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Oxidation of natural and synthetic hormones by the horseradish peroxidase enzyme in wastewater

机译:辣根过氧化物酶对废水中天然激素和合成激素的氧化

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摘要

Steroid estrogens, including both natural estrogens (e.g., estrone - E1; 17β-estradiol - E2; and estriol - E3) and synthetic estrogens (e.g., 17α-ethinylestradiol - EE2), are known as endocrine-disrupting compounds. The objective of this research was to evaluate the feasibility of the enzymatic oxidation of estrogens and to optimize this process in municipal wastewater contaminated with steroid estrogens using horseradish peroxidase (HRP) and hydrogen peroxide. An initial HRP activity of 0.02 U ml~(-1) was sufficient to completely remove EE2 from the synthetic solution, although greater HRP doses (up to 0.06 U ml~(-1)) were required to remove E1, E2 and E3. The optimal molar peroxide-to-substrate ratio was determined to be approximately 0.45. Based on the Michaelis-Menten kinetics, the HRP had an increasing reactivity with E1, E3, E2, and EE2, in increasing order. In real activated sludge process effluent, an HRP dose of 8-10 U ml~(-1) was required to completely remove all of the studied estrogens, while only 0.032 U ml~(-1) of HRP was necessary to treat synthetic water containing the same estrogen concentrations.
机译:类固醇雌激素,包括天然雌激素(例如,雌酮-E1;17β-雌二醇-E2;和雌三醇-E3)和合成雌激素(例如17α-炔雌醇-EE2),都被称为破坏内分泌的化合物。这项研究的目的是评估酶促氧化雌激素的可行性,并使用辣根过氧化物酶(HRP)和过氧化氢对被类固醇雌激素污染的城市废水进行优化。最初的HRP活性为0.02 U ml〜(-1)足以从合成溶液中完全去除EE2,尽管需要更大的HRP剂量(最高0.06 U ml〜(-1))来去除E1,E2和E3。确定过氧化物与底物的最佳摩尔比约为0.45。基于Michaelis-Menten动力学,HRP与E1,E3,E2和EE2的反应性呈递增顺序。在实际的活性污泥工艺废水中,需要8-10 U ml〜(-1)的HRP剂量才能完全去除所有研究的雌激素,而处理合成水只需要0.032 U ml〜(-1)的HRP。含有相同浓度的雌激素

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