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Effects of pH and dissolved oxygen on the photodegradation of 17 alpha-ethynylestradiol in dissolved humic acid solution

机译:pH和溶解氧对腐殖酸溶液中17α-乙炔基雌二醇光降解的影响

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摘要

To probe the mechanisms responsible for pH and dissolved oxygen (DO) affecting the photodegradation of 17 alpha-ethynylestradiol (EE2) in dissolved humic acid (HA) solution, EE2 aqueous solutions with pH values ranging from 3.0 to 11.0 and different DO conditions were irradiated by using a 300 W mercury lamp equipped with 290 nm light cutoff filters. In 5.0 mg L-1 HA solutions (pH 8.0), EE2 was degraded at a rate of 0.0739 h(-1) which was about 4-fold faster than that in Milli-Q water. The degradation of EE2 was mainly caused by the oxidation of photogenerated reactive species (RS), and the contribution of direct photodegradation to EE2 degradation was always lower than 27%. Both the direct and indirect photodegradation of EE2 were closely dependent on the EE2 initial concentration, pH value and DO concentration. The photodegradation rate of EE2 decreased with increased initial concentration of EE2 due to the limitation of photon flux. With pH and DO increasing, the degradation rate of EE2 increased significantly due to the increase in the yields of excited EE2 and RS. Among the photogenerated RS, HO center dot and (3)HA* were determined to be the key contributors, and their global contribution to EE2 photodegradation was about 50%. Although HA could generate more O-1(2) than HO center dot, the contribution of O-1(2) to EE2 degradation was lower than 13% due to its low reactivity towards EE2. This study could enlarge our knowledge on the photochemical behaviors of steroid estrogens in natural sunlit waters.
机译:为了探究影响pH和溶解氧(DO)影响溶解腐殖酸(HA)溶液中17α-乙炔基雌二醇(EE2)光降解的机理,照射了pH值为3.0到11.0以及不同DO条件的EE2水溶液。通过使用配备290 nm截止滤光片的300 W汞灯。在5.0 mg L-1 HA溶液(pH 8.0)中,EE2的降解速度为0.0739 h(-1),比Milli-Q水中快约4倍。 EE2的降解主要是由光生反应性物种(RS)的氧化引起的,直接光降解对EE2降解的贡献始终低于27%。 EE2的直接和间接光降解都与EE2的初始浓度,pH值和DO浓度密切相关。由于光子通量的限制,EE2的光降解速率随着EE2初始浓度的增加而降低。随着pH和DO的增加,由于激发的EE2和RS的产率增加,EE2的降解率显着增加。在光生RS中,HO中心点和(3)HA *被确定为主要贡献者,它们对EE2光降解的总体贡献约为50%。尽管HA可以比HO中心点生成更多的O-1(2),但是O-1(2)对EE2的降解作用却低于13%,原因是它对EE2的反应性较低。这项研究可以扩大我们对天然阳光水中类固醇雌激素光化学行为的认识。

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