유해성 단일물질들로 구성된 혼합물의 수서생태계 독성값 추정

The aquatic environment contains numerous mixtures of various combinations of hazardous single substances, and it is difficult to calculate the toxicity values of all mixtures by test methods. Therefore, the estimation method based on the UN-GHS model has been widely used. However, there are cases w...

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Published in환경분석과 독성보건 Vol. 26; no. 4; pp. 147 - 155
Main Authors 김지현, Jihyun Kim, 안창효, Yongwoon Lee, 이용운, Seongjun Kim, 김성준, Kwonsub Lee, 이권섭, Jaechoon Lee, 이재춘, Seunghee Jin, 진승희, Changhyo Ahn
Format Journal Article
LanguageKorean
Published 한국환경분석학회 31.12.2023
Subjects
Online AccessGet full text
ISSN2672-0175
2672-1139

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Abstract The aquatic environment contains numerous mixtures of various combinations of hazardous single substances, and it is difficult to calculate the toxicity values of all mixtures by test methods. Therefore, the estimation method based on the UN-GHS model has been widely used. However, there are cases where the difference between the model estimate and the actual (test) value is large, indicating the need for research to reduce the uncertainty of the model. This study aims to develop a modified model that can solve the problems of the UN-GHS model, and to evaluate the applicability of the modified model through toxicity testing of mixtures. An acute Daphnia magna toxicity test was conducted according to the drug mixture exposure, and the difference between the toxicity test result and the model estimate was analyzed assuming that it was derived from the model uncertainty. The large difference between the UN-GHS model estimate and the test result was due to the toxicity weighting factor, determined by dividing the L(E)C50 of each single substance into interval values. Therefore, in this study, the existing model was improved by developing a modified model that assigns a toxicity weighting factor to the point value, rather than the interval value of L(E)C50 for each single substance. The estimate of the modified model showed an average difference of 16.7% from the toxicity test value, which was 3.9 times more accurate than the existing model (average 64.4%). Thus, the modified model can be a useful method for estimating the toxicity values of mixtures composed of single substances. KCI Citation Count: 0
AbstractList The aquatic environment contains numerous mixtures of various combinations of hazardous single substances, and it is difficult to calculate the toxicity values of all mixtures by test methods. Therefore, the estimation method based on the UN-GHS model has been widely used. However, there are cases where the difference between the model estimate and the actual (test) value is large, indicating the need for research to reduce the uncertainty of the model. This study aims to develop a modified model that can solve the problems of the UN-GHS model, and to evaluate the applicability of the modified model through toxicity testing of mixtures. An acute Daphnia magna toxicity test was conducted according to the drug mixture exposure, and the difference between the toxicity test result and the model estimate was analyzed assuming that it was derived from the model uncertainty. The large difference between the UN-GHS model estimate and the test result was due to the toxicity weighting factor, determined by dividing the L(E)C50 of each single substance into interval values. Therefore, in this study, the existing model was improved by developing a modified model that assigns a toxicity weighting factor to the point value, rather than the interval value of L(E)C50 for each single substance. The estimate of the modified model showed an average difference of 16.7% from the toxicity test value, which was 3.9 times more accurate than the existing model (average 64.4%). Thus, the modified model can be a useful method for estimating the toxicity values of mixtures composed of single substances. KCI Citation Count: 0
Author Jaechoon Lee
김지현
Jihyun Kim
이재춘
김성준
안창효
이권섭
Yongwoon Lee
Kwonsub Lee
Seongjun Kim
Changhyo Ahn
이용운
진승희
Seunghee Jin
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Estimating the Toxicity Value of Mixtures Composed of Single Hazardous Substances to Aquatic Ecosystems
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SubjectTerms Toxicity value of mixtures
Toxicity weighting factor
UN-GHS model
Water environment
화학
Title 유해성 단일물질들로 구성된 혼합물의 수서생태계 독성값 추정
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