Fabbri Debora, Minella Marco, Maurino Valter, Minero Claudio, Vione Davide
Department of Chemistry, University of Torino, via P. Giuria 5, 10125 Torino, Italy.
Department of Chemistry, University of Torino, via P. Giuria 5, 10125 Torino, Italy.
Chemosphere. 2015 Sep;134:452-8. doi: 10.1016/j.chemosphere.2015.04.102. Epub 2015 May 23.
The direct and indirect photodegradation of six cephalosporins was predicted using a photochemical model, on the basis of literature values of photochemical reactivity. Environmental photodegradation would be important in surface water bodies with depth ⩽ 2-3m, and/or in deeper waters with low values of the dissolved organic carbon (DOC ⩽ 1 mg C L(-1)). The half-life times would range from a few days to a couple of weeks in summertime. In deeper and higher-DOC waters and/or in different seasons, hydrolysis could prevail over photodegradation. The direct photolysis of cephalosporins is environmentally concerning because it is known to produce toxic intermediates. It would be a major pathway for cefazolin, an important one for amoxicillin and cefotaxime and, at pH<6.5, for cefapirin as well. In contrast, direct photolysis would be negligible for cefradine and cefalexin. The DOC values would influence the fraction of photodegradation accounted for by direct photolysis in shallow water, to a different extent depending on the role of sensitisation by the triplet states of chromophoric dissolved organic matter.
基于光化学反应性的文献值,使用光化学模型预测了六种头孢菌素的直接和间接光降解情况。在深度≤2 - 3米的地表水体中,和/或在溶解有机碳含量较低(DOC≤1毫克碳/升)的较深水体中,环境光降解可能很重要。在夏季,半衰期从几天到几周不等。在更深且DOC含量更高的水体中,和/或在不同季节,水解作用可能会超过光降解作用。头孢菌素的直接光解在环境方面值得关注,因为已知它会产生有毒中间体。对于头孢唑林来说,这将是主要途径;对于阿莫西林和头孢噻肟是重要途径;在pH < 6.5时,对于头孢匹林也是重要途径。相比之下,头孢拉定和头孢氨苄的直接光解作用可忽略不计。DOC值会影响浅水中直接光解在光降解中所占的比例,其影响程度因发色溶解有机物三重态的敏化作用的不同而有所差异。