Arid
DOI10.1002/etc.2631
DEVELOPMENT OF A REGRESSION MODEL TO PREDICT COPPER TOXICITY TO DAPHNIA MAGNA AND SITE-SPECIFIC COPPER CRITERIA ACROSS MULTIPLE SURFACE-WATER DRAINAGES IN AN ARID LANDSCAPE
Fulton, Barry A.; Meyer, Joseph S.
通讯作者Fulton, Barry A.
来源期刊ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY
ISSN0730-7268
EISSN1552-8618
出版年2014
卷号33期号:8页码:1865-1873
英文摘要

The water effect ratio (WER) procedure developed by the US Environmental Protection Agency is commonly used to derive site-specific criteria for point-source metal discharges into perennial waters. However, experience is limited with this method in the ephemeral and intermittent systems typical of arid climates. The present study presents a regression model to develop WER-based site-specific criteria for a network of ephemeral and intermittent streams influenced by nonpoint sources of Cu in the southwestern United States. Acute (48-h) Cu toxicity tests were performed concurrently with Daphnia magna in site water samples and hardness-matched laboratory waters. Median effect concentrations (EC50s) for Cu in site water samples (n = 17) varied by more than 12-fold, and the range of calculated WER values was similar. Statistically significant (alpha = 0.05) univariate predictors of site-specific Cu toxicity included (in sequence of decreasing significance) dissolved organic carbon (DOC), hardness/alkalinity ratio, alkalinity, K, and total dissolved solids. A multiple-regression model developed from a combination of DOC and alkalinity explained 85% of the toxicity variability in site water samples, providing a strong predictive tool that can be used in the WER framework when site-specific criteria values are derived. The biotic ligand model (BLM) underpredicted toxicity in site waters by more than 2-fold. Adjustments to the default BLM parameters improved the model’s performance but did not provide a better predictive tool compared with the regression model developed from DOC and alkalinity. (c) 2014 SETAC


英文关键词Biotic ligand model Multiple regression Southwestern United States Water chemistry Water effect ratio
类型Article
语种英语
国家USA
收录类别SCI-E
WOS记录号WOS:000340536900026
WOS关键词DISSOLVED ORGANIC-CARBON ; BIOTIC LIGAND MODEL ; MINNOWS PIMEPHALES-PROMELAS ; CERIODAPHNIA-DUBIA ; FATHEAD MINNOWS ; QUALITY CRITERIA ; CHEMISTRY ; HARDNESS ; PH
WOS类目Environmental Sciences ; Toxicology
WOS研究方向Environmental Sciences & Ecology ; Toxicology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/181981
作者单位ARCADIS US, Lakewood, CO 80401 USA
推荐引用方式
GB/T 7714
Fulton, Barry A.,Meyer, Joseph S.. DEVELOPMENT OF A REGRESSION MODEL TO PREDICT COPPER TOXICITY TO DAPHNIA MAGNA AND SITE-SPECIFIC COPPER CRITERIA ACROSS MULTIPLE SURFACE-WATER DRAINAGES IN AN ARID LANDSCAPE[J],2014,33(8):1865-1873.
APA Fulton, Barry A.,&Meyer, Joseph S..(2014).DEVELOPMENT OF A REGRESSION MODEL TO PREDICT COPPER TOXICITY TO DAPHNIA MAGNA AND SITE-SPECIFIC COPPER CRITERIA ACROSS MULTIPLE SURFACE-WATER DRAINAGES IN AN ARID LANDSCAPE.ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY,33(8),1865-1873.
MLA Fulton, Barry A.,et al."DEVELOPMENT OF A REGRESSION MODEL TO PREDICT COPPER TOXICITY TO DAPHNIA MAGNA AND SITE-SPECIFIC COPPER CRITERIA ACROSS MULTIPLE SURFACE-WATER DRAINAGES IN AN ARID LANDSCAPE".ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY 33.8(2014):1865-1873.
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