• Title/Summary/Keyword: Volatile Organic compounds

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Analysis of Volatile Organosulfur Compounds in Korean Allium Species (국내산 Allium속(마늘, 양파, 대파)의 휘발성 함유황 유기화합물 분석)

  • Song, Hyun-Pa;Shim, Sung-Lye;Jung, In-Sun;Kim, Jun-Hyeong;No, Gi-Mi;Seo, Hye-Yeong;Kim, Dong-Ho;Kim, Kyong-Su
    • Food Science and Preservation
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    • v.16 no.6
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    • pp.929-937
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    • 2009
  • We identified volatile organic compounds in Korean Allium species. Volatile organic components in three Korean Allium species, dried garlic, dried onion, and dried Welsh onion, were extracted using a simultaneous distillation and extraction (SDE) method and identified by GC/MS analysis. The numbers of volatile compounds were 48, 32, and 33 in the three species, respectively. In dried onion, the major compounds were dipropyl trisulfide, methyl propyl trisulfide, and propanethiol. (Z), (E)-propenyl propyl trisulfide, methyl propyl trisulfide, and dipropyl trisulfide were detected at high levels in Welsh onion. In dried garlic, presence of the allyl group identified characteristic volatile organosulfur compounds including diallyl disulfide and diallyl trisulfide. Qualitative and quantitative analysis of volatile compounds in three Korean Allium species showed that sulfur-containing compounds were dominant, and allyl groups derived from (+)-S-(2-propenyl)-L-cysteine sulfoxide (ALLYL CSO, alliin) were more abundant in dried garlic, than in other materials.

VOC Emissions from Automotive Painting and Their Control: A Review

  • Kim, Byung-R.
    • Environmental Engineering Research
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    • v.16 no.1
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    • pp.1-9
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    • 2011
  • During automotive painting, volatile organic compounds (VOCs) associated with the paint solvents are emitted to the atmosphere. Most VOC emissions come from spraying operations via the use of solvent-based paints, as the spraybooth air picks up gaseous solvent compounds and overspray paint materials. The VOCs consist of aromatic and aliphatic hydrocarbons, ketones, esters, alcohols, and glycolethers. Most VOCs (some hydrophilic VOCs are captured and retained in the water.) are captured by an adsorption system and thermally oxidized. In this paper, the processes involved in automotive painting and in VOC control are reviewed. The topics include: painting operations (briefly), the nature of VOCs, VOC-control processes (adsorption, absorption, biological removal, and thermal oxidation) and energy recovery from VOCs using a fuel reformer and a fuel cell, and the beneficial use of paint sludge.

Characteristics of TVOCs Emission Factors from Chemical and Natural Coating Materials (화학 및 천연페인트에서 발생되는 TVOCs의 방출강도 특성 연구)

  • Kim Shin Do;Kim Jeong Ho;Park Jin Soo;Lee Jeong Joo
    • Journal of Environmental Health Sciences
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    • v.30 no.5 s.81
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    • pp.487-492
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    • 2004
  • Building materials are composed of very complex chemical compounds, and these indoor building materials discharge very much Volatile Organic Compounds(VOCs). We performed the environmental chamber test to investigate the Total VOCs(TVOCs) emission characteristics and emission factors about chemical and natural coating materials. As the result, we concluded that TVOCs emission are high at initial time and decreased in course of time. Natural paint was low emission level for TVOCs than chemical paint by small chamber test. The TVOCs emission factor-time profile showed a good fit with the results from the measured and predicted value.

Atmospheric Concentrations of Volatile Organic Compounds(VOC) of Day/Night Periods During the Summer Season in Kwangju (광주지역 여름철 대기 중 주야간 VOC 농도 특성)

  • 이영재;신대윤;이학성;강병욱;한종수
    • Journal of Korean Society for Atmospheric Environment
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    • v.17 no.2
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    • pp.169-177
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    • 2001
  • The concentrations of ambient volatile organic compounds (VOC) were investigated from the Kwangju area. A total number of sixty six sample were collected and analyzed during day/night periods from June to September 1999. Each of the canister sample ws analyzed for alkane and aromatic compounds using a GC/MSD sys-tem. The concentration of VOC in mean day/night time, when compared, was in the order: toluene(16%)> isobu-tane(14%)= acethylene(14%)> propane(12%)> ethane(11%)> butane(9%). The VOC concentrations were gene-rally higher during the daytime than the nighttime. The VOC with light weight(such as an alkane group, $C_2$-C(suh)5) showed generally higher concentrations during day/nighttime than the VOC with heavy weight (such as an aromatic group). High correlations were among the VOC emitted from the similar sources.

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Emission Characteristics of Volatile Organic Compounds from the Interior Materials of Railroad Rolling Stocks (철도차량 내장재에서의 VOCs 방출 특성)

  • Park Duck-Shin;Cho Young-min
    • Proceedings of the KSR Conference
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    • 2004.06a
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    • pp.235-240
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    • 2004
  • The aim of this study is to investigate the emission characteristics of volatile organic compounds from the interior materials of railroad rolling stock. Samples for VOCs were collected using a environmental chamber and the samples were analyzed for 35 individual compounds. 6 different types of materials, seat cover and flour material of Mugunghwaho, Saemaeulho and electric rolling stock were analysed. The results were expressed as concentrations over 12, 18, 24, 36 and 48 hours. VOCs concentrations were measured to be higher in the 12 hours than in the 48 hours. Floor material of Mugunghwaho showed the highest concentration of all studied materials. Followed by floor materials of Saemaeulho and electric rolling stock.

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Study on Analysis of Volatile Organic Compounds(VOCs) in Water(II) (수중 휘발성 유기물질의 분석에 관한 연구 (I) - Purge & Trap을 이용한 휘발성 유기물질 분석기법의 고찰 -)

  • 전옥경;서병태;이정자
    • Journal of Environmental Health Sciences
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    • v.20 no.4
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    • pp.53-59
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    • 1994
  • Since trihalomethanes (THMs) and other volatile organic compounds (VOCs) were detected and measured in drinking water supplies in 1974, because of the frequent occurrence of these compounds and the potential health hazard they pose, several methods for detecting VOCs have been developed. The most widely accepted method for the analysis of THMs and other VOCs is a purgeand-trap method. In the analysis of VOCs by purge-and-trap,there are several factors which may give rise to errors. Some of the factors to be considered are purge time, carryover effect, cryofocusing temperature, and trap desorption temperature. In this study,many aspects of purge-and-trap were investigated. Understanding the sources of error makes it possible to adapt the analysis parameters to compensate for such effects.

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Organic Solvent Exposure of Thinner-Using Occupation and Its Treatment by Means of $TiO_2$ Photocatalyst (신너사용 작업장의 유기용제 노출 및 $TiO_2$ 광촉매를 이용한 BTX처리에 관한 연구)

  • 양원호;김현용;손부순;박종안
    • Journal of environmental and Sanitary engineering
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    • v.17 no.2
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    • pp.26-33
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    • 2002
  • Ultimate objective of industrial hygiene is the prevention of health impairment that may result from exposure to chemicals at workplace. Workers in solvent thinner-using occupation environment may be highly exposed to VOCs (volatile organic compounds) because solvent thinner has been used extensively such as painting, spraying, degreasing, coating and so on in Korea. The purpose of this study was to recognize, evaluate, and propose the control methods of VOCs from solvent thinner-using workplace. Five target volatile organic compounds (benzene, toluene, ethylbenzene, o-xylene, and m-xylene) were monitored in H company of Shiwa Industrial Complex and analyzed in perosnal, occupational indoor and outdoor during working hours simultaneously. Engineering control such as local ventilation should be made in considering the long-term exposure, though measured VOCs concentration did not exceed the workplace exposure standards. In addition, air cleaning device should be installed in local ventilation because Shiwa Industrial Complex has had the serious ambient air pollution. Currently, environmental purification using $TiO_2$ photocatalyst have attracted a great deal of attention with increasing number of recent environmental problems. In this study, $TiO_2$ sol coated on the ceramic bead was prepared by sol-gel method and the photodegradation of target compounds was investigated in gas phase by the exposure to UV-A lamp(365nm) in a batch system.

Air Quality Management in the Industrial Estate, HAP or VOC\ulcorner (산업단지 대기질 관리, HAP인가 VOC인가\ulcorner)

  • 김영성
    • Journal of Korean Society for Atmospheric Environment
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    • v.15 no.4
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    • pp.513-517
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    • 1999
  • Problems of secondary pollution and hazardous pollutants have rapidly come to the front in our society during the past few years. More attention should be paid to monitoring and assessment in order to identify the nature of complicated problems, but our air-quality policy is hurriedly seeking for management strategies. A typical example is air quality management in the industrial estates such as those located in Yochon and Ulsan. Yochon Industrial Estate was designated as a special air-quality management area of volatile organic compounds(VOCs) in 1996. And VOCs in the air of Ulsan Industrial Estate has been specially controlled since 1997. In this paper, however, it is suggested that hazardous air pollutants(HAPs) rather than VOCs should have been managed in the industrial estates. History of studies on organic compounds in the air of the industrial estates is reviewed. A stepwise approach for air quality management in the industrial estates is recommended.

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유류오염대수층에서 고온 공기분사공정법을 통한 TPH, VOCs, $CO_2$ 변화에 관한 특성인자 연구

  • Lee Jun-Ho;Park Gap-Seong
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 2005.04a
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    • pp.232-236
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    • 2005
  • In-situ Air Sparging (IAS, AS) is a groundwater remediation technique, in which organic contaminants are volatilized into air as it rises from saturated to vadose soil zone. The purpose of this study was to investigate the effect of environmental conditions on the degradation of VOCs (Volatile Organic Compounds) and $CO_2$ in the unsaturated zone and TPH (Total Petroleum Hydrocarbons) in saturated zone of sandy loam. In the laboratory, diesel (10,000 mg TPH/kg)-contaminated saturated soil. After heating the soil for 36 days, the equilibrium temperature of soil reached to $34.9{\pm}2.7^{\circ}C$ and TPH concentration was reduced to 78.9% of the initial value, Volatilization loss of VOCs in TPH was about 2%, The reduction gradient of $CO_2$ concentration was 0.018/day in air space and 0.0007/day in unsaturated zone.

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Secondary Metabolite Profiling in Various Parts of Tomato Plants

  • Kim, Dong Sub;Na, Haeyoung;Kwack, Yurina;Chun, Changhoo
    • Horticultural Science & Technology
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    • v.32 no.2
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    • pp.252-260
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    • 2014
  • Contents of carotenoids, phenolic compounds, volatile organic compounds, and alkaloids in leaves, internodes, fruits, and roots of tomatoes in different developmental stages were measured. Lycopene, ${\beta}$-carotene, and lutein were detected in all the tested parts except roots and green fruits. Lycopene content in red fruits was $49.04{\mu}g{\cdot}g^{-1}$ FW, while that in the other parts was below $40{\mu}g{\cdot}g^{-1}$ FW. ${\beta}$-Carotene and lutein contents in 24th leaves were 5.81 and $6.40{\mu}g{\cdot}g^{-1}$ FW, respectively, and were greater than those in the other parts. Caffeic, chlorogenic, and vanillic acids were detected in all the tested parts except roots. The content of chlorogenic acid in the 18th leaves was $40.11{\mu}g{\cdot}g^{-1}$ FW, while that in the other parts was lower than $31.00{\mu}g{\cdot}g^{-1}$ FW. The contents of caffeic and vanillic acids in the 24th leaves were 9.18 and $1.64{\mu}g{\cdot}g^{-1}$ FW, respectively, and were greater than those in the other parts. Moreover, younger leaves contained the more diverse volatile organic compounds including monoterpenes and sesquiterpenes. Contents of dehydro-tomatine and ${\alpha}$-tomatine were greatest in leaves, followed by internodes, roots and fruits. Younger leaves and internodes contained more dehydro-tomatine and ${\alpha}$-tomatine than older leaves and internodes. The contents of dehydro-tomatine and ${\alpha}$-tomatine in the 24th leaves were 0.89 and $1.42mg{\cdot}g^{-1}$ FW, respectively, and were greatest among all the tested parts. Our results indicated that, except lycopene, tomato leaves included greater secondary metabolites contents than red fruits. The results suggest that inedible parts of tomato plants can be used as raw material for antioxidants, anti-inflammatory agents, fungistats, and pesticides.