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1.
Environ Sci Pollut Res Int ; 21(1): 77-85, 2014 Jan.
Article in English | MEDLINE | ID: mdl-23546853

ABSTRACT

Current water quality standards for the protection of human health in Korea include 17 substances found in rivers and streams. Due to increasing concern over the release of hazardous chemicals into the aquatic environment, there has been a demand for additional water quality standards. Therefore, the Korean Ministry of the Environment plans to gradually increase the number of water quality standards to 30 substances, including 22 substances for protection of human health and 8 substances for protection of aquatic ecosystems by 2015. In this study, new water quality standards for protection of human health were established for 1,4-dioxane, formaldehyde, and hexachlorobenzene. We selected candidate hazardous chemicals, conducted a human health risk assessment to determine priority chemicals, established water quality standards based on technical analyses and comparison with domestic and developed countries' water quality standards, and conducted an expert review. Water quality standards for protection of aquatic ecosystems will be derived in the near future. This study describes how the water quality standards for protection of human health were developed and implemented. Current status, recent expansion, and future plans for water quality standards in Korea are also covered.


Subject(s)
Water Pollutants, Chemical/analysis , Water Quality/standards , Ecosystem , Environmental Monitoring/methods , Environmental Monitoring/standards , Environmental Policy , Fresh Water/chemistry , Humans , Republic of Korea , Risk Assessment , Water Pollutants, Chemical/toxicity
2.
Sci Total Environ ; 470-471: 1362-9, 2014 Feb 01.
Article in English | MEDLINE | ID: mdl-24029814

ABSTRACT

Because of their persistence, bioaccumulation tendency, and toxicity, organochlorine pesticides (OCPs) were banned several decades ago. However, they are still detected in natural water and pose a serious risk to human health and the environment. In the present study, seven OCPs were measured in river water collected from 28 sampling sites between 2010 and 2011 in the Yeongsan (YS) and Seomjin (SJ) Rivers, Korea. Gas chromatography/high-resolution mass spectrometry (HRMS) was used for the chemical analysis. The potential health risks of consuming OCPs in fish were assessed in the monitoring region (YS and SJ River basins) by measuring the residual level of OCPs. The human health risks were characterized by considering both the exposure level and the corresponding cancer slope factors; we incorporated both deterministic and probabilistic approaches. The risks were calculated using the probabilistic Maximum Likelihood Estimation (MLE) method. Risk uncertainty and sensitivity were calculated by performing a Monte Carlo analysis. Of the six OCPs, dieldrin, heptachlor epoxide, and hexachlorobenzene exceeded the acceptable risk level in the heavy and light fish consumer groups. The cancer risks associated with these OCPs were 2.99×10(-6), 5.81×10(-6) and 3.72×10(-6), respectively, using the deterministic approach and 1.64×10(-5), 3.36×10(-2) and 5.52×10(-5), respectively, at the 95th percentile using the probabilistic approach. Because there is a high cancer risk associated with these three OCPs, individuals who consume large amounts of freshwater fish may be subject to a high risk of cancer. However, the calculations may have over- or underestimated the risk because of the uncertainty of the environmental concentration and fish intake rate or the use of left-censored monitoring data.


Subject(s)
Diet/statistics & numerical data , Environmental Exposure/statistics & numerical data , Rivers/chemistry , Water Pollutants, Chemical/analysis , Water Pollution, Chemical/statistics & numerical data , Animals , Environmental Exposure/analysis , Fishes/metabolism , Hexachlorobenzene/analysis , Hexachlorobenzene/metabolism , Humans , Hydrocarbons, Chlorinated/analysis , Hydrocarbons, Chlorinated/metabolism , Likelihood Functions , Pesticides/analysis , Pesticides/metabolism , Republic of Korea , Risk Assessment , Water Pollutants, Chemical/metabolism
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