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

Author: Castañeda-JuárezMonserrat, Linares-HernándezIvonne, Martínez-MirandaVerónica, Sierra-SánchezAna Gabriela, Teutli-SequeiraElia Alejandra, Vázquez-MejíaGuadalupe

Paper Details 
Original Abstract of the Article :
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<sup>-</sup>) concentrations above the norms (2.3&#8197;mg ...See full text at original site
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引用元:
https://doi.org/10.1080/09593330.2021.1931468

データ提供:米国国立医学図書館(NLM)

Optimizing Electrocoagulation for Defluoridation of Drinking Water

This study investigates the efficacy of electrocoagulation, a promising water treatment technology, for defluoridation of drinking water. The research employed a response surface design, using a Box-Behnken model to investigate the influence of various factors, including electrode system, flow rate, and current intensity, on fluoride removal efficiency. The study found that an aluminum-magnesium (AlMg) electrode system demonstrated superior fluoride removal efficiency compared to an aluminum (Al) electrode system, achieving acceptable fluoride levels within short treatment durations. The findings highlight the potential of AlMg electrocoagulation as an effective and efficient method for defluoridation of drinking water.

AlMg Electrocoagulation: A Promising Solution for Safe Drinking Water

The study's findings indicate that AlMg electrocoagulation holds great promise as a cost-effective and efficient method for defluoridation of drinking water. The use of AlMg electrodes resulted in significantly faster fluoride removal compared to Al electrodes, suggesting a more efficient and sustainable approach to water treatment. The research also highlights the importance of optimizing the operating parameters of the electrocoagulation process to maximize fluoride removal efficiency.

A Desert Oasis of Clean Water: The Promise of Electrocoagulation

Imagine a traveler traversing a vast desert, desperate for a source of clean and safe water. This research offers a glimmer of hope, highlighting the potential of electrocoagulation to provide a sustainable solution for clean drinking water. The study's findings demonstrate the effectiveness of AlMg electrocoagulation in removing harmful fluoride from water, providing a path towards a healthier and more sustainable future.

Dr. Camel's Conclusion

This study unveils the potential of AlMg electrocoagulation as an efficient and effective method for defluoridation of drinking water. The research provides valuable insights into the optimization of this promising technology, paving the way for a cleaner and healthier future for all. Just as a camel can navigate the harshest desert environments, AlMg electrocoagulation can help us conquer the challenges of water contamination and provide access to clean drinking water for all.

Date :
  1. Date Completed 2022-09-15
  2. Date Revised 2022-09-15
Further Info :

Pubmed ID

34006194

DOI: Digital Object Identifier

10.1080/09593330.2021.1931468

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SNS
PICO Info
in preparation
Languages

English

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