.3126/ije.v3i2.10641 International Journal of the Environment Vol.3(2) 2014: 276-286.
机译:随着技术的发展和水资源消耗的增加,我们提到的资源质量低下。铜带来了严重的环境污染,威胁到人类健康和生态系统。在水资源和工业活动中发现了各种金属。因此,需要处理这些过量的水资源。由于这个原因,已经使用了不同的方法,但是近年来最常用的方法是被诸如沙子的经济吸收剂吸收。快速砂滤器通常用于水和废水处理厂中以净化水。在这项研究中,单层重力快速砂滤器已用于减少不同浓度的铜。通过使用Carman-Kozeny,Rose和Gregory模型的组合,在不同的快速砂滤器流量中模拟滤料中的泥沙值和水头损失。结果表明,随着放电量的增加和输入铜浓度的降低,达到给定水头损失的时间会增加。另外,结果表明,随着进水铜浓度的增加,去除效率有所降低。这项研究的结果可用于快速除砂器的适当设计,以去除铜,预测快速除砂器的除铜能力,并估计过滤器工作期间产生的水头损失,从而评估时间间隔反冲洗。 DOI:http://dx.doi.org/10.3126/ije.v3i2.10641国际环境杂志,Vol.3(2)2014:276-286。

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