Wang Se, Song Xuedan, Hao Ce, Gao Zhanxian, Chen Jingwen, Qiu Jieshan
State Key Laboratory of Fine Chemicals, Dalian University of Technology, Dalian 116024, China.
State Key Laboratory of Fine Chemicals, Dalian University of Technology, Dalian 116024, China.
Chemosphere. 2015 Mar;122:62-69. doi: 10.1016/j.chemosphere.2014.11.007. Epub 2014 Dec 12.
Sulfadiazine (SDZ) mainly proceeds triplet-sensitized photolysis with dissolved organic matter (DOM) in the aquatic environment. However, the mechanisms underlying the triplet-sensitized photolysis of SDZ with DOM have not been fully worked out. In this study, we investigated the mechanisms of triplet-sensitized photolysis of SDZ(0) (neutral form) and SDZ(-) (anionic form) with four DOM analogues, i.e., fluorenone (FL), thioxanthone (TX), 2-acetonaphthone (2-AN), and 4-benzoylbenzoic acid (CBBP), and three metal ions (i.e., Mg(2+), Ca(2+), and Zn(2+)) effects using quantum chemical calculations. Results indicated that the triplet-sensitized photolysis mechanism of SDZ(0) with FL, TX, and 2-AN was hydrogen transfer, and with CBBP was electron transfer along with proton transfer (for complex SDZ(0)-CBBP2) and hydrogen transfer (for complex SDZ(0)-CBBP1). The triplet-sensitized photolysis mechanisms of SDZ(-) with FL, TX, and CBBP was electron transfer along with proton transfer, and with 2-AN was hydrogen transfer. The triplet-sensitized photolysis product of both SDZ(0) and SDZ(-) was a sulfur dioxide extrusion product (4-(2-iminopyrimidine-1(2H)-yl)aniline), but the formation routs of the products for SDZ(0) and SDZ(-) were different. In addition, effects of the metal ions on the triplet-sensitized photolysis of SDZ(0) and SDZ(-) were different. The metal ions promoted the triplet-sensitized photolysis of SDZ(0), but inhibited the triplet-sensitized photolysis of SDZ(-).
磺胺嘧啶(SDZ)在水环境中主要通过与溶解有机物(DOM)发生三线态敏化光解反应。然而,SDZ与DOM发生三线态敏化光解反应的潜在机制尚未完全明确。在本研究中,我们使用量子化学计算方法,研究了SDZ(0)(中性形式)和SDZ(-)(阴离子形式)与四种DOM类似物,即芴酮(FL)、噻吨酮(TX)、2-乙酰萘(2-AN)和4-苯甲酰苯甲酸(CBBP)的三线态敏化光解机制,以及三种金属离子(即Mg(2+)、Ca(2+)和Zn(2+))的影响。结果表明,SDZ(0)与FL、TX和2-AN的三线态敏化光解机制是氢转移,与CBBP的三线态敏化光解机制是伴随质子转移的电子转移(对于复合物SDZ(0)-CBBP2)和氢转移(对于复合物SDZ(0)-CBBP1)。SDZ(-)与FL、TX和CBBP的三线态敏化光解机制是伴随质子转移的电子转移,与2-AN的三线态敏化光解机制是氢转移。SDZ(0)和SDZ(-)的三线态敏化光解产物均为二氧化硫挤出产物(4-(2-亚氨基嘧啶-1(2H)-基)苯胺),但SDZ(0)和SDZ(-)产物的形成途径不同。此外,金属离子对SDZ(0)和SDZ(-)三线态敏化光解的影响也不同。金属离子促进了SDZ(0)的三线态敏化光解,但抑制了SDZ(-)的三线态敏化光解。