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Ultrasonic degradation of bisphenol A, 17β-estradiol, and 17α-ethinyl estradiol in aqueous solution

机译:超声降解水溶液中双酚A,17β-雌二醇和17α-乙炔基雌二醇

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摘要

This study examined the relative degradation of commonly known endocrine-disrupting compounds (EDCs) such as bisphenol A (BPA), 17β-estradiol (E2), and 17α-ethinyl estradiol (EE2) in single-component aqueous solution using 28, 580, and 1,000 kHz ultrasonic reactors. The degradation of EDCs follows a pseudo-first order rate kinetics; the order of degradation is EE2 > BPA > E2. At different frequencies, the degradation of these compounds follows the order 580 kHz (92-97%) > 1,000 kHz (90-94%) > 28 kHz (62-67%) at an initial concentration of 1 μM of each compound with a contact time of 30 min. Additional experiments were performed to determine the effects of carbon tetrachloride (CCl_4, H' scavenger) and tert-butyl alcohol (f-BuOH, HO" scavenger) on BPA, E2, and EE2 degradation at 580 kHz with a reaction time of 30 min. The addition of t-BuOH slightly decreased the rate of BPA degradation as follows: no addition (97%), 0.01 mM (96%), and 0.1 mM (95%). At high t-BuOH concentrations of 1, 10, and 100 mM, the degree of degradation was significantly decreased; that is, the degradation decreased to 90%, 33%, and 20%), respectively. However, in the presence of CCl_4, the BPA degradation increased as follows: no addition (97%), 0.01/0.1 mM (98%), 1 mM (99.7%), and 10 mM (99.8%).
机译:这项研究使用28,580,和1,000 kHz超声波反应堆。 EDC的降解遵循拟一级反应动力学。降级顺序为EE2> BPA> E2。在每种化合物的初始浓度为1μM的情况下,这些化合物的降解在不同频率下的顺序为580 kHz(92-97%)> 1,000 kHz(90-94%)> 28 kHz(62-67%)。接触时间为30分钟。进行了其他实验,以确定四氯化碳(CCl_4,H'清除剂)和叔丁醇(f-BuOH,HO“清除剂)对BPA,E2和EE2的降解在580 kHz下的反应时间为30分钟。添加t-BuOH会稍微降低BPA降解速率,如下所示:不添加(97%),0.01 mM(96%)和0.1 mM(95%)。在高浓度的1、10、10, 100 mM时,降解程度显着降低;即降解降低到90%,33%和20%。但是,在存在CCl_4的情况下,BPA降解增加如下:不添加( 97%),0.01 / 0.1 mM(98%),1 mM(99.7%)和10 mM(99.8%)。

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