4.6 Article

Azo-Dye-Functionalized Polycarbonate Membranes for Textile Dye and Nitrate Ion Removal

期刊

MICROMACHINES
卷 13, 期 4, 页码 -

出版社

MDPI
DOI: 10.3390/mi13040577

关键词

dye separation; membrane filtration; rejection; flow rate; decolorization; pollution; textile wastewater; fabric treatments; hysteresis; azo dye

资金

  1. National Science Foundation [1828358-a, 1458952]
  2. WV Higher Education Policy Commission, Division of Science and Research [dsr.20.16]
  3. NASA West Virginia Space Grant Consortium Fellowship Program [80NSSC20M0055]
  4. Marshall University
  5. Division Of Chemistry
  6. Direct For Mathematical & Physical Scien [1828358] Funding Source: National Science Foundation

向作者/读者索取更多资源

Challenges exist in wastewater treatment of dyes from the textiles industry. A study shows that functionalized membranes can effectively remove dyes and ions with high rejection rates.
Challenges exist in the wastewater treatment of dyes produced by the world's growing textiles industry. Common problems facing traditional wastewater treatments include low retention values and breaking the chemical bonds of some dye molecules, which in some cases can release byproducts that can be more harmful than the original dye. This research illustrates that track-etched polycarbonate filtration membranes with 100-nanometer diameter holes can be functionalized with azo dye direct red 80 at 1000 mu M, creating a filter that can then be used to remove the entire negatively charged azo dye molecule for a 50 mu M solution of the same dye, with a rejection value of 96.4 +/- 1.4%, at a stable flow rate of 114 +/- 5 mu L/min post-functionalization. Post-functionalization, Na+ and NO3(-) ions had on average 17.9%, 26.0%, and 31.1% rejection for 750, 500, and 250 mu M sodium nitrate solutions, respectively, at an average flow rate of 177 +/- 5 mu L/min. Post-functionalization, similar 50 mu M azo dyes had increases in rejection from 26.3% to 53.2%. Rejection measurements were made using ultraviolet visible-light spectroscopy for dyes, and concentration meters using ion selective electrodes for Na+ and NO3(-) ions.

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