• Title/Summary/Keyword: 불완전 연소

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수율 계수와 목적 함수의 최적 유가배양에 대한 영향

  • 박성렬;최차용
    • Proceedings of the Korean Society for Applied Microbiology Conference
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    • 1979.10a
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    • pp.244.3-245
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    • 1979
  • 1. 수율계수 함수의 영향 : 유가 배양에 있어서 수율 계수가 제한 기질 농도의 함수일 경우에 대한 연구를 수행하였다. 사용한 수율 계수 함수는 기질 농도에 대하여 선형 함수였으며 목적함수는 중간 대사 물질의 생산량이었다. 1-가) 수율 계수 함수의 기울기가 음의 값으로 적어짐에 따라 제한 기질의 공급속도가 증가되었다. 1-나) 일반적으로 초기의 얼마 동안은 회분 배양에서와 같이 공급 속도가 거의 없었으며 그후 전환점 이후에 가서야 공급 속도가 증가하였다. 1-다) 전환점 이후에서도 처음에는 대부분의 경우에 공급속도가 음의 값으로 부터 시작하여 증가하기 시작하였다. 1-라) 어떤 경우에는 배양 초기부터 공급 속도가 양의 값으로부터 시작하였으나 곧 감소하였다가 다시 증가하는 비 단조형 변화를 보였다. 1-마) 전환점 이후에서 공급 속도가 증가하는 형태에서도 처음에는 선형 증가를 보이다가 나중에 지수적 증가를 보였다. 1-바) 위와 같은 공급 속도의 변화에 따른 발효조 내의 제한 기질 농도의 변화는 초기에는 가능한 최대치를 유지하다가 전환점 이후에는 갑자기 감소하는 형태를 취하였다. 2. 목적 함수의 영향: 목적 함수가 균체량과 생성 중간 대사물질 량의 선형 결합일 때 대하여 연구하였다. 선형 결합 계수로는 균체량과 생성대사 물질의 상대적인 값어치를 취하였다. 2-가) 허용 최대 균체 농도가 제한되어 있는 상황 하에서 생성 대사 물질의 상대적인 값이 증가 할수록 목적 함수가 증가하였다. 2-나)생성대사 물질의 상대적인 값이 증가할수록 전환점의 위치가 줄어들었다. 2-다) 생성대사 물질 상대적 값의 단위 증가에 대한 목적 함수는 균체량을 감안하지 않은 야마네박사의 결과에 수렴하였다. 2-라) 공급 속도는 상대 값이 커질수록 줄어들었다. 2-마) 균체량의 시간에 대한 곡선은 상대값이 증가할수록 감소하고 전형적인 분기점 형태의 변화를 보였다.변이 뚜렷하여 이로 인한 외임파강내의 염증성병변이 뚜렷이 나타나 있으며 와우관의 특히 기저회전에서의 유모세포의 손실이 심한 것으로 보아 중이염으로 인한 골도의 고음역에서의 손실이 발생함을 알 수 있다.A group), vinclozolin, procymidone, tetradifon cypermethrin, 그리고 fenvalerate(B group)에서는 70% 이상의 회수율을 얻었고, 20%의 ethyl acetate/hexane을 사용하여 분석한 경우는 5%나 10%의 ethyl acetate/hexane을 사용하여 분석했을 때보다 좋은 결과를 나타내어 전체 16종의 농약 중 14종에서 75% 이상의 회수율을 얻었으나, alachlor와 bifenthrin은 매우 낮은 회수율을 보여서 ethyl acetate와 hexane의 혼합용매가 이들 두 농약성분의 분석에는 적합하지 않은 용출 용매임을 알 수 있었다.NO_2의$ 급성 중독증상으로서는 눈, 코를 강하게 자극하고 폐충혈, 폐수종, 기관지염, 폐염 등을 일으킨다. 만성 중독시에는 만성폐섬유와 및 폐수종을 일으킨다. (4) $오존(O_3)$ Ozone은 자동차 배기가스에서 나오는 $NO_2$ gas 및 탄화수소와 작용하여, PAN이라는 자극성 물질을 생성시키는 광학적 Smog의 주요소로 알려져 있다. 자극적인 냄새가 있음으로 불쾌감을 주고 비, 인후점막의 전조감과 두통이 오며 폐기능을 저하시키며 더욱 진행되면 폐충혈, 폐수종 등을 일으킨다 (5) Smog에 의한 건강피해 대표적인 것이 1952.12.5~12.8까지 4일간 영국 Lon-don에서 계속된 Smog사건이며, 이 사건으로 말미암아 호흡기질환 사망율이 사건전보다 사건기간 중 혹은 사건후에 5~10배의 증가율을 보였다. 이때 Smog의 주원인은 연료의 불완전 연소에 의한 연기와 이때 발생

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Polycyclic Aromatic Hydrocarbons in Agricultural Waterways in Gyeonggi and Gangwon Provinces, Korea (경기 및 강원지역 농업용수 중 PAHs의 모니터링 연구)

  • Kim, Leesun;Park, Byung-Jun;Lee, Sung-Eun
    • Korean Journal of Environmental Biology
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    • v.34 no.3
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    • pp.216-221
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    • 2016
  • Level and distribution of fourteen polycyclic aromatic hydrocarbons (PAHs) in the agricultural water samples collected in the waterways located in Gyeonggi and Gangwon, Korea were determined for monitoring and risk assessment. A simplified, fast but effective extraction and clean-up methods combined with gas chromatography tandem mass spectrometry (GC-MS/MS) was employed to measure the concentration of the target compounds. The extraction of the analytes of interest in water sample (10 mL) was performed with acetonitrile (10 mL) and the salt. To purify the target PAHs, the clean-up procedure was employed with 2 mL tubes of dispersive solid phase extraction. The optimized method was validated with recoveries, method detection limit (MDL), accuracy and precision. Good recoveries for each PAHs at 10 and $25{\mu}g\;L^{-1}$ were achieved (60 to 110%, with RSD <20%) with linearity (>0.99). MDL for all the analytes was achieved with $0.2{\mu}g\;L^{-1}$. GC-MS/MS results showed that concentration of phenanthrene in the water samples from Gyeonggi (20 sites) ranged from 0.82 to $2.56{\mu}g\;L^{-1}$ and from Gangwon (15 sites) ranged from 0.83 to $1.62{\mu}g\;L^{-1}$. Other PAHs were not found in the water samples but the continuous monitoring for these areas were required.

Monitoring on Benzo(a)pyrene Content in Oriental medicine (유통 한약재 중 벤조피렌 함유량에 관한 모니터링)

  • Lee, Mi-Yeong;Jung, Sang-Mi;Lee, Gye-Won
    • Journal of Digital Convergence
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    • v.10 no.7
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    • pp.201-206
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    • 2012
  • Benzo(a)pyrene is a polycyclic aromatic hydrocarbons (PAHs) whose metabolites are mutagenic and highly carcinogenic and is listed as a Group 1 carcinogen by the IARC. It has been found at variable concentrations in several foods and is associated with several factors during the process including contaminated raw materials, exposure of environment, and procedure of process or cooking. In this study, benzo(a)pyrene in 45 oriental medicines were determined by HPLC/FLD. The calibration curves of benzo(a)pyrene was linear over the concentration range of 0.5~40 ng/mL with correlation coefficient of above 0.999. The limit of detection (LOD) and limit of quantitation (LOQ) of benzo(a)pyrene were 0.04 and 0.10 ${\mu}g/kg$. Benzo(a)pyrene in 3 samples out of 45 samples was not detected. The level of benzo(a)pyrene in 26 (57.7%), 8 (17.8%) and 7 (15.6%) samples was 0.1~0.5, 0.5~1.0 and 1.0~5.0 ${\mu}g/kg$, respectively. Especially, content of benzo(a)pyrene in Coptis Rhizome is the highest (5.97 ${\mu}g/kg$). In conclusion, these results suggest that could be applied to fundamental study and guideline on drying condition to decrease content of benzo(a)pyrene in oriental medicine.

Effect of CNG Heating Value Variations on Emissions Characteristics in a Diesel-CNG Dual-Fuel Engine (CNG 발열량 변화가 Diesel-천연가스 혼소엔진 배기 특성에 미치는 영향)

  • Jang, Hyongjun;Yoon, Junkyu;Lee, Sunyoup;Kim, Yongrae;Kim, Junghwan;Kim, Changgi
    • Journal of the Korean Institute of Gas
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    • v.20 no.6
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    • pp.43-49
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    • 2016
  • In this paper, purpose of study is emissions characteristics according to effects of heating value variations of CNG fuel in a dual-fuel engine fueled by diesel and natural gas. For heating value variation of CNG fuel, nitrogen gas was mixed with pure CNG fuel. So the higher heating value was changed from $10,400kcal/Nm^3$ to $9,400kcal/Nm^3$. Under one condition of CNG substitution rate was fixed at 80%, diesel fuel was injected at a fixed injection timing of 16 CAD BTDC and fuel pressure was also fixed at 110 MPa. The condition of tested engine was 1800 rpm and 500Nm. Emissions were sampled in exhaust pipe was located at downstream turbocharger. As a result, emissions characteristics were checked in heating value variations of CNG fuel with mixed nitrogen gas THC, $CH_4$ and CO emissions decreased and NOx and $CO_2$ increased.

Air Pollution and Its Effects on E.N.T. Field (대기오염과 이비인후과)

  • 박인용
    • Proceedings of the KOR-BRONCHOESO Conference
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    • 1972.03a
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    • pp.6-7
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    • 1972
  • The air pollutants can be classified into the irritant gas and the asphixation gas, and the irritant gas is closely related to the otorhinolaryngological diseases. The common irritant gases are nitrogen oxides, sulfur oxides, hydrogen carbon compounds, and the potent and irritating PAN (peroxy acyl nitrate) which is secondarily liberated from photosynthesis. Those gases adhers to the mucous membrane to result in ulceration and secondary infection due to their potent oxidizing power. 1. Sulfur dioxide gas Sulfur dioxide gas has the typical characteristics of the air pollutants. Because of its high solubility it gets easily absorbed in the respiratory tract, when the symptoms and signs by irritation become manifested initially and later the resistance in the respiratory tract brings central about pulmonary edema and respiratory paralysis of origin. Chronic exposure to the gas leads to rhinitis, pharyngitis, laryngitis, and olfactory or gustatory disturbances. 2. Carbon monoxide Toxicity of carbon monoxide is due to its deprivation of the oxygen carrying capacity of the hemoglobin. The degree of the carbon monoxide intoxication varies according to its concentration and the duration of inhalation. It starts with headache, vertigo, nausea, vomiting and tinnitus, which can progress to respiratory difficulty, muscular laxity, syncope, and coma leading to death. 3. Nitrogen dioxide Nitrogen dioxide causes respiratory disturbances by formation of methemoglobin. In acute poisoning, it can cause pulmonary congestion, pulmonary edema, bronchitis, and pneumonia due to its strong irritation on the eyes and the nose. In chronic poisoning, it causes chronic pulmonary fibrosis and pulmonary edema. 4. Ozone It has offending irritating odor, and causes dryness of na sopharyngolaryngeal mucosa, headache and depressed pulmonary function which may eventually lead to pulmonary congestion or edema. 5. Smog The most outstanding incident of the smog occurred in London from December 5 through 8, 1952, because of which the mortality of the respiratory diseases increased fourfold. The smog was thought to be due to the smoke produced by incomplete combustion and its byproduct the sulfur oxides, and the dust was thought to play the secondary role. In new sense, hazardous is the photochemical smog which is produced by combination of light energy and the hydrocarbons and oxidant in the air. The Yonsei University Institute for Environmental :pollution Research launched a project to determine the relationship between the pollution and the medical, ophthalmological and rhinopharyngological disorders. The students (469) of the "S" Technical School in the most heavily polluted area in Pusan (Uham Dong district) were compared with those (345) of "K" High School in the less polluted area. The investigated group had those with subjective symptoms twice as much as the control group, 22.6% (106) in investigated group and 11.3% (39) in the control group. Among those symptomatic students of the investigated group. There were 29 with respiratory symptoms (29%), 22 with eye symptoms (21%), 50 with stuffy nose and rhinorrhea (47%), and 5 with sore thorat (5%), which revealed that more than half the students (52%) had subjective symptoms of the rhinopharyngological aspects. Physical examination revealed that the investigated group had more number of students with signs than those of the control group by 10%, 180 (38.4%) versus 99 (28.8%). Among the preceding 180 students of the investigated group, there were 8 with eye diseases (44%), 1 with respiratory disease (0.6%), 97 with rhinitis (54%), and 74 with pharyngotonsillitis (41%) which means that 95% of them had rharygoical diseases. The preceding data revealed that the otolaryngological diseases are conspicuously outnumbered in the heavily polluted area, and that there must be very close relationship between the air pollution and the otolaryngological diseases, and the anti-pollution measure is urgently needed.

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The Impacts of Barley Straw Burning Having Different Moisture Contents and Harvesting Timing on Air Pollutant Emission (보릿짚의 수분함량 및 수확시기가 소각시 대기오염물질 발생에 미치는 영향)

  • Ko, Jee-Yeon;Kang, Hang-Won;Lee, Jae-Sang;Kim, Chun-Song;Park, Seong-Tae;Kim, Bok-Jin
    • Korean Journal of Environmental Agriculture
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    • v.23 no.2
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    • pp.99-103
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    • 2004
  • This study was carried out to determine impacts of burning of barley straw produced from rice-barley double cropping paddy field on air quality by investigating emissions of greenhouse gases ($CO_2$, $CH_4$ and $N_2O$), air pollution gases (CO, $SO_2$, $H_2S$, $NH_3$ and NO) and particulate matters (PM 10 and PM 2.5). When the barley straw at a rate of 4.5 t/ha was burned at open status, the emitted GHGs amounts were $CO_2$ 376.8 kg/l0a, $CH_4$ 1.56 and $N_2O$ 0.06. The amount of CO emission was the largest among air pollution gases. These results showed that the range of $45{\sim}55%$ of total C in barley straw was emitted as $CO_2-C$, followed by CO-C ($6.4{\sim}5.9%$) and $CH_4-C$ ($0.5{\sim}0.7%$). As far as moisture content in barley straw is concerned, the higher moisture content that the barley straw contains, the larger amount of air pollution gases and the higher portion of PM 2.5 in PM 10 were emitted when it burned. In case of harvesting time of barley straw, emission amounts of greenhouse, air pollution gases and PM 2.5 portion in PM 10 had tendency to increase when earlier harvested barley straw was burned.

A Case Study to Estimate the Greenhouse-Gas Mitigation Potential on Conventional Rice Production System

  • Ryu, Jong-Hee;Lee, Jong-Sik;Kim, Kye-Hoon;Kim, Gun-Yeob;Choi, Eun-Jung
    • Korean Journal of Soil Science and Fertilizer
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    • v.46 no.6
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    • pp.502-509
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    • 2013
  • To estimate greenhouse gas (GHG) emission, we established inventory of conventional rice cultivation from farmers in Gunsan and Iksan, Jeonbuk province in 2011~2012. This study was to calculate carbon footprint and to analyse the major factor of GHGs. We carried out a sensitivity analysis using the analyzed main factors of GHGs and estimated the mitigation potential of GHGs. Also we tried to suggest agricultural methods to reduce GHGs that farmers of this case study can apply. Carbon footprint of rice production unit of 1 kg was 2.21 kg $CO_2.-eq.kg^{-1}$. Although amount of $CO_2$ emissions is largest among GHGs, methane had the highest contribution of carbon footprint on rice production system after methane was converted to carbon dioxide equivalent ($CO_2$-eq.) multiplied by the global warming potential (GWP). Source of $CO_2$ in the cultivation of rice farming is incomplete combustion of fossil fuels used by agricultural machinery. Most of the $CH_4$ emitted during rice cultivation and major factor of $CH_4$ emission is flooded paddy field in anaerobic condition. Most of the $N_2O$ emitted from rice cultivation process and major sources of $N_2O$ emission is application of fertilizer such as compound fertilizer, urea, orgainc fertilizer, etc. As a result of sensitivity analysis due to the variation in energy consumption, diesel had the highest sensitivity among the energies inputs. If diesel consumption is reduced by 10%, it could be estimated that $CO_2$ potential reduction is about 2.5%. When application rate of compound fertilizer reduces by 10%, the potential reduction is calculated to be approximately 1% for $CO_2$ and approximately 1.8% for $N_2O$. When drainage duration is decreased until 10 days, methane emissions is reduced by approximately 4.5%. That is to say drainage days, tillage, and reducing diesel consumption were the main sources having the largest effect of GHG reduction due to changing amount of inputs. Accordingly, proposed methods to decrease GHG emissions were no-tillage, midsummer drainage, etc.

Exposure Assessment for Polycyclic Aromatic Hydrocarbons in the Model Menu System of Korean (한국인의 모델식이에 대한 다환방향족탄화수소류(PAHs)의 인체노출량평가)

  • Kim YunHee;Yoon EunKyung;Lee HyoMin;Park KyungAh;Jun EunAh;Lee CherlHo;Choi SangYun;Lim SeungTaek;Ze KeumRyun;Choi KwangSik
    • Journal of Food Hygiene and Safety
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    • v.19 no.4
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    • pp.176-184
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    • 2004
  • This study was conducted to compare and estimate the daily PAHs dietary intake from both home-cooking and dining-out, through approach of model diet used in exposure assessment of food contaminants. Food commodities reflecting in model diet were selected from the KHIDI report and were analysed in cooked or uncooked edible forms using HPLC-Fluorscence Detector. The PAHs dietary intake comparison between home-cooking and dining-out was based on one meal intake suggested in model diet and PAHs dietary intake was estimated by using food consumption rate and body weight of the Korean adult group. The daily PAHs dietary intake was calculated by permutation and combination method with assumption that a person consumed 2 meals from home-cooking menu and 1 meal from dining-out menu. The total PAHs levels in 36 food commodities with 200 samples were ranged from 2.00 ug/kg to 141.28 ug/kg and a food showing the highest PAHs level was the stir-fried anchovy. The $TEQ_{BaP}$ levels of PAHs were calculated using benzo(a)pyrene equivalents individual congener level and corresponding TEF value and the $TEQ_{BaP}$ level were ranged from $0.03\;ugTEQ{BaP}$ to $1.31\;ugTEQ_{BaP}$ and a food showing the highest $TEQ_{BaP}$ level was the hamburger. The PAHs dietary intakes per one meal from home-cooking and dining-out were $2.4\times10^{-3}\;ugTEQ_{BaP}/kg/meal\;and\;4.0\times10^{-3}\;ugTEQ_{BaP}/kg/meal$, respectively. This data showed the PAHs dietary intake from dining-out was about 1.7 times higher than from the home-cooking. The daily PAHs dietary intakes of general Korean adult having two meals from home-cooking and one meal from dining-out per a day were ranged between $8.0\times10^{-3}\~9.7\times10^{-3}\;ugTEQ_{BaP}/gg/day$ and mean value as $8.9\times10^{-3}\~9.7\times10^{-3}\;ugTEQ_{BaP}/gg/day$.

Optimization of DME Reforming using Steam Plasma (수증기 플라즈마를 이용한 DME 개질의 최적화 방안 연구)

  • Jung, Kyeongsoo;Chae, U-Ri;Chae, Ho Keun;Chung, Myeong-Sug;Lee, Joo-Yeoun
    • Journal of Korea Society of Industrial Information Systems
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    • v.24 no.5
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    • pp.9-16
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    • 2019
  • In today's global energy market, the importance of green energy is emerging. Hydrogen energy is the future clean energy source and one of the pollution-free energy sources. In particular, the fuel cell method using hydrogen enhances the flexibility of renewable energy and enables energy storage and conversion for a long time. Therefore, it is considered to be a solution that can solve environmental problems caused by the use of fossil resources and energy problems caused by exhaustion of resources simultaneously. The purpose of this study is to efficiently produce hydrogen using plasma, and to study the optimization of DME reforming by checking the reforming reaction and yield according to temperature. The research method uses a 2.45 GHz electromagnetic plasma torch to produce hydrogen by reforming DME(Di Methyl Ether), a clean fuel. Gasification analysis was performed under low temperature conditions ($T3=1100^{\circ}C$), low temperature peroxygen conditions ($T3=1100^{\circ}C$), and high temperature conditions ($T3=1376^{\circ}C$). The low temperature gasification analysis showed that methane is generated due to unstable reforming reaction near $1100^{\circ}C$. The low temperature peroxygen gasification analysis showed less hydrogen but more carbon dioxide than the low temperature gasification analysis. Gasification analysis at high temperature indicated that methane was generated from about $1150^{\circ}C$, but it was not generated above $1200^{\circ}C$. In conclusion, the higher the temperature during the reforming reaction, the higher the proportion of hydrogen, but the higher the proportion of CO. However, it was confirmed that the problem of heat loss and reforming occurred due to the structural problem of the gasifier. In future developments, there is a need to reduce incomplete combustion by improving gasifiers to obtain high yields of hydrogen and to reduce the generation of gases such as carbon monoxide and methane. The optimization plan to produce hydrogen by steam plasma reforming of DME proposed in this study is expected to make a meaningful contribution to producing eco-friendly and renewable energy in the future.