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生物膜在从溪流中吸附去除甾体激素和壬基酚化合物中的作用。

Role of biofilms in sorptive removal of steroidal hormones and 4-nonylphenol compounds from streams.

机构信息

US Geological Survey, 3215 Marine Street, Boulder, Colorado 80303, United States.

出版信息

Environ Sci Technol. 2011 Sep 1;45(17):7275-83. doi: 10.1021/es2008038. Epub 2011 Aug 16.

Abstract

Stream biofilms play an important role in geochemical processing of organic matter and nutrients, however, the significance of this matrix in sorbing trace organic contaminants is less understood. This study focused on the role of stream biofilms in sorbing steroidal hormones and 4-nonylphenol compounds from surface waters using biofilms colonized in situ on artificial substrata and subsequently transferred to the laboratory for controlled batch sorption experiments. Steroidal hormones and 4-nonylphenol compounds readily sorb to stream biofilms as indicated by organic matter partition coefficients (K(om), L kg(-1)) for 17β-estradiol (10(2.5-2.8) L kg(-1)), 17α-ethynylestradiol (10(2.5-2.9) L kg(-1)), 4-nonylphenol (10(3.4-4.6) L kg(-1)), 4-nonylphenolmonoethoxylate (10(3.5-4.0) L kg(-1)), and 4-nonylphenoldiethoxylate (10(3.9-4.3) L kg(-1)). Experiments using water quality differences to induce changes in the relative composition of periphyton and heterotrophic bacteria in the stream biofilm did not significantly affect the sorptive properties of the stream biofilm, providing additional evidence that stream biofilms will sorb trace organic compounds under of variety of environmental conditions. Because sorption of the target compounds to stream biofilms was linearly correlated with organic matter content, hydrophobic partition into organic matter appears to be the dominant mechanism. An analysis of 17β-estradiol and 4-nonylphenol hydrophobic partition into water, biofilm, sediment, and dissolved organic matter matrices at mass/volume ratios typical of smaller rivers showed that the relative importance of the stream biofilm as a sorptive matrix was comparable to bed sediments. Therefore, stream biofilms play a primary role in attenuating these compounds in surface waters. Because the stream biofilm represents the base of the stream ecosystem, accumulation of steroidal hormones and 4-nonylphenol compounds in the stream biofilm may be an exposure pathway for organisms in higher trophic levels.

摘要

河流生物膜在有机质和营养物质的地球化学处理中起着重要作用,但人们对其作为基质吸附痕量有机污染物的重要性了解较少。本研究侧重于使用原位定殖于人工基质上的生物膜,并随后转移到实验室进行受控批量吸附实验,从地表水中吸附甾体激素和壬基酚化合物的河流生物膜的作用。17β-雌二醇(10(2.5-2.8) L kg(-1))、17α-乙炔基雌二醇(10(2.5-2.9) L kg(-1))、4-壬基酚(10(3.4-4.6) L kg(-1))、4-壬基酚单乙氧基化物(10(3.5-4.0) L kg(-1))和 4-壬基酚二乙氧基化物(10(3.9-4.3) L kg(-1))等甾体激素和 4-壬基酚化合物很容易被河流生物膜吸附,这表明有机物质分配系数(K(om),L kg(-1))表明,河流生物膜对这些化合物具有很强的吸附能力。使用水质差异来诱导河流生物膜中周丛生物和异养细菌相对组成变化的实验并没有显著影响河流生物膜的吸附特性,这进一步证明了河流生物膜将在各种环境条件下吸附痕量有机化合物。由于目标化合物在河流生物膜上的吸附与有机物含量呈线性相关,因此疏水性分配到有机物中似乎是主要的机制。对 17β-雌二醇和 4-壬基酚在较小河流典型质量/体积比下向水、生物膜、沉积物和溶解有机物基质中的疏水性分配的分析表明,作为吸附基质的河流生物膜的相对重要性与底泥相当。因此,河流生物膜在地表水中衰减这些化合物方面起着主要作用。由于河流生物膜代表了河流生态系统的基础,因此甾体激素和 4-壬基酚化合物在河流生物膜中的积累可能是较高营养级生物的暴露途径。

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