Electrochemical Degradation of Reactive Blue 21 and Synthetic Textile Effluent by Using Co47.5/C47.5-PVC5 Composite Electrode
In this study, cobalt/graphite-polyvinyl chloride (Co47.5/C47.5-PVC5) composite electrode was fabricated by mechanical alloying technique. The fabricated electrode and graphite rod were used as anode and cathode, respectively, in the decolourisation of aqueous C. I. Reactive Blue 21 (RB21) and synth...
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Slovenian Chemical Society
2019-06-01
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doaj-27ba826012ff4ca1ba0be6b4e03ecee12020-11-25T01:39:10ZengSlovenian Chemical SocietyActa Chimica Slovenica1318-02071580-31552019-06-0166228429310.17344/acsi.2018.4705687Electrochemical Degradation of Reactive Blue 21 and Synthetic Textile Effluent by Using Co47.5/C47.5-PVC5 Composite ElectrodeNorazzizi Nordin0Mohamad Anis Farith PisalNur Izzatie Hannah RazmanNur Farhana JaafarUniversiti Sains MalaysiaIn this study, cobalt/graphite-polyvinyl chloride (Co47.5/C47.5-PVC5) composite electrode was fabricated by mechanical alloying technique. The fabricated electrode and graphite rod were used as anode and cathode, respectively, in the decolourisation of aqueous C. I. Reactive Blue 21 (RB21) and synthetic textile effluent, containing a mixture of azo and anthraquinone dyes. The fabricated electrode showed high efficiency in the decolorisation of aqueous RB21 (99.95%) and synthetic textile effluent. This is further confirmed by the high reduction percentage (>75%) of COD and BOD5 for both treated samples. The elemental composition study by using FESEM-EDX showed no significant changes in the composition of elements (C, Co and Cl) in the freshly fabricated electrode and after electrolysis of synthetic textile effluent. This showed that the fabricated electrode has a high mechanical strength and strong binding ability between C and Co due to the use of PVC as a binder.https://journals.matheo.si/index.php/ACSi/article/view/4705Composite electrodedecolorizationelectrochemical techniqueC. I. Reactive Blue 21synthetic textile effluent |
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DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Norazzizi Nordin Mohamad Anis Farith Pisal Nur Izzatie Hannah Razman Nur Farhana Jaafar |
spellingShingle |
Norazzizi Nordin Mohamad Anis Farith Pisal Nur Izzatie Hannah Razman Nur Farhana Jaafar Electrochemical Degradation of Reactive Blue 21 and Synthetic Textile Effluent by Using Co47.5/C47.5-PVC5 Composite Electrode Acta Chimica Slovenica Composite electrode decolorization electrochemical technique C. I. Reactive Blue 21 synthetic textile effluent |
author_facet |
Norazzizi Nordin Mohamad Anis Farith Pisal Nur Izzatie Hannah Razman Nur Farhana Jaafar |
author_sort |
Norazzizi Nordin |
title |
Electrochemical Degradation of Reactive Blue 21 and Synthetic Textile Effluent by Using Co47.5/C47.5-PVC5 Composite Electrode |
title_short |
Electrochemical Degradation of Reactive Blue 21 and Synthetic Textile Effluent by Using Co47.5/C47.5-PVC5 Composite Electrode |
title_full |
Electrochemical Degradation of Reactive Blue 21 and Synthetic Textile Effluent by Using Co47.5/C47.5-PVC5 Composite Electrode |
title_fullStr |
Electrochemical Degradation of Reactive Blue 21 and Synthetic Textile Effluent by Using Co47.5/C47.5-PVC5 Composite Electrode |
title_full_unstemmed |
Electrochemical Degradation of Reactive Blue 21 and Synthetic Textile Effluent by Using Co47.5/C47.5-PVC5 Composite Electrode |
title_sort |
electrochemical degradation of reactive blue 21 and synthetic textile effluent by using co47.5/c47.5-pvc5 composite electrode |
publisher |
Slovenian Chemical Society |
series |
Acta Chimica Slovenica |
issn |
1318-0207 1580-3155 |
publishDate |
2019-06-01 |
description |
In this study, cobalt/graphite-polyvinyl chloride (Co47.5/C47.5-PVC5) composite electrode was fabricated by mechanical alloying technique. The fabricated electrode and graphite rod were used as anode and cathode, respectively, in the decolourisation of aqueous C. I. Reactive Blue 21 (RB21) and synthetic textile effluent, containing a mixture of azo and anthraquinone dyes. The fabricated electrode showed high efficiency in the decolorisation of aqueous RB21 (99.95%) and synthetic textile effluent. This is further confirmed by the high reduction percentage (>75%) of COD and BOD5 for both treated samples. The elemental composition study by using FESEM-EDX showed no significant changes in the composition of elements (C, Co and Cl) in the freshly fabricated electrode and after electrolysis of synthetic textile effluent. This showed that the fabricated electrode has a high mechanical strength and strong binding ability between C and Co due to the use of PVC as a binder. |
topic |
Composite electrode decolorization electrochemical technique C. I. Reactive Blue 21 synthetic textile effluent |
url |
https://journals.matheo.si/index.php/ACSi/article/view/4705 |
work_keys_str_mv |
AT norazzizinordin electrochemicaldegradationofreactiveblue21andsynthetictextileeffluentbyusingco475c475pvc5compositeelectrode AT mohamadanisfarithpisal electrochemicaldegradationofreactiveblue21andsynthetictextileeffluentbyusingco475c475pvc5compositeelectrode AT nurizzatiehannahrazman electrochemicaldegradationofreactiveblue21andsynthetictextileeffluentbyusingco475c475pvc5compositeelectrode AT nurfarhanajaafar electrochemicaldegradationofreactiveblue21andsynthetictextileeffluentbyusingco475c475pvc5compositeelectrode |
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1725050101953462272 |