2010
DOI: 10.1016/j.electacta.2010.01.101
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Electrochemical degradation of azo dye C.I. Reactive Red 195 by anodic oxidation on Ti/SnO2–Sb/PbO2 electrodes

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Cited by 276 publications
(99 citation statements)
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“…13-16) [41,42]. HOCl with higher standard reduction potential is a strong oxidizing agent [40,43]. In the present case, the pH of dye solution lies in the range where both electro-flocculation and formation of oxidizing agents are favored.…”
Section: Electrolysis In Undivided Cellmentioning
confidence: 79%
“…13-16) [41,42]. HOCl with higher standard reduction potential is a strong oxidizing agent [40,43]. In the present case, the pH of dye solution lies in the range where both electro-flocculation and formation of oxidizing agents are favored.…”
Section: Electrolysis In Undivided Cellmentioning
confidence: 79%
“…The higher concentration of chloride ions was not favourable for greater mineralisation. At higher concentration of NaCl, more chloride based radicals were produced at the vicinity of the anode and these radicals are capable of cleaving the -N=N-, azo group which is the most active site of dye molecule rather than the aromatic as well as the aliphatic linkages [32]. Hence the decolourisation of dye takes place at faster rate.…”
Section: Effect Of Electrolyte Concentrationmentioning
confidence: 99%
“…Điện cực dạng màng mỏng như SnO 2 cũng cho nhiều lợi thế như dẫn điện tốt, có khả năng chống ăn mòn cao [3]. Độ…”
Section: Mở đầUunclassified
“…Điện cực dạng màng mỏng như SnO 2 cũng cho nhiều lợi thế như dẫn điện tốt, có khả năng chống ăn mòn cao [3]. Độ dẫn của SnO 2 có thể cải thiện đáng kể bằng cách bổ sung thêm B, Bi, F, P và Sb.…”
Section: Mở đầUunclassified
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