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首页> 外文期刊>Journal of Environmental Quality >Sorption and Transport of 17{beta}-Estradiol and Testosterone in Undisturbed Soil Columns
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Sorption and Transport of 17{beta}-Estradiol and Testosterone in Undisturbed Soil Columns

机译:17 {β}-雌二醇和睾丸激素在原状土壤柱中的吸附和迁移

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Land-applied domestic animal wastes contain appreciable amounts of 17beta-estradiol (henceforth, estradiol) and testosterone. These sex hormones may be transported through soil to groundwater and streams, where they may adversely affect the environment. Previous column transport studies with these hormones used repacked soil and did not consider preferential flow. We, therefore, determined the sorption and transport characteristics of estradiol and testosterone in undisturbed soil columns (15-cm i.d. by 32-cm height). In the sorption experiment, isotherms for estradiol and testosterone were nonlinear with Freundlich exponents (n) less than one. Sorption of both hormones decreased with soil depth, and estradiol sorbed more strongly than testosterone. Average estradiol Freundlich sorption coefficients (K(f)) values were 36.9 mug(1 - n) mL(n) g(-1) for the 0- to 10-cm soil depth and 25.7 mug(1 - n) mL(n) g(-1) for the 20- to 30-cm soil depth. Average testosterone K(f) values were 26.7 mug(1 - n) mL(n) g(-1) for the 0- to 10-cm soil depth and 14.0 mug(1 - n) mL(n) g(-1) for the 20- to 30-cm soil depth. In the transport experiment, 27% of the estradiol and 42% of the testosterone leached through the soil columns. Approximately 50% of the remaining soil-bound hormones were sorbed in the top 10 cm of soil. In almost all instances, breakthrough concentrations of estradiol, testosterone, and a chloride tracer peaked simultaneously. Simultaneous breakthrough and HYDRUS-1D transport parameters indicated both chemical and physical nonequilibrium processes affected hormone transport. This suggests hormones placed on soil surfaces may contaminate groundwater under conditions of preferential flow.
机译:陆地施用的家畜废物中含有相当数量的17β-雌二醇(以下简称雌二醇)和睾丸激素。这些性激素可能通过土壤运输到地下水和溪流中,对环境造成不利影响。先前使用这些激素进行的色谱柱转运研究使用的是重新装填的土壤,并未考虑优先流动。因此,我们确定了未受干扰的土壤柱(内径15厘米,高32厘米)中雌二醇和睾丸酮的吸附和转运特性。在吸附实验中,雌二醇和睾丸激素的等温线是非线性的,弗氏指数(n)小于1。两种激素的吸收随着土壤深度的增加而降低,雌二醇的吸收比睾丸激素更强烈。 0至10厘米土壤深度的平均雌二醇Freundlich吸附系数(K(f))值为36.9杯(1- n)mL(n)g(-1)和25.7杯(1-n)mL(n) )g(-1),适用于20至30厘米的土壤深度。 0至10厘米土壤深度的平均睾丸激素K(f)值为26.7杯(1- n)mL(n)g(-1)和14.0杯(1-n)mL(n)g(-1) )用于20至30厘米的土壤深度。在运输实验中,27%的雌二醇和42%的睾丸激素通过土壤柱浸出。大约50%的残留在土壤中的激素被吸附在土壤的最上面10厘米。在几乎所有情况下,雌二醇,睾丸激素和氯化物示踪剂的突破浓度同时达到峰值。同时突破和HYDRUS-1D转运参数表明化学和物理非平衡过程均影响激素转运。这表明,在优先流动的条件下,放置在土壤表面的激素可能会污染地下水。

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