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Modeling coupled degradation, sorption, and transport of 17β-estradiol in undisturbed soil

机译:模拟17β-雌二醇在未扰动土壤中的耦合降解,吸附和迁移

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The presence of 17β-estradiol in the environment, even at parts-per-trillion concentrations, raises significant concern regarding the health of aquatic organisms. Once 17β-estradiol is released into the environment from human and animal sources, its fate and transport is controlled by factors such as sorption and transformation, which need to be understood to fully assess potential exposures. The objective of this study was first to discern, through controlled batch experiments, the simultaneous transformation (i.e., chemical and biological) of natural estrogenic compounds and their mass exchange between the aqueous and solid phase (i.e., reversible and irreversible sorption sites). In addition, a model was developed that used a series of first-order expressions to describe the various fate and transport processes of parent and metabolite estrogens in the nonequilibrium batch experiments. A global optimization method was used to estimate the parameters of this nonequilibrium batch model. The model provided a good description of the data, and the parameter estimates were reliable. The batch studies parameter estimates were then incorporated into a convective-dispersive model to describe two undisturbed column experiments. The consistency of parameter estimates between the batch and column experiments indicated a high capability and reliability of this model and the parameter values.
机译:即使在万亿分之一的浓度下,环境中17β-雌二醇的存在也引起了人们对水生生物健康的极大关注。一旦17β-雌二醇从人和动物源释放到环境中,其命运和运输就受到诸如吸附和转化等因素的控制,必须充分理解这些因素才能充分评估潜在的暴露程度。这项研究的目的是首先通过受控的分批实验来识别天然雌激素化合物的同时转化(即化学和生物学)及其在水相和固相之间的质量交换(即可逆和不可逆的吸附位)。此外,开发了一个模型,该模型使用一系列一阶表达式来描述非平衡批处理实验中母体和代谢雌激素的各种命运和转运过程。使用全局优化方法来估计此非平衡批处理模型的参数。该模型对数据提供了很好的描述,并且参数估计是可靠的。然后将批处理研究的参数估计值合并到对流扩散模型中,以描述两个不受干扰的色谱柱实验。批处理和色谱柱实验之间参数估计的一致性表明该模型和参数值具有很高的功能和可靠性。

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