4.6 Article

Removal of Pb(II), Cd(II) and Ni(II) Ions from Groundwater by Nonthermal Plasma

期刊

MATERIALS
卷 15, 期 15, 页码 -

出版社

MDPI
DOI: 10.3390/ma15155426

关键词

low-temperature plasma; nonthermal plasma; cold plasma; heavy metal removal; dielectric barrier discharge; water treatment

资金

  1. Faculty of Infrastructure and Environment and the Faculty of Electrical Engineering of the Czestochowa University of Technology
  2. Faculty of Production and Power Engineering of the University of Agriculture in Krakow
  3. University of Agriculture in Krakow

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This study investigates the removal of Pb(II), Cd(II), and Ni(II) ions from aqueous solutions using nonthermal plasma with a dielectric barrier discharge. Optimization of solution flow rate, generator modulation frequency, and duty cycle was performed, and it was found that each pass of the solution through the plasma reactor resulted in a decrease in Cd(II) and Ni(II) concentrations. Pb(II) concentration dropped rapidly after one pass, but further passes did not improve its removal. The removal percentages were 88% for Cd(II) after six passes, 72% for Pb(II) after one pass, and 19% for Ni(II). The purification mechanism involved the precipitation of metal ions due to an increase in solution pH after exposure to plasma.
The removal of Pb(II), Cd(II) and Ni(II) ions from aqueous solutions by means of nonthermal plasma with a dielectric barrier discharge is investigated. Aqueous solutions with metal ion concentrations from 10 to 100 mg/dm(3) in spring water were used. In the first stage, the optimization of the solution flow rate, generator modulation frequency and duty cycle was made in terms of the removal efficiency of the considered metals. The removal was then investigated as a function of the number of passes of the solution through the cold plasma reactor. The effect of the initial concentration of ions in the solution was studied. Techniques such as composite central design, least squares method and Fourier transform infrared spectroscopy were used. The physical and chemical parameters of the solutions, such as electrical conductivity, pH, temperature, concentration of metal ions and the content of other substances (e.g., total organic carbon), were measured, and the presence of microorganisms was also examined. It was found that each pass of the solution through the cold plasma reactor causes a decrease in the concentration of Cd(II) and Ni(II); the concentration of Pb(II) drops rapidly after one pass, but further passes do not improve its removal. The removal percentage was 88% for Cd(II) after six passes and 72% for Pb(II) after one pass, whereas 19% for Ni(II). The purification mechanism corresponds to the precipitation of metal ions due to the increasing pH of the solution after exposure to cold plasma.

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