考虑内分泌干扰特性的壬基酚水质标准的推导

IF 2 Q3 Environmental Science
Pei Gao, Lei Guo, Zheng-yan Li, M. Gibson
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引用次数: 4

摘要

壬基酚(NP)是一种内分泌干扰物,在多种生物中引起雌性化。本研究旨在基于物种敏感性分布(SSD)模型,考虑生殖毒性和传统毒性效应,确定中国NP水质标准。在已发表的文献中,共有17个以中国水生生物为研究对象的生殖终点慢性值和14个以传统终点慢性值,其中6个为海洋物种。由于海洋物种的慢性毒性数据有限,因此采用急性-慢性毒性比方法从急性-慢性毒性值进行推断。然后用一整套NP的慢性毒性值建立SSD模型。在模型模拟的基础上,计算出淡水中生殖终点和传统终点的慢性水质标准分别为1.37 μg/L和4.29 μg/L。海水中标准为1.68 μg/L。虽然这些标准是由不隶属于中国标准制定部门的第三方机构制定的,但它们是从科学的角度得出的,可用于评价各种水体中壬基酚的水质和生态风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The derivation of water quality criteria for nonylphenol considering its endocrine disrupting features
Nonylphenol (NP) is an endocrine disruptor and causes feminization in various organisms. This study aims to determine the water quality criteria for NP in China based on species sensitivity distribution (SSD) models considering both reproductive and traditional toxicity effects. A total of 17 chronic values with reproductive endpoints and 14 chronic values with traditional endpoints tested with aquatic species resident in China were found in published literature, among which six values were from marine species. As chronic toxicity data for marine species were limited, the acute-to-chronic toxicity ratio methodology was employed to extrapolate from acute-to-chronic toxicity values. The SSD models were then built with a whole set of chronic toxicity values for NP. Based on model simulation, the chronic water quality criterion in fresh water was calculated as 1.37 μg/L and 4.29 μg/L for reproductive endpoints and traditional endpoints, respectively. The criterion in seawater was derived as 1.68 μg/L for traditional endpoints. Although these criteria were derived by a third-party organization not affiliated with the Chinese authority for criteria development, they were obtained from a scientific point of view and can be used to evaluate water quality and ecological risks of nonylphenol in various water bodies.
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来源期刊
CiteScore
1.70
自引率
0.00%
发文量
18
审稿时长
>12 weeks
期刊介绍: The Water Quality Research Journal publishes peer-reviewed, scholarly articles on the following general subject areas: Impact of current and emerging contaminants on aquatic ecosystems Aquatic ecology (ecohydrology and ecohydraulics, invasive species, biodiversity, and aquatic species at risk) Conservation and protection of aquatic environments Responsible resource development and water quality (mining, forestry, hydropower, oil and gas) Drinking water, wastewater and stormwater treatment technologies and strategies Impacts and solutions of diffuse pollution (urban and agricultural run-off) on water quality Industrial water quality Used water: Reuse and resource recovery Groundwater quality (management, remediation, fracking, legacy contaminants) Assessment of surface and subsurface water quality Regulations, economics, strategies and policies related to water quality Social science issues in relation to water quality Water quality in remote areas Water quality in cold climates The Water Quality Research Journal is a quarterly publication. It is a forum for original research dealing with the aquatic environment, and should report new and significant findings that advance the understanding of the field. Critical review articles are especially encouraged.
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