South China Institute of Environmental Sciences, Ministry of Ecology and Environment, Guangzhou, 510655, China; College of Environmental and Chemical Engineering, Chongqing Three Gorges University, Chongqing, 404000, China.
South China Institute of Environmental Sciences, Ministry of Ecology and Environment, Guangzhou, 510655, China; Guangdong Engineering & Technology Research Center for System Control of Livestock and Poultry Breeding Pollution, Guangzhou, 510655, China.
Chemosphere. 2024 May;355:141727. doi: 10.1016/j.chemosphere.2024.141727. Epub 2024 Mar 16.
Growing focus has been drawn to the continuous detection of high estrogens levels in the soil environment. Additionally, microplastics (MPs) are also of growing concern worldwide, which may affect the environmental behavior of estrogens. However, little is known about effects of MPs occurrence on estrogens degradation in soil. In this study, polyethylene microplastics (PE-MPs) were chosen to examine the influence on six common estrogens (estrone (E1), 17α-estradiol (17α-E2), 17β-estradiol (17β-E2), estriol (E3), diethylstilbestrol (DES), and 17α-ethinylestradiol (17α-EE2)) degradation. The results indicated that PE-MPs had little effect on the degradation of E3 and DES, and slightly affected the degradation of 17α-E2, however, significantly inhibited the degradation of E1, 17α-EE2, and 17β-E2. It was explained that (i) obvious oxidation reaction occurred on the surface of PE-MPs, indicating that PE-MPs might compete with estrogens for oxidation sites, such as redox and biological oxidation; (ii) PE-MPs significantly changed the bacterial community in soil, resulting in a decline in the abundance of some bacterial communities that biodegraded estrogens. Moreover, the rough surface of PE-MPs facilitated the estrogen-degrading bacterial species (especially for E1, E2, and EE2) to adhere, which decreased their reaction to estrogens. These findings are expected to deepen the understanding of the environmental behavior of typical estrogens in the coexisting system of MPs.
人们越来越关注土壤环境中持续存在的高雌激素水平。此外,微塑料(MPs)也引起了全球越来越多的关注,它们可能会影响雌激素的环境行为。然而,人们对 MPs 的存在如何影响土壤中雌激素的降解知之甚少。在这项研究中,选择了聚乙烯微塑料(PE-MPs)来研究其对六种常见雌激素(雌酮(E1)、17α-雌二醇(17α-E2)、17β-雌二醇(17β-E2)、雌三醇(E3)、己烯雌酚(DES)和 17α-乙炔基雌二醇(17α-EE2))降解的影响。结果表明,PE-MPs 对 E3 和 DES 的降解影响较小,对 17α-E2 的降解略有影响,但对 E1、17α-EE2 和 17β-E2 的降解有显著抑制作用。这可以解释为:(i)PE-MPs 表面发生了明显的氧化反应,表明 PE-MPs 可能与雌激素竞争氧化位点,如氧化还原和生物氧化;(ii)PE-MPs 显著改变了土壤中的细菌群落,导致一些降解雌激素的细菌群落丰度下降。此外,PE-MPs 的粗糙表面促进了雌激素降解细菌的附着(特别是对于 E1、E2 和 EE2),从而减少了它们对雌激素的反应。这些发现有望加深对 MPs 共存体系中典型雌激素环境行为的理解。