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鱼类中无机砷浓度受营养级和大小控制,而非受水体浓度控制:对人类健康水质标准的启示。

Inorganic Arsenic Concentration in Fish Governed by Trophic Level and Size, not Water Concentration: Implications for Human Health Water Quality Criteria.

机构信息

Arcadis US, Hanover, Maryland.

Idaho Department of Environmental Quality, Boise, Idaho, USA.

出版信息

Environ Toxicol Chem. 2023 Jul;42(7):1542-1552. doi: 10.1002/etc.5636. Epub 2023 May 22.

DOI:10.1002/etc.5636
PMID:37083247
Abstract

In 2019, the Idaho Department of Environmental Quality implemented a paired surface water and fish tissue data collection program to derive a state-specific bioaccumulation factor (BAF) for inorganic arsenic (iAs) as part of the development of new human health water quality criteria (HHWQC). No statistically significant relationship was found between total arsenic (tAs) or iAs in surface water and fish tissue. Fish body weight was the only parameter with a statistically significant effect on iAs concentration in fish tissue. The ratio of iAs to tAs in fish tissue declined significantly with both increasing trophic level and increasing body weight. The decrease in iAs concentration in fish tissue with increasing size and trophic level as well as the decrease in the proportion of tAs that is iAs with increasing trophic level are likely the result of metabolic transformation of iAs to organic As by organisms in each level of the aquatic food web. Although the linear regression-based BAF using the Idaho paired fish and water data best predicted observed iAs fish tissue concentrations compared to several alternative BAFs, it was not statistically significant (p < 0.05) and was a poor predictor (R  = 0.01) of iAs concentrations in fish tissue. These results illustrate that iAs, and possibly other metals, in the natural environment do not conform with commonly used bioaccumulation models and the paradigm used by the US Environmental Protection Agency for determining HHWQC. These results indicate that modifications to the paradigm are necessary, such as a fish tissue criterion as Idaho has proposed, to assure that public health is protected. Environ Toxicol Chem 2023;42:1542-1552. © 2023 SETAC.

摘要

2019 年,爱达荷州环境保护部实施了一项地表水和鱼类组织数据采集计划,以获得针对无机砷 (iAs) 的特定于本州的生物蓄积因子 (BAF),这是制定新的人类健康水质标准 (HHWQC) 的一部分。在地表水和鱼类组织中,总砷 (tAs) 或 iAs 之间没有发现具有统计学意义的关系。鱼类体重是唯一对鱼类组织中 iAs 浓度具有统计学显著影响的参数。鱼类组织中 iAs 与 tAs 的比例随着营养水平和体重的增加而显著下降。鱼类组织中 iAs 浓度随尺寸和营养水平的增加而降低,以及随着营养水平的增加而 tAs 中 iAs 的比例降低,这很可能是由于生物体在水生食物网的每个层次中对 iAs 进行代谢转化为有机 As 的结果。尽管与几种替代 BAF 相比,基于爱达荷州配对鱼类和水数据的线性回归 BAF 能够更好地预测观察到的 iAs 鱼类组织浓度,但它在统计学上并不显著(p<0.05),并且是鱼类组织中 iAs 浓度的预测效果较差(R²=0.01)。这些结果表明,自然环境中的 iAs 以及可能的其他金属,不符合常用的生物蓄积模型和美国环境保护署用于确定 HHWQC 的范例。这些结果表明,需要对范例进行修改,例如像爱达荷州所提议的那样,制定鱼类组织标准,以确保保护公众健康。Environ Toxicol Chem 2023;42:1542-1552. © 2023 SETAC.

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