• 제목/요약/키워드: VOCs removal

검색결과 195건 처리시간 0.019초

오존산화에 의한 수처리공정에서 VOCs의 제거 특성 (VOCs Removal in Drinking Water Treatment Process by Ozonation)

  • 한명호;최준호;임학상
    • 상하수도학회지
    • /
    • 제11권2호
    • /
    • pp.65-75
    • /
    • 1997
  • Removal characteristics of volatile organic carbons(VOCs) by ozone oxidation and other processes in the raw water of the 1st Nakdong water treatment plant were investigated. Dichrolomethane, toluene and other 7 compounds were detected in the raw water. With regard to detected 4 compounds in finally treated water, it was found that VOCs could not be removed effectively by traditional water treatment process. Benzene, 1,2-dichlorobenzne were not detected in the raw water but they were detected in the process of treatment. The compound of highest detection frequency was dichloromethane. When the raw water was controlled at pH 7, temperature $20^{\circ}C$, 5 minutes as contact time, 10 minutes as reaction time, the removal rate of THMFP, $KMnO_4$ demand, TOC, $UV_{254nm}$ and $NH_3-N$ were 46.4%, 22%, 19.6%, 31% and 8%, respectively. From estimating the finally treated water qualities in 7 kinds of treatment processes, P-6 process(raw water-chlorination-coagulation-ozonation) was most effective for organics removal and THMs control. Removal efficiencies for $KMnO_4$ demand and TOC by the process which combined preozonation with coagulation was twice better than only preozonation. $NH_3-N$ removal rate was shown as 10% by P-3 process(raw water-coagulation-ozonation), but 83% of $NH_3-N$ was removed by P-4 process(raw water-coagulation-chlorination). It was found that the chlorination is more effective than the ozonation for the NH3-N removal as commonly known.

  • PDF

VOC Emissions from Automotive Painting and Their Control: A Review

  • Kim, Byung-R.
    • Environmental Engineering Research
    • /
    • 제16권1호
    • /
    • pp.1-9
    • /
    • 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.

상업용 공기정화기 사용 차량 내 휘발성 유기물질 수준 (Volatile Organic Compound Levels inside Vehicles using Commercial Air Cleaning Devices)

  • Wan-Kuen Jo;Kun-Ho Park
    • 한국환경과학회지
    • /
    • 제6권6호
    • /
    • pp.659-670
    • /
    • 1997
  • 차량 내부의 높은 휘발성 유기물질 농도와 이들 휘발성 유기물질의 독성 때문에 휘발성 유기물 질에 대한 차량 내부에서의 노출이 주요한 관심을 받고 있다. 본 연구에서는 115회의 도시 지역 (대구 광역시) 출퇴근과 9회의 정차 실험을 통해 상업용 공기정화기의 6 종류 휘발성 유기물질에 대한 제거 효율이 평가되었다. 네 종류의 운전 조건에서 수행된 정차 및 출퇴근 연구 결과, 본 연구에서 이용된 두 개의 시중 시판 차량용 공기정화기는 휘발성 유기물질에 대해 제거 효율이 없는 것으로 나타났다. 벤젠을 제외한 다섯 종류의 휘발성 유기물질의 농도는 최근 차량보다 오래된 차량 내부에서 높게 나타났다 (p<0.05). 본 연구에서 측정된 벤젠과 톨루엔의 평균 농도는 로스앤젤레스에서 측정된 값과 유사하게 나타났고, 그 이외의 미국내 비교지역의 측정 값보다는 높게 나타났다. 휘발성 유기물질에 대한 노출 및 해당 발암 위해성은 차량 내부에서 실외 공기의 약 8배 정도 높게, 그리고 실내 공기의 약 절반 정도로 산정 되었다.

  • PDF

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

  • 윤인길;박창호
    • KSBB Journal
    • /
    • 제15권5호
    • /
    • pp.501-506
    • /
    • 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.

  • PDF

바이오필터의 공학적 해석 (Engineering Analysis of Biofilter)

  • 김인호;최호석
    • KSBB Journal
    • /
    • 제17권2호
    • /
    • pp.115-120
    • /
    • 2002
  • Biofiltration is a bioprocess treating volatile organic compounds (VOCs) in order to convert the VOCs to harmless products. This review on biofiltration is intended to provide an engineering concept such as removal efficiency, maximum load, elimination capacity and so on. Besides, modeling concept of biofilter is also supplied for designing biofilter system. Quantitative data generated in our research group is shown to explain the engineering concept as well as the modeling idea.

Excellent toluene removal via adsorption by honeycomb adsorbents under high temperature and humidity conditions

  • Cho, Min-Whee;Kim, Jongjin;Jeong, Jeong Min;Yim, Bongbeen;Lee, Hyun-Jae;Yoo, Yoonjong
    • Environmental Engineering Research
    • /
    • 제25권2호
    • /
    • pp.171-177
    • /
    • 2020
  • Removal through adsorption is the most widely used and effective treatment method for volatile organic compounds (VOCs) in exhaust gases. However, at high temperatures and humidity, adsorption is competitive due to the presence of moisture and unsmooth physical adsorption thereby deteriorating adsorption performance. Therefore, water adsorption honeycomb (WAH) and VOCs adsorption honeycomb (VAH) were prepared to improve VOCs adsorption at high temperatures and humidity. Adsorbed toluene amounts on single honeycomb (SH), containing only VAH, and combined honeycomb (CH), containing WAH and VAH, were determined. Further, the toluene adsorption rates of honeycomb adsorbents mounted on rotary systems, VAH-single rotor (SR) and WAH/VAH-dual rotor (DR) were determined. Toluene adsorption by WAH/VAH-CH (inlet temperature: 40-50℃; absolute humidity: 28-83 gH2O/kg-dry air) was 1.6 times that by VAH-SH, and the water adsorption efficiency of WAH/VAH-CH was 1.7 times that of VAH-SH. The adsorption/removal efficiency of the WAH/VAH-DR (inlet temperature: 45℃; absolute humidity: 37.5 gH2O/kg-dry air) was 3% higher than that of VAH-SR. This indicates that the WAH at the rotor inlet selectively removed water, thereby improving the adsorption efficiency of the VAH at the outlet.

이산화티탄($TiO_2$ anatase) 분말을 광촉매로 사용한 노출 콘크리트의 VOCs(Benzene, Toluene)와 질소산화물(NOx) 제거 특성 연구 (The Properties of VOCs(Benzene, Toluene) with NOx Removal in Exposed Concrete With $TiO_2$(Anatase type) Powder as Photocatalyst)

  • 김광련;이동범;김화중
    • 한국콘크리트학회:학술대회논문집
    • /
    • 한국콘크리트학회 2004년도 춘계 학술발표회 제16권1호
    • /
    • pp.588-591
    • /
    • 2004
  • Generally, $TiO_2$ powders absorb ultraviolet rays and make oxidation/reduction reactions on its surface. Hydroxide radical(OH), a product of photocatalyst reactions, has so strong oxidation/reduction electric potential that it can oxidize noxious gas like VOCs(Volatile Organic Compounds) and NOx. In this study, $TiO_2$ was substituted for exposed concrete to investigate the purifying degree of VOCs(Benzene, Toluene) and NOx. Anatase types of $TiO_2$ were used as photocatalyst. The sun rays and the ultraviolet were used as a light source. Anatase type $TiO_2$ was better than rutile type in purifying performance. The sunray showed the best purifying performance among the light sources. $3\%$ substitution of $TiO_2$ with the sunray was enough to purify VOCs(Benzene, Toluene) and NOx efficiently.

  • PDF

Bioscrubber Trickling Filter(BSTF)의 VOCs 제거 및 운전 특성에 관한 연구 (A Study on the Removal Efficiency of VOCs and Operating Characteristics by Using of Bioscrubber Trickling Filter(BSTE))

  • 박진도;서정호;이학성
    • 한국환경보건학회지
    • /
    • 제31권4호
    • /
    • pp.309-315
    • /
    • 2005
  • Volatile organic compounds (VOCs) and odor materials are major sources of air pollution in Ulsan city, where much chemical plants are located. Therefore, it is necessary to develop a new reactor which can remove VOCs and odor materials effectively and be equipped at the end of pipe easily. A modified reactor (bioscrubber trickling filter, BSTF), which have both characteristics of biofilter and bioscrubber, was developed and tested on its reactivity with several VOCs using two types of media, fiber and activated carbon 4- ceramic(A/C). It was observed that the removal efficiencies of several types of VOCs such as acetaldehyde, ethylalcohol, butanol, diethylamine and triethylamine were up to $95\%$ when they had about 100 ppm of initial concentration and 80 seconds of residence time. Good attachment of microorganisms to both media, where it is thought the reaction efficiency can be determined according to the amount of microorganisms attachment, observed with scanning electron microscopy(SEM). Initial pressure drops of the packed bed with both media were 229 $mmH_2O/m$ at A/C column and 670 $mmH_2O/m$, respectively. However, maximum pressure drop of fiber column during the operation was over 1,647 $mmH_2O/m$. Therefore, it was thought that the fiber material would not suitable to use in the local plant as a packed bed media.

접착제 취급 작업장 내 공기정화 설비를 이용한 휘발성 유기화합물 저감 평가 (Assessment of Volatile Organic Compound Reduction Using an Air Purification Facility in an Adhesive Handling Process)

  • 우재민;김동준;신지훈;민기홍;이채관;양원호
    • 한국환경보건학회지
    • /
    • 제49권2호
    • /
    • pp.78-88
    • /
    • 2023
  • Background: Exposure to volatile organic compounds (VOCs) can have acute and chronic health effects on human beings in general and in working environments. In particular, VOCs are often emitted in large quantities in industrial settings. In such circumstances, there is a need to improve the indoor air quality at workplaces. Objectives: The purposes of this study were to verify the effectiveness of air cleaning devices in workplaces and provide alternative solutions for improving working environments. Methods: Personal exposure and area level of VOCs for workers were evaluated in a car-part adhesive process before and after installing an air cleaning device with a TiO2-coated filter. Passive samplers and direct reading instruments were used to collect and analyze the VOCs, and the removal efficiency and improvement of air quality were evaluated. We also calculated the exposure index (EI) to assess the risk level in the workplace. Results: The removal efficiency for VOCs through the installation of the air cleaning device was approximately 26.9~69.0% as determined by the concentration levels before and after installation. The measured substances did not exceed the exposure limits for the work environment and the EI was less than 1. However, carcinogenic substances such as benzene, formaldehyde, carbon tetrachloride, and trichloroethylene were detected. Conclusions: The application of an air cleaning device can be a solution for controlling the indoor air quality in a workplace, particularly in cases where ventilation systems cannot be installed due to process limitations.