• 제목/요약/키워드: CO compound emission

검색결과 45건 처리시간 0.021초

시설상추 농가를 대상으로 하는 bottom-up 방식 LCA 방법론의 농업적 적용 (Application of LCA on Lettuce Cropping System by Bottom-up Methodology in Protected Cultivation)

  • 유종희;김계훈;김건엽;소규호;강기경
    • 한국토양비료학회지
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    • 제44권6호
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    • pp.1195-1206
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    • 2011
  • 남양주의 실제 상추재배 농가를 대상으로 전과정평가를 적용하여 bottom-up 방식의 사례분석을 수행하였다. 사례분석을 위하여 현장을 방문하여 청취 조사를 하였고, 대상 농가는 유기농가 2곳, 무농약 인증 농가 1곳, 관행농가 2곳이었다. 현장자료 수집과 산정에서 데이터 값의 오차범위가 넓어지는 것을 고려하여 추가의 냉난방이 없는 가을 1 작기를 기준으로 평가하였고, 민감도 분석과 시나리오 분석을 추가하였다. 전과정 목록분석과 영향평가는 'PASS(4.1.3)' 소프트웨어를 사용하였다. GTG 목록작성 결과 상추 1 kg 생산하는데 투입되는 물질 중 비료와 에너지 투입이 가장 높은 비중을 차지하였고, 농약이 가장 작은 값을 나타냈다. 특히 육묘단계가 없었던 농가 1을 제외한 모든 농가에서 전기의 투입량이 가장 높게 나타났다. 상추 1 kg 생산하는데 영농작업으로 말미암아 포장에서 직접 배출되는 $CO_2$, $CH_4$, $N_2O$는 각각 6.79E-03 (농가 1), 8.10E-03 (농가 2), 1.82E-02 (농가 3), 7.51E-02 (농가 4), 1.61E-02 (농가 5) kg $kg^{-1}$ lettuce이었다. 전과정 목록분석 결과 시설 상추 1 kg 생산하는데 발생하는 온실가스 발생량은 $CO_2$가 배출량 대부분을 차지하였고, 그 다음이 $N_2O$, $CH_4$ 순으로 나타났다. 농가별 $CO_2$ 배출량은 각각 2.92E-01 (농가 1), 3.76E-01 (농가 2), 4.11E-01 (농가 3), 9.40E-01 (농가 4), $5.37E-01kg\;CO_2\;kg^{-1}\;lettuce$ (농가 5)이었다. 공정별 온실가스 발생량을 분석한 결과, $CO_2$는 에너지생산 과정에서 발생하는 양이 가장 많았다. 관행농은 에너지생산에 의한 배출 비중이 유기농보다 적었고 대신 복비 생산에 의한 $CO_2$ 배출 비중이 그 차이만큼 늘었다. 또한, 무기질 비료 투입이 많아질수록 아산화질소 발생에서 상추재배 공정이 차지하는 비중이 높게 나타났는데 농가 1, 2는 87%, 농가 3은 64%를 나타냈다. 시설 상추 생산체계의 탄소성적 값은 농가별로 각각 3.40E-01 (농가 1), 4.31E-01 (농가 2), 5.32E-01 (농가 3), 1.08E+00 (농가 4), 6.14E-01 (농가 5) kg $CO_2$-eq. $kg^{-1}$ lettuce였다. 민감도 분석 결과 유기질 비료 민감도가 무기질 비료 민감도 보다 높았고, 이 중 유박의 민감도가 가장 높았고, 복합비료의 민감도가 가장 낮았다. 또한, 온실가스 변화량 중 아산화질소 발생량이 가장 민감하게 변화하였다. 전기 사용량 변화에 따른 민감도 분석은 이산화탄소의 민감도가 가장 높았고, 다음이 메탄이었고, 아산화질소는 민감도가 0에 가까웠다. 따라서 시설재배 상추생산에서 탄소배출량 감소를 위하여 질소비료 종류와 시비방법 및 시설내 전기사용에 대한 합리적 영농법에 대한 연구가 필요할 것으로 판단되었다. 상추 재배에서 여름 작기에 대한 탄소 성적 시나리오 분석결과 생산량이 봄이나 가을에 비하여 약 1/2~1/3정도 작았고, 이에 따라 탄소성적도 30~40배 높은 값을 보였다.

습식 산화법으로 성장된 산화구리입자를 이용한 방열 컴파운드 제조 및 특성 연구 (Characterizations of Thermal Compound Using CuO Particles Grown by Wet Oxidation Method)

  • 이동우;엄창현;주제욱
    • 한국재료학회지
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    • 제27권4호
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    • pp.221-228
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    • 2017
  • Various morphologies of copper oxide (CuO) have been considered to be of both fundamental and practical importance in the field of electronic materials. In this study, using Cu ($0.1{\mu}m$ and $7{\mu}m$) particles, flake-type CuO particles were grown via a wet oxidation method for 5min and 60min at $75^{\circ}C$. Using the prepared CuO, AlN, and silicone base as reagents, thermal interface material (TIM) compounds were synthesized using a high speed paste mixer. The properties of the thermal compounds prepared using the CuO particles were observed by thermal conductivity and breakdown voltage measurement. Most importantly, the volume of thermal compounds created using CuO particles grown from $0.1{\mu}m$ Cu particles increased by 192.5 % and 125 % depending on the growth time. The composition of CuO was confirmed by X-ray diffraction (XRD) analysis; cross sections of the grown CuO particles were observed using focused ion beam (FIB), field emission scanning electron microscopy (FE-SEM), and energy dispersive analysis by X-ray (EDAX). In addition, the thermal compound dispersion of the Cu and Al elements were observed by X-ray elemental mapping.

휘발성 유기화합물의 배출량 산정 및 관리 소프트웨어 개발 (A Study on Process Integrated Innovation System for a LNG Industry)

  • 이종협;박현수;이선우;김화용
    • 한국가스학회지
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    • 제7권2호
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    • pp.7-13
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    • 2003
  • 본 연구에서는 국내 휘발성 유기화합물질의 주요 취급시설에 대한 조사를 통하여 배출원별 배출메카니즘을 정립하고, 새로운 배출량산정모델을 제안하였다. 또한 각 배출원에 적용가능한 배출저감기술과 각 기술의 경제성 평가기법을 제안하였다. 여기에 배출원 DB, 화학물질물성치 DB, 기상정보 DB, 배출계수 DB 등의 정보를 연계하여 휘발성유기화합물질 배출량산정 및 관리 소프트웨어 VEER(VOCs Emission Estimation and Reduction)를 개발하였다. 결국 본 연구를 통해 개발된 VEER를 이용하여, 휘발성 유기화합물질 취급업체, 관리기관, 연구기관 등에서 쉽고 정확하게 배출원 인벤토리를 구축하고, 배출량을 산정하며, 계산된 결과를 바탕으로 각 배출원의 배출유량과 농도에 적합한 휘발성 유기화합물질 배출 저감기술을 선택하고, 여러 저감기술들에 대한 경제성을 평가함으로써, 저비용의 배출량 저감 및 배출원 관리기술을 선택하고, 설계할 수 있을 것으로 기대된다.

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SM 490A 강의 용접 열영향부 음향방출 특성 (AE Characteristics for Weld HAZ in SM 490A Steel)

  • 이장규;우창기;박성완;김봉각;윤종희;인승현
    • 한국산업안전학회:학술대회논문집
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    • 한국안전학회 2002년도 추계 학술논문발표회 논문집
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    • pp.257-262
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    • 2002
  • The object of this study is to investigate the effect of compounded welding through the AE (Acoustic Emission) characteristics for weld HAZ (Heat Affected Zone) on static tensile test. This study was carried out a SM 490A, high tension steel using the low hydrogen type E4316 of electronic shield metal arc welding, compound wire of $CO_2$ gas arc welding and tungsten electrode of TIG welding.

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A7003 알루미늄 합금 압출공정의 MLCA 산정기술 (Material Life Cycle Assessment of Extrusion Process of A7003)

  • 조형호;조훈;김병민;김영직
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2002년도 제5회 압출 및 인발가공 심포지엄
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    • pp.43-49
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    • 2002
  • A7003 alloy has characteristics of their excellent weldability, high corrosion resistance and superior plastic working however the broadening of application for the alloy has been hampered by the lower extrudability associated by Mg content. For improvement of extrudability and enhanced recovery efficiency during Al scrap recyeling, it has been generally practiced to reduce Mg content in A7003 alloy. Therefore, it is necessary to investigate the influence of Mg content on mechanical strength and extrudability of A7003 alloy. For efficient material processing which has small amounts, life cycle assessment in material processing(MLCA) is evaluated. The quantitative analysis of energy requirements and $CO_2$ emission for production of A7003 extruded bar are estimated with different Mg content and billet pre-heating process (heating source by light oil or LPG). In particular, the estimation of energy requirements was performed within shipping and gating range (except the mining and extraction stages)to investigate the influence of the variables on energy requirements and $CO_2$ emission in detail. As Mg content increased, the flow stress and the extrusion pressure for A7003 alloy increased. It has been thought that an increment in extrusion pressure with increasing Mg content is caused by the solid solution hardening of Mg atoms in the matrix and increment in volume fraction of intermetallic compound, $Mg_2Si$. The extrudability and the tensile strength are equal to, or above that of conventional A 7003 alloy even the content of Mg varied from $1.1wt.\%\;to\;0.5wt.\%$ alloy. This means that minimizing the content of Mg in A7003 alloy can enhance recovery efficiency during Al scrap recycling. It can be quoted that rather than Mg content energy source for billet heating is a prime factor to determine the atmospheric $CO_2$ emission.

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쌀 생산체계에 대한 영농방법별 전과정평가: 관행농, 무농약, 유기농법별 탄소배출량 비교 (Life Cylcle Assessment (LCA) on Rice Production Systems: Comparison of Greenhouse Gases (GHGs) Emission on Conventional, Without Agricultural Chemical and Organic Farming)

  • 유종희;권영립;김건엽;이종식;김계훈;소규호
    • 한국토양비료학회지
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    • 제45권6호
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    • pp.1157-1163
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    • 2012
  • 2011년 전북 군산과 익산 지역의 관행농, 무농약, 유기농 농가를 대상으로 영농방법별로 쌀 생산 과정 중 투입 배출되는 물질 목록을 면접조사하여 전과정평가를 수행하고 쌀 생산체계에 대한 영농방법별 환경영향을 평가하고 탄소배출량을 비교 분석하였다. 전과정 목록분석 결과 $CO_2$ 배출은 화학비료 생산과 벼 재배단계에서 가장 많았고, $CH_4$$N_2O$ 배출은 대부분 벼 재배 중에 발생되었다. 쌀 (조곡) 1 kg 생산을 기준으로 하는 탄소성적은 관행농이 1.01E+00 $CO_2$-eq. $kg^{-1}$로 가장 높았고, 무농약이 5.37E-01 $CO_2$-eq. $kg^{-1}$, 유기농법이 6.58E-01 $CO_2$-eq. $kg^{-1}$였다. 농자재 투입량이 가장 적었던 무농약 쌀 생산에서 탄소성적이 가장 낮았고, 생산량은 가장 적었지만 복비투입이 없었던 유기농이 관행농보다 탄소성적이 낮았다. 관행농과 무농약 쌀 생산체계에서 온실가스 배출 주요 요인은 복비생산과 벼 재배 중 $CH_4$ 발생이었고, 유기농에서는 벼 재배 중 농기계 연료사용과 논토양 $CH_4$ 발생이었다. 그러므로 온실가스 감축을 위한 영농방법 활용으로 복합비료 적정량 사용을 위한 맞춤형 비료의 권장 및 벼논 물관리에 의한 메탄발생 저감방법 등을 제안하며, 더불어 유기농법에서는 수확량 향상을 위한 생산 효율성 증대와, 벼 재배 단계에서 농기계 연료 효율성 증대 활용에 관한 연구가 요구되었다.

광주시 대기오염물질 배출량 변화추이에 관한 연구 (A study on the air pollutant emission trends in Gwangju)

  • 서광엽;신대윤
    • 환경위생공학
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    • 제24권4호
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    • pp.1-26
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    • 2009
  • We conclude the following with air pollution data measured from city measurement net administered and managed in Gwangju for the last 7 years from January in 2001 to December in 2007. In addition, some major statistics governed by Gwangju city and data administered by Gwangju as national official statistics obtained by estimating the amount of national air pollutant emission from National Institute of Environmental Research were used. The results are as follows ; 1. The distribution by main managements of air emission factory is the following ; Gwangju City Hall(67.8%) > Gwangsan District Office(13.6%) > Buk District Office(9.8%) > Seo District Office(5.5%) > Nam District Office(3.0%) > Dong District Office(0.3%) and the distribution by districts of air emission factory ; Buk District(32.8%) > Gwangsan District(22.4%) > Seo District(21.8%) > Nam District(14.9%) > Dong District(8.1%). That by types(Year 2004~2007 average) is also following ; Type 5(45.2%) > Type 4(40.7%) > Type 3(8.6%) > Type 2(3.2%) > Type 1(2.2%) and the most of them are small size of factory, Type 4 and 5. 2. The distribution by districts of the number of car registrations is the following ; Buk District(32.8%) > Gwangsan District(22.4%) > Seo District(21.8%) > Nam District(14.9%) > Dong District(8.1%) and the distribution by use of car fuel in 2001 ; Gasoline(56.3%) > Diesel(30.3%) > LPG(13.4%) > etc.(0.2%). In 2007, there was no ranking change ; Gasoline(47.8%) > Diesel(35.6%) > LPG(16.2%) >etc.(0.4%). The number of gasoline cars increased slightly, but that of diesel and LPG cars increased remarkably. 3. The distribution by items of the amount of air pollutant emission in Gwangju is the following; CO(36.7%) > NOx(32.7%) > VOC(26.7%) > SOx(2.3%) > PM-10(1.5%). The amount of CO and NOx, which are generally generated from cars, is very large percentage among them. 4. The distribution by mean of air pollutant emission(SOx, NOx, CO, VOC, PM-10) of each county for 5 years(2001~2005) is the following ; Buk District(31.0%) > Gwangsan District(28.2%) > Seo District(20.4%) > Nam District(12.5%) > Dong District(7.9%). The amount of air pollutant emission in Buk District, which has the most population, car registrations, and air pollutant emission businesses, was the highest. On the other hand, that of air pollutant emission in Dong District, which has the least population, car registrations, and air pollutant emission businesses, was the least. 5. The average rates of SOx for 5 years(2001~2005) in Gwangju is the following ; Non industrial combustion(59.5%) > Combustion in manufacturing industry(20.4%) > Road transportation(11.4%) > Non-road transportation(3.8%) > Waste disposal(3.7%) > Production process(1.1%). And the distribution of average amount of SOx emission of each county is shown as Gwangsan District(33.3%) > Buk District(28.0%) > Seo District(19.3%) > Nam District(10.2%) > Dong District(9.1%). 6. The distribution of the amount of NOx emission in Gwangju is shown as Road transportation(59.1%) > Non-road transportation(18.9%) > Non industrial combustion(13.3%) > Combustion in manufacturing industry(6.9%) > Waste disposal(1.6%) > Production process(0.1%). And the distribution of the amount of NOx emission from each county is the following ; Buk District(30.7%) > Gwangsan District(28.8%) > Seo District(20.5%) > Nam District(12.2%) > Dong District(7.8%). 7. The distribution of the amount of carbon monoxide emission in Gwangju is shown as Road transportation(82.0%) > Non industrial combustion(10.6%) > Non-road transportation(5.4%) > Combustion in manufacturing industry(1.7%) > Waste disposal(0.3%). And the distribution of the amount of carbon monoxide emission from each county is the following ; Buk District(33.0%) > Seo District(22.3%) > Gwangsan District(21.3%) > Nam District(14.3%) > Dong District(9.1%). 8. The distribution of the amount of Volatile Organic Compound emission in Gwangju is shown as Solvent utilization(69.5%) > Road transportation(19.8%) > Energy storage & transport(4.4%) > Non-road transportation(2.8%) > Waste disposal(2.4%) > Non industrial combustion(0.5%) > Production process(0.4%) > Combustion in manufacturing industry(0.3%). And the distribution of the amount of Volatile Organic Compound emission from each county is the following ; Gwangsan District(36.8%) > Buk District(28.7%) > Seo District(17.8%) > Nam District(10.4%) > Dong District(6.3%). 9. The distribution of the amount of minute dust emission in Gwangju is shown as Road transportation(76.7%) > Non-road transportation(16.3%) > Non industrial combustion(6.1%) > Combustion in manufacturing industry(0.7%) > Waste disposal(0.2%) > Production process(0.1%). And the distribution of the amount of minute dust emission from each county is the following ; Buk District(32.8%) > Gwangsan District(26.0%) > Seo District(19.5%) > Nam District(13.2%) > Dong District(8.5%). 10. According to the major source of emission of each items, that of oxides of sulfur is Non industrial combustion, heating of residence, business and agriculture and stockbreeding. And that of NOx, carbon monoxide, minute dust is Road transportation, emission of cars and two-wheeled vehicles. Also, that of VOC is Solvent utilization emission facilities due to Solvent utilization. 11. The concentration of sulfurous acid gas has been 0.004ppm since 2001 and there has not been no concentration change year by year. It is considered that the use of sulfurous acid gas is now reaching to the stabilization stage. This is found by the facts that the use of fuel is steadily changing from solid or liquid fuel to low sulfur liquid fuel containing very little amount of sulfur element or gas, so that nearly no change in concentration has been shown regularly. 12. Concerning changes of the concentration of throughout time, the concentration of NO has been shown relatively higher than that of $NO_2$ between 6AM~1PM and the concentration of $NO_2$ higher during the other time. The concentration of NOx(NO, $NO_2$) has been relatively high during weekday evenings. This result shows that there is correlation between the concentration of NOx and car traffics as we can see the Road transportation which accounts for 59.1% among the amount of NOx emission. 13. 49.1~61.2% of PM-10 shows PM-2.5 concerning the relationship between PM-10 and PM-2.5 and PM-2.5 among dust accounts for 45.4%~44.5% of PM-10 during March and April which is the lowest rates. This proves that particles of yellow sand that are bigger than the size $2.5\;{\mu}m$ are sent more than those that are smaller from China. This result shows that particles smaller than $2.5\;{\mu}m$ among dust exist much during July~August and December~January and 76.7% of minute dust is proved to be road transportation in Gwangju.

편백잎추출수의 실내 가습시 휘발성유기화합물 방출 특성 (Emission Characteristics of Volatile Organic Compounds by Humidifier with Using Hinoki Cypress Extracts)

  • 이민;박상범;이상민;이희영;길덕한
    • Journal of the Korean Wood Science and Technology
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    • 제42권6호
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    • pp.747-757
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    • 2014
  • 건축재료와 생활용품으로부터 방출되는 실내공기 오염물질들로 인한 피해가 증가하고 있는 현시점에서 친환경 제품에 대한 관심이 높아지고 있다. 이러한 관심 속에 피톤치드에 대한 효능이 알려지면서 다양한 방법으로 사용되고 있다. 피톤치드를 다량 함유한 편백잎 증류추출수의 가습시 발생하는 휘발성유기화합물의 방출특성을 GC-MS를 이용하여 그 효과를 조사하였다. 편백잎추출수 가습시 115종의 화합물이 검출되었다. 검출된 화합물들은 aromatic compound, terpenoid, alkane, ketone, ester, aldehyde, alcohol, acid, miscellaneous compound류로 분류하였으며 aromatic compound류(13종, 38%)와 terpenoid류(23종, 33%) 화합물이 다른 화합물류에 비해 높은 비율로 검출되었다. Aromatic compound류 경우 편백잎추출수에 의한 추가 화합물은 검출되지 않아 그 영향이 없는 것으로 판단되며, terpenoid류 경우 편백잎추출수 가습시 10% 정도 증가하였고 7종의 화합물이 추가로 검출되었다. 편백잎추출수 가습시 방출된 terpenoid류 화합물들은 항균, 방충, 방부 효력뿐만 아니라 항고혈압성과 항암에 효과가 있는 것으로 알려져 있어 건강에 도움을 줄 것으로 판단된다.

고속도로 터널내부 공기 중 휘발성 유기화합물의 농도 측정 (Measurement of Volatile Organic Compounds Concentrations in the Air of a Highway Tunnel)

  • 백성옥;김영민;황승만
    • 한국대기환경학회지
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    • 제14권1호
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    • pp.73-77
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    • 1998
  • In this study, a total of 10 volatile organic compounds (VOCs) including BTEX were determined in the inside and outside of a highway thnnel in order to evaluate the emission profile of automobile exhaust with respect to the concentrations, relative ratio and correlation coefficient of target analytes. In addition to VOCs, CO $CO_2 and NO_2$ were measured simultaneously. The results of this study indicated that the most abundant compound was toluene followed by benzene and m+p-xylenes, and the correlation coefficients between VOCs except styrene were higher than 0.96. The concentration ratio of toluene, ethylbenzene, xylenes with respect to benzene measured in the inside of tunnel was 1.5, 0.13, 0.74, respectively. Such ratios were found to be very similar to those measured in tunnels in the USA.

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Electrochemical Degradation of Benzoquinone in a Flow through Cell with Carbon Fibers

  • Yoon, Jang-Hee;Yang, Jee-Eun;Shim, Yoon-Bo;Won, Mi-Sook
    • Bulletin of the Korean Chemical Society
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    • 제28권3호
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    • pp.403-407
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    • 2007
  • The anodic degradation of benzoquinone(BQ), a model compound for wastewater treatment was carried out using a home-made flow-through electrochemical cell with carbon fibers. To optimize the controlled current electrolysis condition of an aqueous BQ solution, the experimental variables affecting the degradation of BQ, such as the applying current, pH, reaction time, and flow rate of the BQ solution were examined. The degradation products of the oxidation reaction were identified by High Performance Liquid Chromatography and Inductively Coupled Plasma Atomic Emission Spectrometer. Low molecular weight aliphatic acids, and CO2 were the major products in this experiment. The removal efficiency of BQ from the solution increased with the applying current and time. 99.23% of 1.0 × 10-2 M BQ was degraded to aliphatic acids and CO2 when the applying current is 175 mA in a 12 hr electrolysis.