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Electrochemical Atrazine Removal. On the behaviour of Atrazine removal from water using fabrics as anodes and cathodes | 105 |
noviembre 2023 | diciembre 2023 | enero 2024 | febrero 2024 | marzo 2024 | abril 2024 | mayo 2024 | |
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Electrochemical Atrazine Removal. On the behaviour of Atrazine removal from water using fabrics as anodes and cathodes | 0 | 0 | 0 | 57 | 23 | 12 | 13 |
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Readme.txt | 22 |
Figure 1a. FE–SEM images showing the morphology for the synthesized TC–RGO–Pt electrode.tif | 15 |
Figure 1c. EDX surface analysis.tif | 13 |
Figure 1b. FE–SEM images showing the morphology for the synthesized TC–RGO–Pt electrode magnified.tif | 12 |
Figure 4. Mechanism of electroxidation process..tif | 12 |
Table 2. Evolution of different parameters when 90% of Atrazine is removed after the electrolysis.pdf | 10 |
Figure 3. Gas Chomatography chromatograms of Atrazine solution treated by undivided cell at 1.5 V with 50 (mM) Na2SO4 + 5 (mM) NaCl.tif | 9 |
Figure S1. FTIR spectra of the Atrazine solution before and after electrolysis.csv | 9 |
Figure 2c. Variation of Atrazine concentrations versus loaded specific charge in 50 (mM) Na2SO4 in an undivided cell.csv | 8 |
Figure 2a. Variation of Atrazine concentrations versus loaded specific charge in 50 (mM) Na2SO4.csv | 7 |
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