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Degradation of Volatile Organic Compound Mixtures Using a Biofiltration System (생물여과 시스템을 이용한 다성분계 휘발성 유기화합물의 분해)

  • 윤인길;박창호
    • KSBB Journal
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    • v.15 no.5
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    • pp.501-506
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    • 2000
  • A bench-scale air biofilter was evaluated for the removal of volatile organic compounds (VOCs) from a gas stream. Compost and peat were used as the biological attachment media. Biofilter operating parameters such as incoming VOCs concentrations, temperature, and packing materials were examined. After 26 days of acclimation periods, at 25$^{\circ}C$ and 45$^{\circ}C$, the biofilter removed more than 90% of 30 to 72 mg/㎥ of total VOC. After 40 days of operation, the concentrations of isoprene, toluene, and m-xylene were reduced to 96∼99, 91∼93, and 91∼93% of the original concentrations. VOC removal efficiency was not affected by the temperature. The medium pH was maintained near neutral (pH 6.5∼7.1). After 37 days of operation, the total bacteria count in the biofilter media increased to 1.12${\times}$10(sup)8 cells/g of medium.

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Analysis of Air Quality Change of Cheonggyecheon Area by Restoration Project (청계천복원공사에 따른 청계천과 주변지역의 대기질 변화분석)

  • Jang, Young-Kee;Kim, Jeong;Kim, Ho-Jung;Kim, Woon-Soo
    • Journal of Environmental Impact Assessment
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    • v.19 no.1
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    • pp.99-106
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    • 2010
  • The project of Cheonggyecheon revived the 5.8 kilometer stream and it removed the cover of stream and Cheonggye elevated road. It was begin October of 2003 and completed October of 2005. The purpose of this study is to analyze the air pollution change of Cheonggyecheon area and neighboring area from before and after the project. The change of concentration is compared with an air monitoring station data and measurement data. The analyzed pollutants are $NO_2$, $PM_{10}$, heavy metal, VOC which are measured at Cheonggyecheon and neighboring area. As the results, $NO_2$ concentration shows 10 % decreases in Cheonggyecheon area and neighboring area shows 16 % decreases by Chenoggyecheon restoration, and $PM_{10}$ concentration shows 15 % decreases in Cheonggyecheon area and neighboring area shows 16 % increases. One of VOC, benzene is increased in Cheonggyecheon area compared with neighboring area but Toluene, Ethylbenzene, m+p Xylene increased in neighboring area. After the Cheonggyecheon restoration, The heavy metals are not shows the improvement, but $PM_{10}$ and $NO_2$ concentration improved more than the changes of neighboring area. These improvements of pollution due to reduction of transportation and clearing of elevated road by Cheonggyecheon restoration project.

A Study on the Health Risk Assessment of Volatile Organic Compounds in a Petrochemical Complex (석유화학단지의 휘발성 유기화합물로 인한 인체 위해도 평가에 관한 연구)

  • 이진홍;김윤신;류영태;유인석
    • Journal of Korean Society for Atmospheric Environment
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    • v.13 no.4
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    • pp.257-267
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    • 1997
  • This study focuses on the health risk assessment of airborne volatile organic compounds (VOCs) in a petrochemical complex, with several emphases on a risk assessment method. The first emphasis is on the importance of hazard identification to determine the likely carcinogenic potential of a VOC. Without considering this type of information, a direct comparison of the carcinogenic risks of two pollutants is meaningless. Therefore, wer suggest that this type of information be prepared and be listed with the estimate of cancer risk in parallel. The second emphasis is on the selection of a better dose-response model to estimate unit risk or cancer potency factor of a carcinogenic VOC. Finally, probilistic risk assessment method is discussed and recommended to use within a comparison of conventional point-estimate method. A health risk assessment has also been carried out. For non-carcinogenic risk, even the highest hazard index for carbon tetrachloride is estimated to be less than 1 with the other VOCs less than 0.03. However, the lifetime cancer risk from the inhalation of airborne VOCs is estimated to be about $2.6 \times 10^{-4}$ which is higher than the risk standard of $10^{-6}$ or even $10^{-5}$. Therefore, the investigation into domestic petrochemical complexes should be strengthened to obtain more fine long-term airborne VOC data.

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Effect of Ozone Treatment for Nakdong River Raw Water - II. Removal of VOCs and Algae in Raw Water by Conducting Batch Test of Ozonation Experiments - (낙동강 상수원수의 오존처리 효과 - II. 회분식 오존처리에 의한 휘발성유기화합물 및 조류제거 효과 -)

  • 임영성;이홍재;이도진;허종수;손보균;조주식
    • Journal of Environmental Science International
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    • v.11 no.12
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    • pp.1267-1274
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    • 2002
  • This study was carried out to evaluate the pollutant removal efficiencies of the advanced drinking water treatment using ozonation process. For raw water, Nakdong River was used. By conducting batch test of ozonation, the following results were obtained. When ozone dosage of $5 mg/{\ell}$ was used, ozone transfer and utilization efficiencies of the ozonation were 94 to 92%, respectively. Removal efficiencies of single VOC compound or mixed VOC compounds in the raw water were 80% to 90% by the ozonation with $2 mg/{\ell}$ dosage and 10 minutes contact time. Removal efficiencies of ABS by the ozonation with $1 mg/{\ell}$, $3 mg/{\ell}$ dosage and 20 minutes contact time were 83% to 96%, respectively. Almost 67% of chlorophyll-a at the concentration of $38.4\mu\textrm{g}/{\ell}$ was removed by ozonation at ozone dosage of $1 mg/{\ell}$ for 20 min. Considering the efficiency of ozone utilization and water treatment, the most effective ozonation could be obtained with high ozone dosage and short contact time.

코로나 방전을 이용한 하이브리드 사이클론 집진 장치 특성 연구

  • Choe, Seong-Chang
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.08a
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    • pp.259-260
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    • 2012
  • 산업화가 발달됨에 따라 대기 오염 물질은 점차 증가하고 있는 추세에 있고 특히 기름 및 석탄 연소 보일러, 자동차, 제철, 시멘트 플렌트, 소각로 등은 미세 분진을 발생시키는 주원인이 되어 왔다. 최근 대기환경법은 오염 분진의 중량 규제로부터 $10{\mu}m$ 미만의 PM10에서 $2.5{\mu}m$ 미만의 PM2.5의 미세 분진에 대한 규제로 점차 심화되고 있으나, 이러한 미세분진은 고전적인 제거 방법으로는 매우 어려우며 고가의 HEPA 필터를 사용하여야 한다. 한편 코로나 방전을 이용하는 전기 집진은 미세 먼지 제거에 매우 효율적이어서 $1{\mu}m$ 미만의 미세 분지도 99%까지 제거가 가능하다는 장점이 있지만 입자크기가 클 경우에는 효율이 떨어지는 단점이 있다. 한편 사이클론 집진기는 매우 오래전부터 개발되어 사용되어 왔는데 가격이 저렴하고 운영비가 적게 들며 $10{\mu}m$ 이상의 먼지는 99% 이상 제거가 가능하여 산업현장에서 오랜 기간 사용되어 왔지만 입자크기가 $10{\mu}m$ 미만으로 가면 집진율이 급격히 떨어지는 단점을 가지고 있다. 본 연구에서는 기존의 사이클론 집진기의 구조를 기본으로하여 사이클론 집진기 내부에 플라즈마 방전을 설치하여 원심력에 의한 집진과 코로나 방전에 의한 전기 집진을 동시에 수행할 수 있도록 하이브리드 사이클론 집진기를 제작하였다. 제작된 사이클론 집진기는 직경 30 cm 높이 120 cm의 사이클론 구조를 가지고 있으며 1 hp의 터보송풍기를 장착하여 $20m^3$/min 이상의 유량을 처리할 수 있도록 설계 제작되었다. 제작된 하이브리드 사이클론 집진기의 성능을 평가하기 위하여 $10m^3$의 체적을 가지는 테스트 챔버 내부에 사이클론 집진기를 설치하고 향을 태워 미세 먼지를 발생시킨 후 다양한 조건에서 집진 성능을 측정하여 보았다. 미세 먼지의 경우 사이클론을 작동시키지 않아도 테스트 챔버 벽면에 흡착되어 초기에는 급격히 감소하는 경향을 보여주나 일정 시간이 경과한 후에는 매우 느리게 감소하는 현상이 관찰 되었다. 코로나 방전을 하지 않고 오존 파괴기에 활성탄만 충진한 상태에서 사이크론을 작동시킬 경우 지속적으로 천천히 감소하는 경향을 보여주었으며, 코로나 플라즈마를 방전시킨 경우 미세 먼지는 HEPA filter를 장착한 것보다도 조금 빠르게 미세먼지를 제거하였다. 챔버 내부의 미세먼지가 초기 값의 1/10에 도달하는 시간은 코로나 방전 전류가 증가할수록 짧아지는 경향을 보여주었으며 최적 조건에서 100초 이내에 90% 이상 제거가 가능하였다. 하이브리드 사이클론 집진기는 집진 뿐 만 아리라 VOC 성분도 분해가 가능하여 유해물질을 제거하는 능력이 있다. 유해 가스 제거 능력을 실험하기 위하여 분진제거 실험에 사용된 챔버 안에 아세톤을 증발시켜 50 ppm이 되도록 한 후 다양한 조건에서 유해물질 제거 실험을 수행하였다. 미세먼지와는 달리 장비를 작동하지 않을 경우 매우 느리게 아세톤 농도가 감소하였다. 이는 미세 먼지와는 달리 흡착이 발생하지 않고, 측정 챔버 자체가 완전한 밀폐가 이루어지지 않아 자연적으로 조금씩 외부로 누출되기 때문으로 판단된다. 코로나 플라즈마만 방전시켰을 경우 초기 농도의 80%가 제거되는데 걸리는 시간은 약 28분 정도로 코로나 플라즈마가 VOC 제거에 효과가 있음은 확인하였으나 제거율이 그리 높지 않음을 알 수 있었다. 한편 오존 파괴를 위해 활성탄으로 충진 된 오존파괴기를 통과시킨 경우는 약 12분 경과 후 80%가 제거됨을 확인할 수 있었으나 그 이후에는 VOC의 감소가 매우 느리게 진행됨을 알 수 있었다. 한편 활성탄 대신 $MnO_2$ 복합촉매로 충진 된 오존파괴기를 통과한 경우 약 3분 정도 경과 후 80%의 아세톤이 제거됨을 관찰할 수 있었으며 코로나 플라즈마를 작동시키면서 $MnO_2$ 복합촉매로 충진 된 오존파괴기를 통과시킨 경우 약 2분 정도 경과 80% 이상의 아세톤이 제거되어 코로나 플라즈마와 복합촉매를 사용할 경우 VOC 성분이 효과적으로 제거됨을 알 수 있었다.

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Removal of Volatile Organic Compounds with Organic-Inorganic Hybrid Mesoporous Materials (유·무기 혼성 메조포러스 물질의 휘발성 유기화합물 제거능)

  • Jeong, Han Mo;La, Young Soo;An, Jin Hee;Jo, Ah Young;Choi, Mi Yeon;Kim, Suck Man;Moon, Nam Gu;Yoon, Young Ho
    • Applied Chemistry for Engineering
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    • v.16 no.5
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    • pp.719-723
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    • 2005
  • Organic-inorganic hybrid mesoporous materials were prepared by co-condensation of organosilanes with tetraethyl orthosilicate (TEOS) or 1,2-bis(triethoxysilyl) ethane (BTSE). Their removal capability of volatile organic compounds (VOCs) in the air was evaluated and compared with that of inorganic hydrophilic mesoporous material, SBA-15 that was prepared with TEOS only. It was found that the increased hydrophobicity of mesoporous materials due to the presence of organic group, could enhance the VOCs removal by adsorption in the air. An organic-inorganic hybrid material prepared by the co-condensation of BTSE/phenyl triethoxysilane (90/10 by weight) was a typical example of superior adsorbent. It was also observed that these organic-inorganic hybrid materials can be utilized as absorbents for the removal of oil dispersed in water.

Studies on the body - retaining rate of smoking-related carcinogens using some important volatile organic compounds (VOC) (흡연시 발암성 물질의 체내 잔존율에 대한 연구 - 주요 휘발성 유기화합물을 중심으로)

  • Kim, K.H.;Choi, Y.J.;Hong, Y.J.;Yang, H.S.;Lee, J.H.;Lee, Y.K.
    • Analytical Science and Technology
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    • v.17 no.5
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    • pp.410-415
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    • 2004
  • In order to learn the emission characteristics of hazardous pollutants associated with environmental tobacco smoking (ETS), we measured the concentrations of major aromatic VOC and carbonyl compounds released from ETS. By acquiring the different smoke types of ETS, we were able to determine that the concentrations of those species range from ppb (normal exhaled air of smoker prior to smoking) to ppm levels (direct release of ETS without filter). Using these measurement data, we also evaluated the body-retaining rate of these compounds as the result of ETS. The results of our analysis indicated that predominant portion of them (e.g., > 99%) are retained as the result of cigarette smoking. To learn more about the potential impact of ETS, more extensive study may be required to assess the gross picture of pollutant deposition inside respiratory intake and their health-effects.

A Study on the Photocatalytic Degradation of VOC over TiO2 Coated on Glass Bead (산화티탄 광촉매를 이용한 VOC 가스 처리효과에 관한 연구)

  • Yun, Seok-Yeong;No, Jun-Hyeong;Park, Sun-Je;Lee, Seung-Ho
    • Korean Journal of Materials Research
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    • v.10 no.5
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    • pp.328-334
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    • 2000
  • The photocatalyst of $TiO_2$coated on glass bead was prepared from sol-gel method to remove the VOC (vola-tile organic compounds) by the photocatalytic reaction. The coated films were characterized by X-ray diffraction(XRD), specific surface area(BET), and scanning electron microscopy observation (SEM), The gas-phase photocatalytic degradation of trichloroethylene(TCE) and benzene with coated titanium dioxide on glass beads was in-vestigated using a fixed bed reactor. The degradation was calculated by the concentration difference with the retained on the reactor with aid of gas chromatography. At steady state, conversion yields were obtained for 80% of trichloroeth-vlene in 400 ppmv concentration and 65% on benzene in the range of concentration from 50 to 300 ppmv, respectively.

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A Study on Behavior Characteristics of Volatile Organic Compound Caused by Ventilation in a Room (통풍에 의한 휘발성 유기화합물의 실내 거동 특성에 대한 연구)

  • Kim, Jang-Woo;Chung, Jin-Do
    • Journal of Environmental Science International
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    • v.15 no.11
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    • pp.1011-1016
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    • 2006
  • Recently, volatile organic compound(VOC) has been noted as a main cause of air pollution. VOC, with its toxic and offensive odor, is hazardous to health. Furthermore indoor, underground and hish-rise buildings are preferable living spaces. People spend more than 80% of the day indoor, so indoor air pollution is a matter of importance. In Korea, from 2004, 10 types of indoor pollutants in public facilities have been identified. However, there is no standard for individual VOC, so the regulation has not yet effectively been carried out. In this study, we have studied on the diffusion of Benzene in a room using a numerical analysis for various air-controlled conditions consisted of door, window and ventilation system. This study investigates spatial concentration distribution and time-history of room-averaged benzene concentration for several cases. The results of this study show that when the room is ventilated by a small fan only for 30 minutes, the average concentration of benzene is decreased a very little, thus the impact to human body would be serious compared to the case of natural ventilation by window and door, In the case of natural ventilation by window and door, if the wind speed is higher than 0.5m/s, it takes small than 4 minutes for benzene to spread to the target concentration of $1.2mg/m^3$.