Ozonation of cephalexin antibiotic using granular activated carbon in a circulating reactor
A circulating reactor was used to decompose cephalexin during catalytic ozonation. The effect of ozone supply and granular activated carbon (GAC) catalyst was investigated for removal of CEX and COD. The regeneration of exhausted activated carbon was investigated during in-situ ozonation. According...
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Chemical Society of Pakistan
2015
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my.utm.587482021-08-22T07:41:20Z http://eprints.utm.my/id/eprint/58748/ Ozonation of cephalexin antibiotic using granular activated carbon in a circulating reactor Akhtar, Javaid Saidina Amin, Nor Aishah TP Chemical technology A circulating reactor was used to decompose cephalexin during catalytic ozonation. The effect of ozone supply and granular activated carbon (GAC) catalyst was investigated for removal of CEX and COD. The regeneration of exhausted activated carbon was investigated during in-situ ozonation. According to results, ozone supply appeared as the most influencing variable followed by dosage of granular activated carbon. The BET surface area, thermogravimetric analysis (TGA) and temperature programmed desorption (TPD) curves indicated that solid phase regeneration of activated carbon using ozone gas followed by mild thermal decomposition was very effective. The adsorption capacity of regenerated activated carbon was slightly lower than virgin activated carbon. The overall study revealed that catalytic ozonation was effective in removing cephalexin from solution and the method can be applied for in-situ ozonation processes. Chemical Society of Pakistan 2015 Article PeerReviewed Akhtar, Javaid and Saidina Amin, Nor Aishah (2015) Ozonation of cephalexin antibiotic using granular activated carbon in a circulating reactor. Journal of the Chemical Society of Pakistan, 37 (4). pp. 653-663. ISSN 0253-5106 https://jcsp.org.pk/issueDetail.aspx?aid=4dd79303-d3e7-4008-9490-1bf34eb6e22e |
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TP Chemical technology Akhtar, Javaid Saidina Amin, Nor Aishah Ozonation of cephalexin antibiotic using granular activated carbon in a circulating reactor |
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A circulating reactor was used to decompose cephalexin during catalytic ozonation. The effect of ozone supply and granular activated carbon (GAC) catalyst was investigated for removal of CEX and COD. The regeneration of exhausted activated carbon was investigated during in-situ ozonation. According to results, ozone supply appeared as the most influencing variable followed by dosage of granular activated carbon. The BET surface area, thermogravimetric analysis (TGA) and temperature programmed desorption (TPD) curves indicated that solid phase regeneration of activated carbon using ozone gas followed by mild thermal decomposition was very effective. The adsorption capacity of regenerated activated carbon was slightly lower than virgin activated carbon. The overall study revealed that catalytic ozonation was effective in removing cephalexin from solution and the method can be applied for in-situ ozonation processes. |
format |
Article |
author |
Akhtar, Javaid Saidina Amin, Nor Aishah |
author_facet |
Akhtar, Javaid Saidina Amin, Nor Aishah |
author_sort |
Akhtar, Javaid |
title |
Ozonation of cephalexin antibiotic using granular activated carbon in a circulating reactor |
title_short |
Ozonation of cephalexin antibiotic using granular activated carbon in a circulating reactor |
title_full |
Ozonation of cephalexin antibiotic using granular activated carbon in a circulating reactor |
title_fullStr |
Ozonation of cephalexin antibiotic using granular activated carbon in a circulating reactor |
title_full_unstemmed |
Ozonation of cephalexin antibiotic using granular activated carbon in a circulating reactor |
title_sort |
ozonation of cephalexin antibiotic using granular activated carbon in a circulating reactor |
publisher |
Chemical Society of Pakistan |
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2015 |
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http://eprints.utm.my/id/eprint/58748/ https://jcsp.org.pk/issueDetail.aspx?aid=4dd79303-d3e7-4008-9490-1bf34eb6e22e |
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