Department of Soil Science, North Dakota State University, Fargo, ND 58108-6050, USA.
Department of Soil Science, North Dakota State University, Fargo, ND 58108-6050, USA.
Chemosphere. 2015 Jan;119:1322-1328. doi: 10.1016/j.chemosphere.2014.02.016. Epub 2014 Mar 12.
To identify abiotic processes that govern the fate of a sulfate conjugated estrogen, 17β-estradiol-17-sulfate (E2-17S), soil batch experiments were conducted to investigate the dissipation, sorption, and degradation of radiolabeled E2-17S under sterilized conditions. The aqueous dissipation half-lives (DT50) for E2-17S ranged from 2.5 to 9.3h for the topsoil of high organic carbon (OC) content (1.29%), but E2-17S remained at ∼80% of applied dose in the low OC (0.26%) subsoil by 14 d. The non-linear sorption isotherms indicated limited sorption of E2-17S, and the concentration-dependent log KOC values were 2.20 and 2.45 for the topsoil and subsoil, respectively. Additionally, two types of hydroxyl E2-17S (OH-E2-17S and diOH-E2-17S) were found as major metabolites in the aqueous phase, which represented 9-25% and 6-7% of applied dose for the topsoil and subsoil at 14 d, respectively. Free estrogens, 17β-estradiol (E2) and estrone (E1), were detected from the sorbed phase of the soil-water systems.
为了确定控制硫酸盐结合雌激素(17β-雌二醇-17-硫酸盐,E2-17S)命运的非生物过程,进行了土壤批量实验,以研究在灭菌条件下放射性标记的 E2-17S 的消散、吸附和降解。高有机碳(OC)含量(1.29%)表土中 E2-17S 的水相消散半衰期(DT50)范围为 2.5 至 9.3 小时,但在 14 天内,低 OC(0.26%)底土中 E2-17S 的残留量仍约为施用量的 80%。非线性吸附等温线表明 E2-17S 的吸附有限,浓度依赖性的 log KOC 值分别为 2.20 和 2.45,适用于表土和底土。此外,在水相中发现了两种类型的羟基 E2-17S(OH-E2-17S 和 diOH-E2-17S)作为主要代谢物,在 14 天时,分别占表土和底土施用量的 9-25%和 6-7%。游离雌激素 17β-雌二醇(E2)和雌酮(E1)从土壤-水系统的吸附相中被检测到。