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连续流速下镁和铝电凝聚法除饮用水中的氟:响应面设计。

Defluoridation of drinking water by magnesium and aluminum electrocoagulation in continuous flow-rate: a response surface design.

机构信息

Instituto Interamericano de Tecnología y Ciencias de Agua (IITCA), Universidad Autónoma del Estado de México Toluca, México.

出版信息

Environ Technol. 2022 Sep;43(23):3646-3660. doi: 10.1080/09593330.2021.1931468. Epub 2021 May 25.

Abstract

The goal of this research is to apply an electrocoagulation process in continuous flow for the defluoridation of drinking water. Two sampling sites were studied, Temascalcingo (T), Mexico state and Jerecuaro (J), Guanajuato, with fluoride (F) concentrations above the norms (2.3 mg L and 4.5 mg L, respectively). In addition, a second Temascalcingo sample was enriched (T) to 9.2 mg L F to study the effect of the F concentration. A response surface design was proposed through a Box-Behnken model, and the variables studied were electrode system, flow-rate and current intensity. 51 experiments were performed with T-site to determine the best operating conditions for the system. These conditions were applied to the J-site. The experiments for T, Al/Al system achieves an F concentration within permissible limits (0.72 mg L F) at 10 min of treatment, 0.2 A (Current density 48.78 A m) and 10 mL min with a removal efficiency of 68.69%, and after 160 min, the removal increased to 99.56%. AlMg/AlMg needs 10 min to achieve a concentration of 0.75 mg L F at 0.2 A ( 25 A m), 16 mL min with a removal efficiency of 67.39%, and after 100 min, the removal is increased to 92.17%. An important and novel advantage is the use of AlMg allows an acceptable removal of F (<1.5 mg L) at high and low concentrations in short periods of time; this also allows save energy costs and the effluent is free of residual aluminum, avoiding side effects.

摘要

本研究旨在应用电凝聚工艺在连续流中对饮用水进行除氟。研究了两个采样点,墨西哥州的特马斯卡利辛戈(T)和瓜纳华托州的杰雷夸罗(J),其氟(F)浓度均高于标准(分别为 2.3mg/L 和 4.5mg/L)。此外,还对第二个特马斯卡利辛戈样品(T)进行了富化处理,使其 F 浓度达到 9.2mg/L,以研究 F 浓度的影响。通过 Box-Behnken 模型提出了响应面设计,并研究了电极系统、流速和电流强度等变量。进行了 51 次 T 站点实验,以确定系统的最佳运行条件。这些条件应用于 J 站点。对于 T 站点,Al/Al 系统在 10 分钟的处理时间内,电流强度为 0.2A(电流密度为 48.78A/m)和 10mL/min 的条件下,可将 F 浓度降低至可接受的范围内(0.72mg/L F),去除效率为 68.69%,160 分钟后,去除率增加至 99.56%。AlMg/AlMg 系统需要 10 分钟才能在 0.2A(25A/m)、16mL/min 的条件下将 F 浓度降低至 0.75mg/L,去除效率为 67.39%,100 分钟后,去除率增加至 92.17%。一个重要且新颖的优势是,使用 AlMg 可在短时间内以高、低浓度实现可接受的 F 去除(<1.5mg/L);这还可以节省能源成本,并且流出物不含残留的铝,避免了副作用。

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