• 제목/요약/키워드: ozone treatments

검색결과 58건 처리시간 0.023초

주요 가로수 묘목의 오존노출에 따른 대기오염내성지수 비교 (Air Pollution Tolerance Index (APTI) of Main Street Trees Following Ozone Exposure)

  • 조수빈;이형섭;이종규;박상희;김한동;곽명자;이금아;임예지;우수영
    • 한국산림과학회지
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    • 제109권1호
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    • pp.50-61
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    • 2020
  • 가로수는 도시 생활에서 중요한 녹지의 한 부분이고 대기오염을 극복하기 위해서 건전한 생장을 하는 수종을 선정, 식재, 관리 하는 것이 필요하다. 오존은 수목에 활성산소를 만들어 생리적으로 부정적인 영향을 미치며 생태적인 피해를 유발한다. 본 연구는 국내 주요 가로수종인 왕벚나무(Prunus yedoensis), 느티나무(Zelkova serrata), 이팝나무(Chionanthus retusus), 그리고 소나무(Pinus densiflora.)의 묘목을 오존에 노출하여 실험하였다. 2년생 묘목을 Phytotron에서 100 nL·L-1(ppb)의 농도로 약 4주간 실험하였다. 묘목이 생장하는 동안 오존에 대한 생화학적 반응 및 대기오염내성지수(APTI)를 비교하여 오존에 대한 반응을 평가하였다. 아스코르브산 함량, 총 엽록소 함량, pH, 상대수분함량의 수치를 바탕으로 대기오염내성지수를 계산했을 때 왕벚나무와 느티나무는 오존 처리구와 대조구간에 APTI의 변화가 통계적인 유의차를 보이지 않았고, 이팝나무는 오존처리구에서 증가했으며 소나무는 다른 수종에 비해서 감소했다. 본 실험을 통해, APTI를 산출하는 요소에 대한 수종별 반응이 다른 것을 확인하였으며, 이를 통해 수종과 도시 내 대기 환경에 상호작용을 이해하고 대기오염물질인 오존에 따른 도시 내 수종 선별에 대해서 예측할 수 있다.

버섯의 미생물 위해성 및 저감화 처리기술 개발 현황 (Microbial Hazards and Microbe Reduction Technologies for Mushrooms)

  • 송현지;한아름;맹경호;장아라;김지연;이선영
    • 한국식품위생안전성학회지
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    • 제38권5호
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    • pp.287-296
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    • 2023
  • 세계적으로 버섯에 대한 소비는 매년 증가하고 있으며 한국에서는 느타리버섯, 양송이버섯, 팽이버섯이 주로 유통되고 있다. 하지만, 버섯의 재배와 가공 과정에서 미생물 오염을 예방하기 위한 대안의 부재로 인하여 Listeria monocytogenes와 같은 병원성 미생물의 오염이 검출되고 있으며 버섯에 의한 식중독 및 리콜 사례가 다수 보고되고 있다. 버섯에서 오염된 미생물을 저감화하는 방법으로는 화학적 및 물리적 처리, 또는 이들을 결합하여 사용하는 병용처리 방법이 이용되고 있다. 화학적 처리로는 염소 혼합물, 과산화아세트산, 4차 암모늄이온 화합물이 주로 사용되고 있으며 오존과 전해수를 이용한 방법도 최근에 개발되었다. 물리적 처리로는 초음파, 방사선조사, 콜드 플라즈마 기술이 이용되고 있으며, 병용처리 방법으로는 자외선/염소 혼합물, 오존/유기산, 초음파/유기산 등이 연구되었다. 본 리뷰에서는 국내에서 소비되는 버섯의 종류와 그에 대한 미생물 오염도를 조사하고, 버섯에 오염된 미생물을 제어할 수 있는 기술에 대하여 조사하여, 정리하였다.

Effect of Dissolved and Colloidal Contaminants of Newsprint Machine White Water on Water Surface Tension and Paper Physical Properties

  • Consultant, Seika-Tay
    • 한국펄프종이공학회:학술대회논문집
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    • 한국펄프종이공학회 1999년도 Proceedings of Pre-symposium of the 10th ISWPC
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    • pp.61-69
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    • 1999
  • Contaminants such as fatty acids, triglycerides, resin acids and foam collected from a high yield sulfite weak liquor storage tank lowered the water surface tension and reduced inter-fibre bonding but also tended to benefit sheet opacity. Some common wet end additives such as defoamers and dispersants gave similar results. Lignosulfonate and naphthalene sulfonate showed little if any negative effect on both surface tension and sheet strength properties. Among the natural wood extractives. fatty acids were identified to be most detrimental followed by triglycerides and then resin acids. In order to alleviate the detrimental impact of these contaminants, membrane separation, air floatation and ozone treatment were carried out on paper machine white water samples. The effect of these treatments on removal of fatty and resin acids was quantified by a GC-Mass analysis. Reverse osmosis with a 1000 molecular weight cut off membrane failed to totally reject fatty and resin acids, but markedly reduced losses of sheet properties due to contaminants. Ozone treatment resulted in a significant increase of the surface tension and air floatation was considered to be a practical and useful method for removing fatty and resin acids from the machine white water.

Effects of Ozone and Soil Salinity, Singly and in Combination, on Growth, Yield and Leaf Gas Exchange Rates of Two Bangladeshi Wheat Cultivars

  • Kamal, Mohammed Zia Uddin;Yamaguchi, Masahiro;Azuchi, Fumika;Kinose, Yoshiyuki;Wada, Yoshiharu;Funada, Ryo;Izuta, Takeshi
    • Asian Journal of Atmospheric Environment
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    • 제9권2호
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    • pp.173-186
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    • 2015
  • In Bangladesh, increases in the tropospheric ozone ($O_3$) concentration and in soil salinization may lead to crop damage. To clarify the effects of $O_3$ and/or soil salinity on Bangladeshi wheat cultivars, BAW1059 (salt-tolerant) and Shatabdi (salt-sensitive) were exposed to 70-day treatments with $O_3$ (charcoal-filtered air (CF), $1.0{\times}O_3$, and $1.5{\times}O_3$) and different levels of soil salinity (0, 4, and $8dS\;m^{-1}$). In both cultivars, the whole-plant dry mass and grain yield were significantly reduced by exposure to $O_3$. Increased soil salinity caused significant reductions in whole-plant growth and yield in Shatabdi, but the reductions were negligible in BAW1059. No significant interactions between $O_3$ and salinity were detected for growth, yield, and leaf gas exchange parameters in both cultivars. We concluded that the effects of $O_3$ are not ameliorated by soil salinity in two Bangladeshi wheat cultivars, regardless of their salinity tolerance.

잣나무 유래 리그노셀룰로오스 나노섬유 및 나노종이 특성에 미치는 탈리그닌의 영향 (Delignification Effect on Properties of Lignocellulose Nanofibers from Korean White Pine and Their Nanopapers)

  • 장재혁;이승환;김남훈
    • Journal of the Korean Wood Science and Technology
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    • 제43권1호
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    • pp.9-16
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    • 2015
  • 본 연구에서는 고온증기 및 오존 전처리로 제조된 리그노셀룰로오스 나노섬유의 탈리그닌 처리가 나노섬유 및 나노종이의 특성에 미치는 영향을 평가하였다. 형태학적 특성 관찰 결과, 탈리그닌 처리에 의해 평균 직경 35 nm 이하의 균일한 섬유가 얻어졌다. 또한 탈리그닌 처리는 리그노셀룰로오스 나노섬유의 비표면적을 크게 향상시켰으며, 특히 오존 전처리의 경우는 탈리그닌 처리에 의해 무처리에 비하여 1.5배 증가하였다. 나노종이 제조 과정 중의 여수시간 또한 탈리그닌 처리에 의해 크게 증가하여, 고온증기 전처리의 경우는 탈리그닌 처리에 의해 무처리와 비교하여 5.4배 증가하였다. 탈리그닌 처리는 나노종이의 백색도를 향상시켰으며, 고온증기 전처리의 경우는 탈리그닌 전과 비교하여 색상차가 41.9로 매우 높게 나타났다. 나노종이의 인장강도, 탄성율 및 신장율도 탈리그닌에 의하여 크게 향상되었으며, 고온증기 전처리 후의 탈리그닌에 의한 나노종이의 인장강도가 142 MPa로 가장 높게 나타났다.

방직용 재생섬유 제조를 위한 면 린터의 금속이온 함량 저감에 관한 연구 (Abatement of Metal Ion Contents from Cotton Linter for the Manufacture of Regenerated Cellulose)

  • 박희정;손하늘;최진성;서영범
    • 펄프종이기술
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    • 제45권6호
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    • pp.17-23
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    • 2013
  • The reduction of metal ion from the cotton linter for the preparation of NMMO (N-methylmorpholine N-oxide)-based dissolving pulp was investigated. The NMMO-based dissolving pulp was usually used for the manufacture of high quality fabrics, and need to have high alpha cellulose content and high brightness. NMMO, which is environmentally friendly, and reusable after recovering process, is very sensitive to the metal ions such as Cu, Fe, Mg, and Cr. Electron beam, sulfuric acid, acetic acid, and ozone treatment before bleaching were used and the concentration changes of the metal ions were compared to that of EDTA, a chelating agent. It was found that both acid treatments (sulfuric and acetic acid) were very effective and comparable to EDTA treatment at the same dosage in metal ion reduction, but electron beam and ozone treatment were not. The sulfuric acid treatment turned out to be effective in metal ion reduction, and most inexpensive.

산 처리한 활성탄을 이용한 수중 유기물의 흡착 및 오존 분해 (Adsorption and catalytic ozonation of aquatic organic compound by acid-treated granular activated carbon)

  • 남윤선;이동석
    • 산업기술연구
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    • 제31권B호
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    • pp.127-132
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    • 2011
  • Humic substances is accounted for for the largest proportion in natural organic matter(NOM) and NOM is widely distributed in varying concentration in all aquatic and soil. They can affect water quality adversely in several ways by contributing undesirable color, complexing with metal and yielding metal concentrations exceeding normal solubility. Ozonation is one of the efficient treatments for degradation of humic substances which cause some problems in water treatment. Especially, the combination of ozone and granular activated carbon was applied to degradation humic acid in aquatic system. The aim of this work to test the available of acid-treated granular activated carbon as catalyst in the ozonation of humic acid.

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정수처리 공정에서 모델 물질들을 이용한 천연유기물질 처리능 및 소독부산물 생성능 평가 (Evaluation of Natural Organic Matter Treatability and Disinfection By-Products Formation Potential using Model Compounds)

  • 손희종;정종문;최진택;손형식;장성호
    • 한국환경과학회지
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    • 제22권9호
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    • pp.1153-1160
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    • 2013
  • While a range of natural organic matter (NOM) types can generate high levels of disinfection by-products (DBPs) after chlorination, there is little understanding of which specific compounds act as precursors. Use of eight model compounds allows linking of explicit properties to treatability and DBP formation potential (DBPFP). The removal of model compounds by various treatment processes and their haloacetic acid formation potential (HAAFP) before and after treatment were recorded. The model compounds comprised a range of hydrophobic (HPO) and hydrophilic (HPI) neutral and anionic compounds. On the treatment processes, an ozone oxidation process was moderate for control of model compounds, while the HPO-neutral compound was most treatable with activated carbon process. Biodegradation was successful in removing amino acids, while coagulation and ion exchange process had little effect on neutral molecules. Although compared with the HPO compounds the HPI compounds had low HAAFP the ozone oxidation and biodegradation were capable of increasing their HAAFP. In situations where neutral or HPI molecules have high DBPFP additional treatments may be required to remove recalcitrant NOM and control DBPs.

선박평형수 관리시스템을 위한 해수 살균법 (Sterilization of Seawater for the Ballast Water Management System)

  • YUN, YONGSUP;CHOI, JONGBEOM;KANG, JUN;LEE, MYEONGHOON
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 2016년도 추계학술대회 논문집
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    • pp.172-172
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    • 2016
  • The International Maritime Organization(IMO) adopted the International Convention for the Control and Management of Ships' Ballast Water and Sediments in 2004 to prevent the transfer of aquatic organisms via ballast water. Forty ballast water treatment systems were granted final approval. A variety of techniques have been developed for ballast water treatment including UV treatment, indirect or direct electrolysis, ozone treatment, chemical compounds and plasma-arc method. In particular, using plasma and ozone nano-bubble treatments have been attracted in the fields. However, these treatment systems have a problem such as remained toxic substance, demand for high power source, low efficiency, ets. In this paper, we present our strilization results obtained from membrane type electrolytic-reduction treatment system The core of an electrolysis unit is an electrochemical cell, which is filled with pure water and has two electrodes connected with an external power supply. At a certain voltage, which is called critical voltage, between both electrodes, the electrodes start to produce hydrogen gas at the negatively biased electrode and oxygen gas at the positively biased electrode. The amount of gases produced per unit time is directly related to the current that passes through the electrochemical cell. From the results, we could confirm the sterilization effect of bacteria such as S. aureus, E. Coli and demonstrate the mechanism of sterilization phenomena by electrolytic-reduction treatment system.

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The Role of the Surface Oxide Layer on Ru Nanoparticles in Catalytic Activity of CO Oxidation

  • Kim, Sun-Mi;Qadir, Kamran;Jin, Sook-Young;Jung, Kyeong-Min;Reddy, A. Satyanarayana;Joo, Sang-Hoon;Park, Jeong-Young
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2010년도 제39회 하계학술대회 초록집
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    • pp.304-304
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    • 2010
  • The study on the catalytic oxidation of carbon monoxide (CO) to carbon dioxide ($CO_2$) using the noble metals has long been the interest subject and the recent progress in nanoscience provides the opportunity to develop new model systems of catalysts in this field. Of the noble metal catalysts, we selected ruthenium (Ru) as metal catalyst due to its unusual catalytic behavior. The size of colloid Ru NPs was controlled by the concentration of Ru precursor and the final reduction temperatures. For catalytic activity of CO oxidation, it was found that the trend is dependent on the size of Ru NPs. In order to explain this trend, the surface oxide layer surrounding the metal core has been suggested as the catalytically active species through several studies. In this poster, we show the influence of surface oxide on Ru NPs on the catalytic activity of CO oxidation using chemical treatments including oxidation, reduction and UV-Ozone surface treatment. The changes occurring to UV-Ozone surface treatment will be characterized with XPS and SEM. The catalytic activity before and after the chemical modification were measured. We discuss the trend of catalytic activity in light of the formation of core-shell type oxide on nanoparticles surfaces.

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