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      Twenty-year sediment contamination trends in some tributaries of Lake Maggiore (Northern Italy): relation with anthropogenic factors

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          Controlling the False Discovery Rate: A Practical and Powerful Approach to Multiple Testing

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            PAHs in the Fraser River basin: a critical appraisal of PAH ratios as indicators of PAH source and composition

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              Development and evaluation of consensus-based sediment quality guidelines for freshwater ecosystems.

              Numerical sediment quality guidelines (SQGs) for freshwater ecosystems have previously been developed using a variety of approaches. Each approach has certain advantages and limitations which influence their application in the sediment quality assessment process. In an effort to focus on the agreement among these various published SQGs, consensus-based SQGs were developed for 28 chemicals of concern in freshwater sediments (i.e., metals, polycyclic aromatic hydrocarbons, polychlorinated biphenyls, and pesticides). For each contaminant of concern, two SQGs were developed from the published SQGs, including a threshold effect concentration (TEC) and a probable effect concentration (PEC). The resultant SQGs for each chemical were evaluated for reliability using matching sediment chemistry and toxicity data from field studies conducted throughout the United States. The results of this evaluation indicated that most of the TECs (i.e., 21 of 28) provide an accurate basis for predicting the absence of sediment toxicity. Similarly, most of the PECs (i.e., 16 of 28) provide an accurate basis for predicting sediment toxicity. Mean PEC quotients were calculated to evaluate the combined effects of multiple contaminants in sediment. Results of the evaluation indicate that the incidence of toxicity is highly correlated to the mean PEC quotient (R(2) = 0.98 for 347 samples). It was concluded that the consensus-based SQGs provide a reliable basis for assessing sediment quality conditions in freshwater ecosystems.
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                Author and article information

                Contributors
                (View ORCID Profile)
                Journal
                Environmental Science and Pollution Research
                Environ Sci Pollut Res
                Springer Science and Business Media LLC
                0944-1344
                1614-7499
                July 2021
                March 16 2021
                July 2021
                : 28
                : 28
                : 38193-38208
                Article
                10.1007/s11356-021-13388-6
                33728603
                cc00ccd5-c7f5-4f87-ad07-d8697ccac3fe
                © 2021

                https://www.springer.com/tdm

                https://www.springer.com/tdm

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