• 제목/요약/키워드: negative emission

검색결과 327건 처리시간 0.028초

전자방사식 고압 저전력 방전을 이용한 OH radical 발생기의 개발과 성능 평가 (Development and Performance Evaluation of Hydroxyl Radical Generator using Electron Emission Type High Voltage and Low Current Discharger)

  • 강형섭;홍영표;이인호;김기범
    • 한국산학기술학회논문지
    • /
    • 제18권6호
    • /
    • pp.558-566
    • /
    • 2017
  • 본 연구는 MOSFET을 이용하여 안정적인 구형파를 구현함과 동시에 순간적인 전류의 상승을 최대한 줄여 전체 회로의 안정성 이 확보된 폐수처리용 전자방사식 OH radical generator를 개발하고자 하였다. 이와 같은 문제를 해결하고 안정성이 확보된 전자방사식 고압 저전력 방전을 이용한 폐수처리용 전자방사식 OH radical generator를 개발하고 그 성능을 평가하고자 하였다. 실험은 2016년 11월부터 2017년 3월까지 실시하였다. 그 결과 AC 체배 변환기의 입력 단에 연결되는 Power MOSFET의 drain 전류는 CR-스너버 구조의 부궤환(negative feedback) 회로를 통해 안정적이고 일정한 펄스 파형을 제공할 수 있었으며 AC 체배 변환기의 여기 전류(excitation current) 감소 및 발진 회로의 안정성을 상승시킬 수 있었다. 또한 이와 같은 회로를 갖는 전자방사식 OH radical generator에서 OH radical을 안정정적으로 발생시킬 수 있었다. 또한 살균능을 평가한 결과, E. coli, S. aureus와 S. flexneri는 60분 후 최대 99.9%이상의 살균력을 보였다. 본 연구 결과를 기반으로, MOSFET을 이용하여 안정적인 구형파를 구현함과 동시에 순간적인 전류의 상승을 최대한 줄여 전체 회로의 안정성이 확보된 살균능이 우수한 폐수처리용 전자방사식 OH radical generator를 개발하였다.

악성 연부조직 종양에 대한 무계획적 절제술 후 잔여 종양의 영상학적 진단의 정확성과 임상적 위험인자 (Diagnostic Accuracy of Imaging Study and the Impact of Clinical Risk Factors on the Presence of Residual Tumor Following Unplanned Excision of Soft Tissue Sarcomas)

  • 오은선;서성욱;정정환
    • 대한정형외과학회지
    • /
    • 제54권2호
    • /
    • pp.150-156
    • /
    • 2019
  • 목적: 악성 연부조직 종양에 대한 무계획적 절제술 후 잔여 종양의 영상학적 진단의 정확성과 임상적 위험인자를 파악하고자 하였다. 대상 및 방법: 2008년부터 2014년까지 무계획적 종양절제술을 시행 후 재절제술을 받은 98명을 대상으로 하여 분석하였다. 재수술 전 모든 환자의 환부를 조영 증강 자기공명영상(magnetic resonance imaging, MRI)을 이용해 영상의학적으로 평가하였으며 54명의 환자는 전신 양전자 방출 단층촬영(positron emission tomography [PET]/computed tomography)을 시행하였다. 모든 환자는 광범위 절제술 후 병리학적 검사를 시행하였다. 각 변수는 일변량 로지스틱 회귀와 다변량 로지스틱 회귀를 이용하여 분석하였다. 결과: 종양이 근막하에 위치한 경우 잔여 종양의 발생률이 높았다(odds ratio: 3.21, p=0.02, 95% confidence interval: 1.25-8.30). MRI는 잔여종양을 발견하는 데 높은 민감도를 보였다(sensitivity 0.79). 결론: 종양이 근막하에 위치한 경우에는 근막 상부에 위치한 경우보다 잔존암이 남을 가능성이 유의하게 높음을 알 수 있었고, MRI 및 PET 검사의 음성예측도가 매우 낮으므로 음성 판정이 나오더라도 이를 근거로 재수술을 시행하지 않는 것은 정당화될 수 없음을 알 수 있었다.

COMBUSTION VISUALIZATION AND EMISSIONS OF A DIRECT INJECTION COMPRESSION IGNITION ENGINE FUELED WITH BIO-DIESOHOL

  • LU X.;HUANG Z.;ZHANG W.;LI D.
    • International Journal of Automotive Technology
    • /
    • 제6권1호
    • /
    • pp.15-21
    • /
    • 2005
  • The purpose of this paper is to experimentally investigate the engine pollutant emissions and combustion characteristics of diesel engine fueled with ethanol-diesel blended fuel (bio-diesohol). The experiments were performed on a single-cylinder DI diesel engine. Two blend fuels were consisted of $15\%$ ethanol, $83.5\%$ diesel and $1.5\%$ solublizer (by volume) were evaluated: one without cetane improver (E15-D) and one with a cetane improver (E15-D+CN improver). The engine performance parameters and emissions including fuel consumption, exhaust temperature, lubricating oil temperature, Bosch smoke number, CO, NOx, and THC were measured, and compared to the baseline diesel fuel. In order to gain insight into the combustion characteristics of bio-diesohol blends, the engine combustion processes for blended fuels and diesel fuel were observed using an Engine Video System (AVL 513). The results showed that the brake specific fuel consumption (BSFC) increased at overall engine operating conditions, but it is worth noting that the brake thermal efficiency (BTE) increased by up to $1-2.3\%$ with two blends when compared to diesel fuel. It is found that the engine fueled with ethanol-diesel blend fuels has higher emissions of THC, lower emissions of CO, NOx, and smoke. And the results also indicated that the cetane improver has positive effects on CO and NOx emissions, but negative effect on THC emission. Based on engine combustion visualization, it is found that ignition delay increased, combustion duration and the luminosity of flame decreased for the diesohol blends. The combustion is improved when the CN improver was added to the blend fuel.

Performance of a Biofilter for Odor Removal during Manure Composting

  • Park, K.J.;Hong, J.H.;Choi, M.H.
    • Agricultural and Biosystems Engineering
    • /
    • 제3권2호
    • /
    • pp.59-64
    • /
    • 2002
  • Odor generated during composting of livestock manure is mainly due to ammonia emission. Biofiltration is a desirable method to control composting odor. This study was conducted to analyze the efficiency of using fresh compost as a biofilter. A mixture of cattle manure and recycled compost was composted in a bin equipped with a suction-type blower. The exhaust gas was filtered through the fresh compost. Residence time was controlled by the flow rate of exhaust gas and the depth of filtering materials. At the aeration rate of 30 L/min(experiment I), ammonia reduction rate varied from 100% to -15% for biofilter A(residence time 56.5 s) and almost 100% for biofilter B(residence time 113 s). At the aeration rate of 30 L/min, the cumulative ammonia reduction rate was 80.5% for biofilter A and 99.9% for biofilter B. At the aeration rate of 50 L/min(experiment II), the lowest reduction rate showed a negative value of -350% on the 8th and 9th day for biofilter A(residence time 33.9 5), and 50% on the loth day for biofilter B(residence time 67.8s). At the aeration rate of 50 L/min, the cumulative ammonia reduction rate was 82.5% fur biofilter A and 97.4% for biofilter B. Filtering efficiency was influenced by residence time. The moisture content(MC) and total nitrogen(T-N) of the filtering material were increased by absorbing moisture and ammonia included in the exhaust gas, while pH was decreased and total carbon(T-C) remained unchanged during the filtering operation.

  • PDF

RCP 기후변화 시나리오에 따른 우리나라 구상나무 잠재 분포 변화 예측 (Projecting the Potential Distribution of Abies koreana in Korea Under the Climate Change Based on RCP Scenarios)

  • 구경아;김재욱;공우석;정휘철;김근한
    • 한국환경복원기술학회지
    • /
    • 제19권6호
    • /
    • pp.19-30
    • /
    • 2016
  • The projection of climate-related range shift is critical information for conservation planning of Korean fir (Abies koreana E. H. Wilson). We first modeled the distribution of Korean fir under current climate condition using five single-model species distribution models (SDMs) and the pre-evaluation weighted ensemble method and then predicted the distributions under future climate conditions projected with HadGEM2-AO under four $CO_2$ emission scenarios, the Representative Concentration Pathways (RCP) 2.6, 4.5, 6.0 and 8.5. We also investigated the predictive uncertainty stemming from five individual algorithms and four $CO_2$ emission scenarios for better interpretation of SDM projections. Five individual algorithms were Generalized linear model (GLM), Generalized additive model (GAM), Multivariate adaptive regression splines (MARS), Generalized boosted model (GBM) and Random forest (RF). The results showed high variations of model performances among individual SDMs and the wide range of diverging predictions of future distributions of Korean fir in response to RCPs. The ensemble model presented the highest predictive accuracy (TSS = 0.97, AUC = 0.99) and predicted that the climate habitat suitability of Korean fir would increase under climate changes. Accordingly, the fir distribution could expand under future climate conditions. Increasing precipitation may account for increases in the distribution of Korean fir. Increasing precipitation compensates the negative effects of increasing temperature. However, the future distribution of Korean fir is also affected by other ecological processes, such as interactions with co-existing species, adaptation and dispersal limitation, and other environmental factors, such as extreme weather events and land-use changes. Therefore, we need further ecological research and to develop mechanistic and process-based distribution models for improving the predictive accuracy.

Integrated Environment Impact Assessment of Brick Kiln using Environmental Performance Scores

  • Pokhrel, Rajib;Lee, Heekwan
    • Asian Journal of Atmospheric Environment
    • /
    • 제8권1호
    • /
    • pp.15-24
    • /
    • 2014
  • The capital city of Himalayan Country Nepal, Kathmandu Valley is surrounded by consecutive high mountains, which limits the air distribution and mixing effects significantly. It in turn generates steady air flow pattern over a year except in monsoon season. The air shed in the Valley is easily trapped by the surrounded mountains and the inversion layer formulated as the cap. The $PM_{10}$ concentration was noticeably higher than the standard level (120 ${\mu}g/m^3$) in urban and suburban area of Kathmandu valley for all seasons except monsoon period. The Valley area experiences similar wind patterns (W, WWS, and S) for a year but the Easterly wind prevails only during the monsoon period. There was low and calm wind blows during the winter season. Because of this air flow structure, the air emission from various sources is accumulated within the valley air, high level of air pollution is frequently recorded with other air polluted cities over the world. In this Valley area, brick kilns are recognized as the major air pollution source followed by vehicles. Mostly Bull Trench Kiln (BKT), Hoffman Kiln and Vertical Shaft Brick Kiln (VSBK) are in operation for brick firing in Kathmandu valley where the fuels such as crushed coal, saw dust, and natural gas are used for processing bricks in this study. Tool for the Reduction and Assessment of Chemical and Other Environmental Impacts (TRACI) was used for screening and quantifying the potential impacts of air emission from firing fuels. The total Environmental Performance Score (EPS) was estimated and the EPS of coal was approximately 2.5 times higher than those of natural gas and saw dust. It is concluded that the crushed coal has more negative impact to the environment and human health than other fuel sources. Concerning the human health and environment point of view, alternative environment friendly firing fuel need to be used for brick industry in the kiln and the air pollution control devices also need to be applied for minimizing the air emissions from the kilns.

온대지역 부영양 저수지의 이산화탄소 배출량 산정 (Estimation of CO2 Emission from a Eutrophic Reservoir in Temperate Region)

  • 정세웅;유지수;박형석
    • 한국물환경학회지
    • /
    • 제32권5호
    • /
    • pp.433-441
    • /
    • 2016
  • Many large dams have been constructed for water supply, irrigation, flood control and hydropower in Korea for the last century. Meanwhile, recent studies indicated that the artificial reservoirs impounded by these dams are major sources of carbon dioxide (CO2) to the atmosphere and relevant to global budget of green house gases. However, limited information is available on the seasonal variations of CO2 evasion from the reservoirs located in the temperate monsoon regions including Korea. The objectives of this study were to estimate daily Net Atmospheric Flux (NAF) of CO2 in Daecheong Reservoir located in Geum River basin of Korea, and analyze the influencing parameters that characterize the variation of NAF. Daily pH and alkalinity (Alk) data collected in wet year (2012) and dry year (2013) were used for estimating the NAFs in the reservoir. The dissolved inorganic carbon (DIC) was computed using the pH and Alk measurements supposing an equilibrium state among the carbonate species. The results showed seasonal variations of NAF; negative NAFs from May to October when the primary production of the reservoir increased with water temperature increase, while positive NAF for the rest of the period. Overall the reservoir acted as sources of CO2 to the atmosphere. The estimated NAFs were 2,590 and 771 mg CO2 m-2d-1 in 2012 and 2013, respectively, indicating that the NAFs vary a large extent for different hydrological years. Statistical analysis indicated that the NAFs are negatively correlated to pH, water temperature, and Chl-a concentration of the reservoir.

HDDM과 BFM을 이용한 NOx와 VOC 배출량에 대한 오존민감도계수 산정 및 결과 비교: 2007년 6월 수도권 사례 (Estimating Ozone Sensitivity Coefficients to NOx and VOC Emissions Using BFM and HDDM for A 2007 June Episode)

  • 김순태
    • 한국환경과학회지
    • /
    • 제20권11호
    • /
    • pp.1465-1481
    • /
    • 2011
  • The accuracy of ozone sensitivity coefficients estimated with HDDM (High-order Decoupled Direct Method) can vary depending on the $NO_x$ (Nitrogen Oxides) and VOC (Volatile Organic Compound) conditions. In order to evaluate the applicability of HDDM over the Seoul Metropolitan Area (SMA) during a high ozone episode in 2007 June, we compare BFM (Brute Force Method) and HDDM in terms of the $1^{st}$-order ozone sensitivity coefficient to explain ozone change in response to changes in NOx and VOC emissions, and the $2^{nd}$-order ozone sensitivity coefficient to represent nonlinear response of ozone to the emission changes. BFM and HDDM estimate comparable ozone sensitivity coefficients, exhibiting similar spatial and temporal variations over the SMAduring the episode. NME (Normalized Mean Error) between BFM and HDDM for the episode average $1^{st}$- and $2^{nd}$-order ozone sensitivity coefficients to NOx and VOC emissions are less than 3% and 9%, respectively. For the daily comparison, NME for the $1^{st}$- and $2^{nd}$-order ozone sensitivity coefficients are less than 4% ($R^2$ > 0.96) and 15% ($R^2$ > 0.90), respectively. Under the emission conditions used in this study, two methods show negative episode average $1^{st}$-order ozone sensitivity coefficient to $NO_x$ emissions over the core SMA. The $2^{nd}$-order ozone sensitivity coefficient to $NO_x$ emissions leads ozone to respond muchnonlinear to the reduction in $NO_x$ emissions over Seoul. Nonlinear ozone response to reduction in VOC emissions is mitigated due to the $2^{nd}$-order ozone sensitivity coefficient which is much smaller than the $1^{st}$-order ozone sensitivity coefficient to the emissions in the magnitude.

플라즈마 화학 증착법에 의한 $Y_2O_3-StabilzedZrO_2$박막의 제조와 Capacitance-Voltage특성 (Preparation and C-V characteristics of $Y_2O_3-StabilzedZrO_2$ Thin Films by PE MO CVD)

  • 최후락;윤순길
    • 한국재료학회지
    • /
    • 제4권5호
    • /
    • pp.510-515
    • /
    • 1994
  • 플라즈마 화학 증착법으로 (100)p-type Si wafer위에 $Y_2O_3$-Stabilzed $ZrO_2$박막을 증착하였다. 반응 기체로는 zirconium triflouracethylacetonate[Zr(tfacac) $[Zr(tfacac)_4]$, tri(2.2.6.6 tetramethy1-3, 5-heptanate) yttrium $[Y(DPM)_3]$과 oxygen gas를 사용하였다. X-ray diffraction(XRD)과 fourier Particle induced x-ray emission(PIXE)을 통하여 $Y(DPM)_3$ bubbling temperature가 $160^{\circ}C, 165^{\circ}C, 170^{\circ}C$일때 $Y_2O_3$함량이 12.1mo1%, 20.4mol%, 31.6mol%임을 알 수 있었다. C-V측정에서 $Y(DPM)_3$ bubbling temperature가 증가함에 따라 flat band voltage가 더욱더 음의 방향으로 이동하였다.

  • PDF

OECD 국가의 온실가스 감축공약(NDC)의 비교 분석을 통한 우리나라 온실가스 감축 목표 평가 (Assessment of Korea's GHG Reduction Targets through Comparative Analysis of OECD Countries' Nationally Determined Contributions (NDCs))

  • 이만희;박선경
    • 한국기후변화학회지
    • /
    • 제8권4호
    • /
    • pp.313-327
    • /
    • 2017
  • Korea has introduced Korea Emissions In 2015, the United Nations Conference on Climate Change (COP21) was held in Paris. The Paris Agreement indicates that all nations are in charge of mitigating climate change. Prior to COP21, 197 Parties submitted the Nationally Determined Contributions (NDCs), which are greenhouse gas reduction targets. On June 30, 2015, Korea also submitted an NDC target of 37% reduction compared to BAU in 2030. However, Korea's NDC was evaluated as "Inadequate" by the Climate Action Tracker (CAT). In addition, the domestic environmental group expressed a negative opinion as well. In view of this situation, it is necessary to conduct an objective assessment of quantitative analysis of NDC goals in Korea. The goal of this study is to evaluate NDC of Korea by comparing with those of OECD member countries. For comparative analysis, data such as population, GDP, primary energy supply affecting GHG emissions were obtained from the OECD homepage. The results indicate that emission reduction goal of 37% of Korea was $4^{th}$ highest goal among OECD member countries. If Korea achieves the emission reduction goal, the greenhouse gas emissions per capita in 2030 are $10^{th}$among OECD member countries. The greenhouse gas emissions per GDP are $13^{th}$, and emissions per TOE are $9^{th}$ among OECD member countries. The results show that greenhouse gas intensity of Korea is relatively high among OECD member countries. Therefore, it is needed to continuously endeavor to reduce greenhouse gas emissions to mitigate the global climate change. This study can be further used as a fundamental document to establish the future greenhouse reduction policy in Korea.