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Competitive and Complementary Adsorption of Bisphenol A and 17α-Ethinyl Estradiol on Carbon Nanomaterials

机译:碳纳米材料上双酚A和17α-乙炔雌二醇的竞争性和互补性吸附

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摘要

Competitive adsorption between organic chemicals is an important process affecting their environmental behavior and risk. Overlapping of adsorption sites between solutes was often emphasized in the literature. However, chemicals with different properties may complementarily occupy different sorption sites. The objective of this study was to test this hypothesis by collecting detailed information on competitive and accumulative adsorption of different chemicals on carbon nanomaterials (CNMs). Bisphenol A (BPA) and 17α-ethinyl estradiol (EE2) are different with regard to their hydrophobicity and molecular structures, and they were selected as model chemicals. The cumulative adsorption of both BPA and EE2 in bisolute adsorption experiments resulted in much higher total adsorption than in single-solute adsorption experiments. A new competitive-complementary adsorption concept was proposed. This information indicates that the modeling concept of competitive adsorption should be improved to better understand the fate and risk of both CNMs and organic chemicals.
机译:有机化学物质之间的竞争性吸附是影响其环境行为和风险的重要过程。文献中经常强调溶质之间吸附位点的重叠。但是,具有不同特性的化学药品可以互补地占据不同的吸附位点。这项研究的目的是通过收集有关不同化学物质在碳纳米材料(CNMs)上的竞争性和累积吸附的详细信息来检验该假设。双酚A(BPA)和17α-乙炔基雌二醇(EE2)的疏水性和分子结构不同,因此被选为模型化学品。双溶质吸附实验中BPA和EE2的累积吸附导致总吸附量远高于单溶质吸附实验。提出了一种新的竞争互补吸附概念。这些信息表明,竞争性吸附的建模概念应加以改进,以更好地了解CNM和有机化学品的命运和风险。

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