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Phosphorus removal by acid mine drainage sludge from secondary effluents of municipal wastewater treatment plants

机译:酸性废水排放污泥从市政废水处理厂二次废水中去除磷

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Acid mine drainage (AMP) sludge, a waste product from coal mine water treatment, was used in this study as an adsorbent to develop a cost-effective treatment approach to phosphorus removal from municipal secondary effluents. Batch tests were carried out to study the effects of pH, temperature, concentration, and contact time for phosphorus removal from wastewater. Batch tests were followed by continuous flow tests using a continuous stirred tank reactor (CSTR). Adsorption of orthophosphate onto AMD sludge particles followed the Freundlich isotherm model with an adsorption capacity ranging from 9.89 to 31.97 mg/g when the final effluent concentration increased from 0.21 to 13.61 mgP/L. P adsorption was found to be a rather rapid process and neutral or acidic pH enhanced phosphorus removal. Based on a thermodynamic assessment, P adsorption by AMD sludge was found to be endothermic; consequently, an increase in temperature could also favor phosphorus adsorption. Results from batch tests showed that leaching of metals common to AMD sludges was not likely to be a major issue of concern over the typical pH range (6-8) of secondary wastewater effluents. CSTR tests with three types of water (synthetic wastewater, river water, and municipal secondary effluent) illustrated that P adsorption by AMD sludge was relatively independent of the presence of other ionic species. In treating municipal secondary effluent, a phosphorus removal efficiency in excess of 98% was obtained. Results of this study indicated that it was very promising to utilize AMD sludge for phosphorus removal from secondary effluents and may be relevant to future efforts focused on the control of eutrophication in surface waters.
机译:酸性矿井排水(AMP)污泥(一种来自煤矿水处理的废物)被用作吸附剂,以开发一种经济高效的处理方法,以去除市政二级废水中的磷。进行了分批测试,以研究pH,温度,浓度和接触时间对废水中除磷的影响。分批测试之后,使用连续搅拌釜反应器(CSTR)进行连续流动测试。正磷酸盐在AMD污泥颗粒上的吸附遵循Freundlich等温模型,当最终流出物浓度从0.21 mgP / L增加时,吸附容量为9.89至31.97 mg / g。发现P吸附是一个相当快的过程,中性或酸性pH值可提高磷的去除率。根据热力学评估,发现AMD污泥对P的吸附是吸热的。因此,温度升高也可能有助于磷的吸附。批处理测试的结果表明,对于二级废水的典型pH范围(6-8),浸出AMD污泥中常见的金属不太可能成为主要问题。 CSTR对三种类型的水(合成废水,河水和市政污水)的测试表明,AMD污泥对P的吸附相对独立于其他离子物种的存在。在处理市政二级废水中,除磷效率超过98%。这项研究的结果表明,利用AMD污泥从二级废水中去除磷是非常有前途的,并且可能与未来致力于控制地表水富营养化的努力有关。

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