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首页> 外文期刊>The Science of the Total Environment >Use of industrial by-products and natural media to adsorb nutrients, metals and organic carbon from drinking water
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Use of industrial by-products and natural media to adsorb nutrients, metals and organic carbon from drinking water

机译:利用工业副产品和天然介质吸收饮用水中的养分,金属和有机碳

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摘要

Filtration technology is well established in the water sector but is limited by inability to remove targeted contaminants, found in surface and groundwater, which can be damaging to human health. This study optimises the design of filters by examining the efficacy of seven media (fly ash, bottom ash, Bayer residue, granular blast furnace slag (GBS), pyritic fill, granular activated carbon (GAC) and zeolite), to adsorb nitrate, ammonium, total organic carbon (TOC), aluminium, copper (Cu) and phosphorus. Each medium and contaminant was modelled to a Langmuir, Freundlich or Temkin adsorption isotherm, and the impact of pH and temperature (ranging from 10 ℃ to 29 ℃) on their performance was quantified As retention time within water filters is important in contaminant removal, kinetic studies were carried out to observe the adsorption behaviour over a 24 h period. Fly ash and Bayer residue had good TOC, nutrient and Cu adsorption capacity. Granular blast furnace slag and pyritic fill, previously un-investigated in water treatment, showed adsorption potential for all contaminants. In general, pH or temperature adjustment was not necessary to achieve effective adsorption. Kinetic studies showed that at least 60% of adsorption had occurred after 8 h for all media. These media show potential for use in a multifunctional water treatment unit for the targeted treatment of specific contaminants.
机译:过滤技术已经在水务部门建立了完善的技术,但由于无法去除地表水和地下水中可能会危害人体健康的目标污染物而受到限制。这项研究通过检查七种介质(粉煤灰,底灰,拜耳残渣,高炉矿渣(GBS),黄铁矿填料,颗粒活性炭(GAC)和沸石)吸附硝酸盐,铵的功效,优化了过滤器的设计。 ,总有机碳(TOC),铝,铜(Cu)和磷。将每种介质和污染物模拟为Langmuir,Freundlich或Temkin吸附等温线,并量化pH和温度(范围从10℃到29℃)对其性能的影响,因为滤水器中的保留时间对于去除污染物非常重要,动力学进行了研究以观察24小时内的吸附行为。粉煤灰和拜耳残渣具有良好的总有机碳,养分和铜吸附能力。以前未经水处理研究的粒状高炉矿渣和黄铁矿填料显示了对所有污染物的吸附潜力。通常,pH或温度调节不是实现有效吸附所必需的。动力学研究表明,所有介质在8 h后至少发生了60%的吸附。这些介质显示出在多功能水处理单元中用于特定污染物的目标处理的潜力。

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