4.5 Article

Efficient degradation of tetracycline by ultraviolet-based activation of peroxymonosulfate and persulfate

Journal

WATER SCIENCE AND TECHNOLOGY
Volume 79, Issue 5, Pages 911-920

Publisher

IWA PUBLISHING
DOI: 10.2166/wst.2019.034

Keywords

copper; hydroxyl radicals; sulfate radical; tetracycline; UV

Funding

  1. National Natural Science Foundation of China [51508353, 51741807, 51878357]

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In this study, the difference in oxidative capacity for removing antibiotics and the mechanism between the Cu(II)/peroxymonosulfate (PMS)/UV and Cu(II)/persulfate (PDS)/UV systems were compared under various conditions. The optimal Cu(II) concentration in the Cu(II)/PMS/UV system was 30 mu M, and in the Cu(II)/PDS/UV system was 50 mu M. With the PMS or PDS concentration increasing, higher tetracycline (TC) degradation in these two systems occurred. Investigation on the mechanism revealed that center dot OH was the primary radical in the Cu(II)/PMS/UV system, while SO4-center dot was the primary radical in the Cu(II)/PDS/UV system where center dot OH also played an important role. In these two systems, it was observed that Cu(I) was generated by PMS or PDS activated via UV illumination; however, oxygen alone could not promote TC removal. The degradation of TC was increased with the increasing pH level. In addition, TC degradation in the Cu(II)/PMS/UV system followed the pseudo-first-order kinetics model during the entire reaction period. It was found that the TC degradation kinetics in the Cu(II)/PDS/UV system can be divided into two parts (0 to 7 min and 10 to 50 min) and these two parts had good agreement with the pseudo-first-order kinetics model, respectively.

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