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Mitigation of Fluoride from Brackish Water via Electrodialysis: An Environmentally Friendly Process

机译:通过电透析从微咸水中缓解氟化物:环保过程

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Present study reports the removal of fluoride from brackish water by electrodialysis (ED) process using indigenous ion exchange membranes. Defluoridation study was performed using in-house made laboratory scale ED unit of effective area 200 cm~2 using synthetic as well as real field sample. The effect of experimental conditions such as applied potential, brackishness in feed samples and fluoride concentration have been investigated during ED process. Experiments were performed with 2050 mg/L of salt concentration with 5, 10, 20 mg/L of fluoride in brackish water. Performance evolution study in terms of power consumption and current efficiency has also been studied to evaluate the suitability of the process for the defluoridation of brackish water. The experimental results revealed that the defluoridation performance increased as we increased potential. 2.0 volt/cell pair applied potential found to be optimum for defluoridation of brackish water in term of power consumption (1.2 kWh /kg) and current efficiency (87.0%) during electrodialysis. Study shows that ED system found to be suitable for defluoridation of brackish water.
机译:目前的研究报告说,使用本土离子交换膜通过电透析(ED)工艺从微钻水中去除氟化物。使用内部制造的实验室规模ED单元进行有效面积200 cm〜2的实验室量表进行了屈光研究研究,并使用合成和实地样品进行。在ED过程中,已经研究了实验条件,例如应用潜力,饲料样品中的金微微度和氟化物浓度的影响。用2050 mg/l的盐浓度在咸水中使用5、10、20 mg/l的氟化物进行实验。还研究了有关功耗和当前效率的绩效进化研究,以评估该过程对咸水流氟化的适用性。实验结果表明,随着我们的潜力提高,流氟化的性能增加了。 2.0伏特 /细胞对施加的电位在电力消耗期(1.2 kWh /kg)和电流透析期间的电流效率(1.2 kWh /kg)和电流效率(87.0%)中发现是最佳的。研究表明,ED系统发现适合于咸水的流氟化。

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