• 제목/요약/키워드: Korea Environment Institute

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Confirmation of Failure Causes of PWR Defective Fuels

  • Kim, Eun-Ka;Chun, Yong-Bum;You, Gil-Sung;Min, Duck-Kee;Kim, Yong-Soo;Kim, Kyoung-Doek;Shin, Sang-Woon;Lee, Myung-Chan
    • 한국원자력학회:학술대회논문집
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    • 한국원자력학회 1999년도 춘계학술발표회요약집
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    • pp.220-220
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    • 1999
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Acute and Subchronic Inhalation Toxicity of n-Octane in Rats

  • Sung, Jae-Hyuck;Choi, Byung-Gil;Kim, Hyeon-Yeong;Baek, Min-Won;Ryu, Hyun-Youl;Kim, Yong-Soon;Choi, Young-Kuk;Yu, Il-Je;Song, Kyung-Seuk
    • Safety and Health at Work
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    • 제1권2호
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    • pp.192-200
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    • 2010
  • Objectives: We have investigated the toxic effects of the inhalation of subchronic and acute levels of n-octane. Methods: The rats were exposed to n-octane of 0, 2.34, 11.68 and 23.36 mg/L (n = 5 rats/group/gender) in an acute inhalation test (Organization for Economic Co-operation and Development (OECD) TG 403), or to 0, 0.93, 2.62 and 7.48 mg/L (n = 10 rats/group/gender) for a subchronic inhalation test (OECE TG 413), to establish a national chemical management system consistent with the Globally Harmonized Classification System (GHS). Results: Acutely-exposed rats became lethargic but recovered following discontinuation of inhalation. Other clinical symptoms such as change of body weight and autopsy finds were absent. The LC50 for the acute inhalation toxicity of n-octane was determined to exceed 23.36 mg/L and the GHS category was 'not grouping'. Subchronically-treated rats displayed no significant clinical and histopathological differences from untreated controls; also, target organs were affected hematologically, biochemically and pathologically. Therefore, the no observable adverse effect level was indicated as exceeding 7.48 mg/L and the GHS category was 'not grouping' for the specific target organ toxicity upon repeated exposure. Conclusion: However, n-octane exposure should be controlled to be below the American Conference of Industrial Hygienists recommendation (300 ppm) to prevent inhalation-related adverse health effects of workers.

사고 누출 화학물질 중 강산의 생산, 사용 현황 및 사고 사례 분석 (The Current Status of Strong Acids Production, Consumption, and Spill Cases in Korea)

  • 신도연;문희선;윤윤열;윤욱;이윤호;하규철;현성필
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제19권6호
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    • pp.6-12
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    • 2014
  • We reviewed literature focusing on the amounts of domestic production, distribution, and consumption of strong acids and their spill cases. In particular, we investigated the chemistry and toxicity of four strong acids classified as "accident preparedness substances," including hydrochloric, nitric, sulfuric, and hydrofluoric acid. We recommend sulfuric and hydrofluoric acid as the chemicals of priority control based on the amounts used and toxicity. An advanced prevention/response system needs to be established along with an improved human and social infrastructure to prevent and efficiently respond to chemical accidents. Understanding the behavior and transport of spilled strong acids in the soil and groundwater environments requires a multi-disciplinary approach since they go through a variety of chemical and biogeochemical reactions with complex geomedia. However, no such research has been done in this area in Korea to the best of our knowledge. We expect the results of this study to contribute as basic data to future research.

화력발전소 굴뚝 미세먼지 측정을 위해 개발한 이젝터-다공튜브 희석장치의 희석비 검증 (Verification of dilution ratio of the newly developed ejector-porous tube diluter for measurement of fine dust in coal-fired power plant stack)

  • 신동호;김영훈;서현수;홍기정;김학준;김용진;한방우;이가영;천성남;황정호
    • 한국입자에어로졸학회지
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    • 제15권3호
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    • pp.105-113
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    • 2019
  • The exhaust emissions from coal-fired power plants have received much attention because coal-fired power plants are the one of the largest sources of particulate matter (PM) emissions in South Korea. To measure the PM10 and PM2.5, we developed the novel diluter which is comprised of ejector and porous tube in series. The dilution ratio must be defined to calculate particle concentrations of the sampled air as well as to probe match for the isokinetic sampling. For this reason, we verified the dilution ratio of the developed diluter by the flow rate, numerical solution, gas concentration and particle concentration. The ejector-supplied flow rates were 10-50 L/min and the porous tube-supplied flow rates were 30, 50 L/min in this study. All methods above showed similar dilution ratios to each other within 10 % error rate. The dilution ratio was confirmed by comparing mass concentrations before and after the dilution process.