Wroclaw University of Science and Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland.
Wroclaw University of Science and Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland.
Sci Total Environ. 2020 Jun 20;722:137681. doi: 10.1016/j.scitotenv.2020.137681. Epub 2020 Mar 5.
Fluorine is a chemical element which is often present in natural environment. According to the World Health Organization (WHO) standards fluoride content in drinking water cannot be higher than 1.5 mg F/L. Nitrate was also found in many regions in the world. According to guidelines its content in drinking water cannot exceed 50 mg NO/L. Ingestion of fluoride and nitrate in excess leads to various health issues. There are many methods of fluoride removal, e.g. reverse osmosis, ion exchange or electrodialysis (ED). The aim of the research was to evaluate the influence of nitrate on fluoride separation by electrodialysis with monovalent selective ion-exchange membranes (PC-MVA and PC-MVK). During experiments the laboratory installation PCCell BED-1-System was applied. The ED tests were conducted at constant current density (0.78, 1.72, and 2.34 mA/cm). Model solutions containing fluoride (5, 10, 15 mg F/L), nitrate (15, 30, 45 mg NO/L) and sodium chloride (0.5 g NaCl/L) were applied. The obtained results showed that the ED process with monovalent selective ion-exchange membranes allowed to decrease fluoride content in product water below the WHO guidelines. It was observed that competition between nitrate and fluoride ions occurred during their transport through the anion-exchange membranes. The energy demand was dependent on the current density as well as on the salt concentration in treated solutions.
氟是一种化学元素,经常存在于自然环境中。根据世界卫生组织(WHO)的标准,饮用水中的氟含量不能高于 1.5mgF/L。硝酸盐也在世界上许多地区被发现。根据指南,饮用水中硝酸盐的含量不得超过 50mgNO/L。过量摄入氟化物和硝酸盐会导致各种健康问题。有许多去除氟化物的方法,例如反渗透、离子交换或电渗析(ED)。本研究的目的是评估单价选择性离子交换膜(PC-MVA 和 PC-MVK)对电渗析中硝酸盐对氟化物分离的影响。实验中使用了实验室安装的 PCCell BED-1-System。在恒定电流密度(0.78、1.72 和 2.34mA/cm)下进行 ED 测试。应用含有氟化物(5、10、15mgF/L)、硝酸盐(15、30、45mgNO/L)和氯化钠(0.5gNaCl/L)的模型溶液。结果表明,单价选择性离子交换膜的 ED 工艺可将产品水中的氟化物含量降低到 WHO 指南以下。观察到在阴离子交换膜中传输时,硝酸盐和氟化物离子之间存在竞争。能量需求取决于电流密度以及处理溶液中的盐浓度。