• 제목/요약/키워드: Ultraviolet inactivation

검색결과 34건 처리시간 0.018초

자외선에 의한 가축분뇨 액비 시용 논 표면수 중 대장균 사멸율 변화 (Inactivation of Escherichia coli in Surface Water of Saturated Soil with the Pig Manure-based Liquid Fertilizers by Ultraviolet Radiation)

  • 김민경;정구복;홍성창;강성수;권순익
    • 한국토양비료학회지
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    • 제44권3호
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    • pp.368-370
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    • 2011
  • 가축분뇨 액비인 SCB 액비를 논토양 조건의 포트에 시용하였을 때 자외선에 의해 분변성 대장균의 사멸효과가 높은 것으로 나타났다. 따라서 본 연구결과로 볼 때 가축 분뇨의 퇴 액비화시 유해 미생물 제거에 광의 이용 가능성을 확인할 수 있었다. 그러나, 여러 종류의 가축분뇨 퇴 액비를 직접 농경지에 시용하였을 때 외부 환경의 건전성 유지와 환경 위해성을 관리하기 위해서는 향후 농경지 시용에 대한 현장 실험이 보완되어야 할 것이다.

초음파와 자외선 연계공정을 이용한 Mycobacterium 불활성화 (Inactivation of Mycobacterium using Ultrasonic and Ultraviolet Sequential Processes)

  • 김완기;정연정;윤여준;임관훈;김종배;강준원
    • 한국물환경학회지
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    • 제28권1호
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    • pp.57-62
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    • 2012
  • In this study, the inactivation efficiency of Mycobacterium marinum was evaluated in buffered water (pH 7) using a low pressure ultraviolet (LP-UV) lamp, ultrasonic (US), and UV/US sequential processes. In the UV alone process, 3 log inactivation of the M. marinum was achieved with a UV dose of $120mJ/cm^2$. However, a tailing phase was later observed because M. marinum has a high tendency for cell aggregation. Even though the M. marinum was not inactivated in the US alone process, the hydrophobicity decreased and turbidity increased due to the crumbling of the cell aggregation. Among the candidate processes which were UV alone, US-UV sequential process and UV-US-UV sequential process, the US-UV sequential process showed the highest synergistic effects for M. marinum inactivation. Consequently, US is a very useful process as a UV irradiation pre-treatment to inactivate M. marinum in water.

스테인리스스틸 컵 내 Escherichia coli의 자외선 살균 (Ultraviolet Inactivation of Escherichia coli in Stainless Steel Cups)

  • 목철균;이남훈
    • 산업식품공학
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    • 제13권2호
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    • pp.122-129
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    • 2009
  • 자외선 살균소독기의 유효성을 검정하기 위하여 스테인리스스틸 컵 바닥에서 E. coli를 대상으로 살균력을 측정하고 살균패턴을 조사하였다. 스테인리스스틸 컵 바닥의 자외선 강도는 컵의 위치에 따라 큰 차이를 보였다. 중앙부에 놓인 컵의 바닥에서는 높은 자외선 강도를 보인 반면 외곽으로 갈수록 자외선 강도는 급격하게 약화되었으며, 이러한 편차는 상단 선반에서 가장 심하였고 중단 및 하단선반으로 갈수록 완화되었다. E. coli를 대상으로 한 스테인리스스틸 컵 바닥에서 살균효과는 컵 바닥의 자외선 강도와 살균시간에 비례하였다. 자외선에 의한 E. coli 살균패턴은 tailing을 수반하는 의사 1차반응으로 나타났으며 각 구간의 살균속도상수를 산출한 결과 초기 살균속도상수 ($K_{1}$)는 위치에 따라 큰 차이를 보인 반면 후기 살균속도상수($K_{2}$)는 위치에 따른 차이가 크지 않았다. 현장에서 자외선 살균소독기를 용이하게 사용할 수 있도록 일정 살균치를 얻는데 필요한 자외선 조사시간을 산출하는 방정식을 제시하였다.

Inactivation of various bacteriophages by different ultraviolet technologies: Development of a reliable virus indicator system for water reuse

  • Bae, Kyung Seon;Shin, Gwy-Am
    • Environmental Engineering Research
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    • 제21권4호
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    • pp.350-354
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    • 2016
  • There is an urgent need to identify more reliable indicator systems for human pathogenic viruses in water reuse practice. In this study, we determined the response of different bacteriophages representing various bacteriophage groups to different ultraviolet (UV) technologies in real wastewater in order to identify more reliable bacteriophage indicator systems for UV disinfection in wastewater. Bacteriophage ${\varphi}X174$ PRD1, and MS2 in two different real wastewaters were irradiated with several doses of both low pressure (LP) and medium pressure (MP) UV irradiation through bench-scale UV collimated apparatus. The inactivation rate of ${\varphi}X174$ by both LP and MP UV was rapid and reached ${\sim}4{\log}_{10}$ within a UV dose of $20mJ/cm^2$. However, the inactivation rates of bacteriophage PRD1 and MS2 were much slower than the one for ${\varphi}X174$ and only ${\sim}1{\log}_{10}$ inactivation was achieved by the same UV dose of $20mJ/cm^2$. Overall, the results of this study suggest that bacteriophage MS2 could be a reliable indicator for human pathogenic viruses for both LP and MP UV disinfection in wastewater treatment processes and water reuse practice.

파장별 지표 자외선 복사량을 이용한 SARS-CoV-2 바이러스 비활성화 시간 추정 연구 (Estimation of the SARS-CoV-2 Virus Inactivation Time Using Spectral Ultraviolet Radiation)

  • 박선주;이윤곤;박상서
    • 대기
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    • 제32권1호
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    • pp.51-60
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    • 2022
  • Corona Virus Disease 19 pandemic (COVID-19) causes many deaths worldwide, and has enormous impacts on society and economy. The COVID-19 was caused by a new type of coronavirus (Severe Acute Respiratory Syndrome Cornonavirus 2; SARS-CoV-2), which has been found that these viruses can be effectively inactivated by ultraviolet (UV) radiation of 290~315 nm. In this study, 90% inactivation time of the SARS-CoV-2 virus was analyzed using ground observation data from Brewer spectrophotometer at Yonsei University, Seoul and simulation data from UVSPEC for the period of 2015~2017 and 2020. Based on 12:00-13:00 noon time, the shortest virus inactivation time were estimated as 13.5 minutes in June and 4.8 minutes in July/August, respectively, under all sky and clear sky conditions. In the diurnal and seasonal variations, SARS-CoV-2 could be inactivated by 90% when exposed to UV radiation within 60 minutes from 10:00 to 14:00, for the period of spring to autumn. However, in winter season, the natural prevention effect was meaningless because the intensity of UV radiation weakened, and the time required for virus inactivation increased. The spread of infectious diseases such as COVID-19 is related to various and complex interactions of several variables, but the natural inactivation of viruses by UV radiation presented in this study, especially seasonal differences, need to be considered as major variables.

해수의 염 농도와 탁도가 전기, UV 및 전기+UV 공정의 Artemia sp. 불활성화에 미치는 영향 (Effect of Salt Concentration and Turbidity on the Inactivation of Artemia sp. in Electrolysis UV, Electrolysis+UV Processes)

  • 김동석;박영식
    • 한국환경과학회지
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    • 제28권3호
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    • pp.291-301
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    • 2019
  • This study was conducted to investigate the effect of salt concentration and turbidity on the inactivation of Artemia sp. by electrolysis, UV photolysis, electrolysis+UV process to treat ballast water in the presence of brackish water or muddy water caused by rainfall. The inactivation at different salt concentrations (30 g/L and 3 g/L) and turbidity levels (0, 156, 779 NTU) was compared. A decrease in salt concentration reduced RNO (OH radical generation index) degradation and TRO (Total Residual Oxidant) production, indicating that a longer electrolysis time is required to achieve a 100% inactivation rate in electrolysis process. In the UV process, the higher turbidity results in lower UV transmittance and lower inactivation efficiency of Artemia sp. Higher the turbidity resulted in lower ultraviolet transmittance in the UV process and lower inactivation efficiency of Artemia sp. A UV exposure time of over 30 seconds was required for 100% inactivation. Factors affecting inactivation efficiency of Artemia sp. in low salt concentration are in the order: electrolysis+UV > electrolysis > UV process. In the case of electrolysis+UV process, TRO is lower than the electrolysis process, but RNO is more decomposed, indicating that the OH radical has a greater effect on the inactivation effect. In low salt concentrations and high turbidity conditions, factors affecting Artemia sp. inactivation were in the order electrolysis > electrolysis+UV > UV process. When the salt concentration is low and the turbidity is high, the electrolysis process is affected by the salt concentration and the UV process is affected by turbidity. Therefore, the synergy due to the combination of the electrolysis process and the UV process was small, and the inactivation was lower than that of the single electrolysis process only affected by the salt concentration.

용수 재이용을 위한 소규모 하수처리시설의 UV disinfection system (Feasibility Study of UV Disinfection system of Small Wastewater System for Water Reclamation)

  • 정광욱;윤춘경;함종화
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2002년도 학술발표회 발표논문집
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    • pp.421-424
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    • 2002
  • Deterministic and probabilistic approaches to the design of ultraviolet (UV) disinfection system for water reclamation are reviewed and discussed. The high inactivation of TC, FC and E. coli by UV disinfection was demonstrated and the inactivations of TC, FC and E. coli were 97%, 98% and 99%, respectively. Within the range of 0.3-4.5mWs/cm, the effect of UV does on the inactivation ratio was not observed. However, in the highest wattage of UV lamp, 39W, the inactivation ratio of TC, FC and E. coli was 100%, regardless of the UV does so the UV density was more effective on inactivation ratio of TC, FC and E. coli rather than UV does. Under the 0.4 mWs/cm and 16W of UV lamp, the effect of dissolved organic matter and turbidity on the inactivations of TC, FC and E. coli could not be observed in this study within the range of 0-60mg/L and 0-40 NTU respectively.

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입자성 물질 농도가 바이러스의 UV-처리와 위해성에 미치는 영향 평가 (Effect of Particulate Matter on the UV-Disinfection of Virus and Risk Assessment)

  • 신유리;윤춘경;이한필;이승재
    • 한국물환경학회지
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    • 제26권6호
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    • pp.1028-1033
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    • 2010
  • Wastewater reuse for agricultural irrigation needs treatment and control of pathogens to minimize risks to human health and the environment. In order to evaluate the water quality of UV-treated reclaimed water, this study focused on the relationship between micro-pathogens and particulate matters. MS2 was selected as an index organism because it has similar characteristics to human enteric virus and strong resistance to UV disinfection. The turbidity and suspended solid (SS) were selected for test parameters. In this study, it was performed with different UV doses (30 and $60mJ/cm^2$) for estimation of the MS2 inactivation rate using collimated beam batch experiments in the laboratory. The experiment results by turbidity or SS concentration presented that the increased concentration of them lowered MS2 inactivation. At the turbidity (below 4.27 NTU) and SS (below 1.47 mg/L) of the low level range, the inactivation of 60 UV dose is higher than 30 UV dose. However, at the turbidity and SS of the high level, the increasing UV dose did not show apparent increasing the MS2 inactivation. In quantitative microbial risk assessment (QMRA), it can confirm the trend that $P_D$ and turbidity concentrations have positive correlationship at the low concentration, which was also observed in SS. The QMRA can be helpful in communication with public for safe wastewater reuse and be recommended.

박테리오파지 f2에 대한 자외광선의 살균효과 (The Inactivation Effects of UV Light on Bacteriophage f2)

  • Kim, Chi-Kyung;Quae Chae
    • 한국미생물·생명공학회지
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    • 제11권3호
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    • pp.155-161
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    • 1983
  • Bacteriophage f2에 대한 자외광선의 살균효과와 외투막 단백질의 구조에 미치는 영향을 Ray-onet photoreactor PPR-208을 사용하여 300nm의 광선으로 연구하였다. 처음 20분간의 조사에서는 약 4 log의 phage가 감소되고 그후 완만한 살균효과를 보이다가 90분 이상의 조사에서는 생존 바이러스가 발견되지 않았다. Tryptophan residue의 fluorescenve quenching, 자외선으로 조신한 phage에 부착시킨 ANS (8-anilino-1-napht-halene sulfonate)의 fluorescence emission의 감소, tryptophan에서 ANS로의 energy transfer 의 감소 등 spectroscopic technique에 의한 결과와 자외선 조사에 의하여 단백질 외투만이 파손되는 전자현미경 관찰의 결과에 의하여 자외광선은 phage f2의 외투막 단백질의 구조에 변화를 일으킨다는 것이 밝혀졌다.

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장파장의 자외선 LED 광원을 이용한 안질환 세균의 살균효과 (A Study of Sterilization Effect of Long-wavelength UVA-LED Irradiation on Bacteria Causing Eye Diseases)

  • 이철우;정경인;황광하;이석주;유근창
    • 한국안광학회지
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    • 제17권1호
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    • pp.99-105
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    • 2012
  • 목적: 본 연구는 UVA영역의 LED를 이용하여 안질환을 일으키는 대표적인 유발균인 녹농균과 포도상구균에 대한 살균효과를 알아보고, UVA영역의 LED를 콘택트렌즈 살균에 활용하고자 하였다. 방법: 안질환의 원인 세균인 녹농균과 포도상구균에 대한 살균효과 실험은 400 nm의 UVA-LED를 이용하여 소형 살균기기를 제작하여 녹농균은 $10^{-7}$ CFU/ml, 포도상구균은 $10^{-5}$ CFU/ml 로 각각 액체배지에 희석하여 넣은 후 시간대별로 15분, 30분, 60분, 120분, 240분, 360분, 480분 동안 각각 400 nm의 UVA를 조사하였다. 결과: 살균실험 결과를 직선회귀방정식(regresson line equation)으로 변환하여 목표 살균치(target log inactivation)를 도출한 결과 녹농균에 대한 3log inactivation의 UV조사량($mJ/cm^2$)이 54,847 UV dose($mJ/cm^2$)이었으며, 조사시간(irridiation time)은 135.42(min) 이었다. 또한 포도상구균의 3log inactivation은 39,066 UV dose($mJ/cm^2$)이었으며 조사시간은 98.72분이었다. 결론: 이러한 실험 결과 400 nm의 UVA-LED를 이용한 녹농균과 포도상구균에 대한 뛰어난 살균효과를 확인하였으며 콘택트렌즈의 살균에 유용하게 이용될 것으로 사료된다.