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Selection of an adsorbent for lead removal from drinking water by a point-of-use treatment device

机译:选择使用点处理设备从饮用水中去除铅的吸附剂

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The removal of lead from drinking water was investigated to develop a point-of-use water filter that could meet the regulation imposed by the new European Directive 98-83 lowering lead concentration in drinking water below 10 μg L~(-1). The objective of this research was to assess the potential of different adsorbents (zeolites, resins, activated carbon, manganese oxides, cellulose powder) to remove lead from tap water with a very short contact time. To begin, the repartition of the lead species in a tap water and a mineral water was computed with the computer model CHESS. It showed that in bicarbonated waters lead is mainly under lead carbonate form, either in the aqueous or in the mineral phase. Batch experiments were then conducted to measure the equilibrium adsorption isotherms of the adsorbents. Then, for five of them, dynamic experiments in micro-columns were carried out to assess the outlet lead concentration level. Three adsorbents gave rise to a leakage concentration lower than 10 μg L~(-1) and were then selected for prototypes experiments: chabasite, an activated carbon coated with a synthetic zeolite and a natural manganese oxide. The proposed method clearly showed that the measurement of equilibrium isotherms is not sufficient to predict the effectiveness of an adsorbent, and must be coupled with dynamic experiments.
机译:对饮用水中铅的去除进行了研究,以开发出一种使用点式滤水器,该滤水器可以满足新的欧洲指令98-83所制定的将饮用水中铅浓度降低至10μgL〜(-1)以下的规定。这项研究的目的是评估在短时间内接触自来水中铅的各种吸附剂(沸石,树脂,活性炭,氧化锰,纤维素粉末)的潜力。首先,用计算机模型CHESS计算铅在自来水和矿泉水中的重新分配。结果表明,在碳酸氢盐水中,铅主要以碳酸铅形式存在,无论是在水相还是在矿物质相中。然后进行分批实验以测量吸附剂的平衡吸附等温线。然后,对于其中的五个,在微柱中进行了动态实验,以评估出口铅的浓度水平。三种吸附剂产生的泄漏浓度低于10μgL〜(-1),然后选择用于原型实验:菱沸石,涂有合成沸石的活性炭和天然锰氧化物。所提出的方法清楚地表明,平衡等温线的测量不足以预测吸附剂的有效性,必须与动态实验相结合。

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