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首页> 外文期刊>Journal of Environmental Quality >Adsorption of Estrogens on Laboratory Materials and Filters during Sample Preparation
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Adsorption of Estrogens on Laboratory Materials and Filters during Sample Preparation

机译:样品制备过程中雌激素在实验室材料和过滤器上的吸附

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摘要

Despite improvements in analytical techniques for detecting hormones, such as estrogen in environmental samples, there is conflicting information regarding sample filtration before analyses. In addition, there is little information about estrogen adsorption onto other common laboratory materials, including glass, plastic, or stainless steel. Therefore, we have quantified the adsorption of three different types of estrogen (estrone [E1], 17-ethynylestradiol [EE2], and 17o-estradiol [E2]) onto 11 different types of filters and six other types of materials used for sample storage and laboratory experiments. We observed significant (p < 0.05) differences in the amount of estrogen adsorbed to the different filters. Glass fiber filters adsorbed the lowest amount, whereas nylon filters adsorbed nearly all of the estrogen that contacted them during filtration. Stainless steel and polycarbonate also adsorbed significant amounts of E1, E2, and EE2. The materials with which estrogen comes into contact should be chosen carefully to avoid potential losses due to sorption.
机译:尽管在检测环境样品中的激素(例如雌激素)的分析技术方面有所改进,但在分析之前有关样品过滤的信息存在矛盾。此外,关于雌激素吸附在其他常见实验室材料(包括玻璃,塑料或不锈钢)上的信息很少。因此,我们量化了三种不同类型的雌激素(雌酮[E1],17-乙炔雌二醇[EE2]和17o-雌二醇[E2])在11种不同类型的过滤器和六种其他类型用于样品存储的材料上的吸附量和实验室实验。我们观察到吸附在不同过滤器上的雌激素量存在显着差异(p <0.05)。玻璃纤维过滤器的吸附量最低,而尼龙过滤器几乎吸收了过滤过程中与之接触的所有雌激素。不锈钢和聚碳酸酯也吸收了大量的E1,E2和EE2。应谨慎选择与雌激素接触的材料,以避免由于吸附而造成的潜在损失。

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