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Ph Dependence Of Steroid Hormone-organic Matter Interactions At Environmental Concentrations

机译:在环境浓度下类固醇激素-有机物相互作用的PH依赖性

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The interaction of estradiol, estrone, progesterone and testosterone with environmentally relevant concentrations of Aldrich humic acid, alginic acid and tannic acid was studied using solid-phase microextraction (SPME). Since bulk organic matter and certain hormones such as estradiol and estrone contain dissociable functional groups, the effect of pH on sorption was investigated as this will influence their fate and bioavailability. For humic acid and tannic acid, sorption was strongest at acidic pH when the bulk organic matter was in a non-dissociated form and decreased when they became partially negatively charged. At acidic and neutral pH the strength of partitioning was influenced by hormone functional groups content, with the strongest sorption observed for progesterone and estrone. At alkaline pH conditions, when the bulk organics were dissociated, sorption decreased considerably (up to a factor of 14), although the non-dissociated hormones testosterone and progesterone indicated greater sorption to humic acid at pH 10 compared to the partially deprotonated estradiol and estrone. This study demonstrates that SPME can be used to assess organic matter sorption behaviour of a selected range of micropollutants and at environmentally relevant organic matter concentrations.
机译:使用固相微萃取(SPME)研究了雌二醇,雌酮,孕酮和睾丸酮与环境相关浓度的奥尔德里奇腐殖酸,藻酸和鞣酸的相互作用。由于大量有机物和某些激素(如雌二醇和雌酮)含有可分解的官能团,因此研究了pH对吸附的影响,因为这会影响其命运和生物利用度。对于腐殖酸和单宁酸,当大部分有机物呈非离解形式时,吸附在酸性pH值下最强,而当它们部分带负电时则降低。在酸性和中性pH下,分配强度受激素官能团含量的影响,其中黄体酮和雌酮的吸附作用最强。在碱性pH条件下,当大部分有机物解离时,吸附率显着下降(最高为14倍),尽管与部分去质子化的雌二醇和雌酮相比,未解离的激素睾丸激素和孕酮在pH 10时对腐殖酸的吸附更大。 。这项研究表明,SPME可用于评估选定范围的微污染物在环境相关的有机物浓度下的有机物吸附行为。

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