• Title/Summary/Keyword: 소각시설

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원자력시설 발생 가연성 폐기물의 국내외 소각 동향

  • Min, Byeong-Yeon;Yang, Da-Som;Yun, Gyeong-Su;Lee, Gi-Won;Choe, Jong-Won
    • Proceedings of the Korean Radioactive Waste Society Conference
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    • 2015.10a
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    • pp.413-414
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    • 2015
  • 국내 최초로 가연성 해체폐기물 부피감용을 위해 안전하게 시설을 운영하고 있어 소각에 대한 국민인식 재고에 기여할 수 있으며, 우라늄변환시설의 가연성 해체 폐기물 소각을 통해 U 핵종오염 폐기물 소각기술을 확보하여 원자력시설 운영 효율향상, 처분비용 절감 뿐만 아니라 유해물질의 무해화로 최종처분장의 안전성 관리 최적화에 기여하고, 향후 원자력시설의 해체 및 해체 폐기물 처리/처분사업에 기술을 적극 활용할 예정이다.

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A Characteristics of Hg, Pb, As and Se Emitted from Small and Medium Size Waste Incinerator Stacks (중.소형 폐기물 소각시설에서 배출되는 수은, 납, 비소, 셀렌 배출특성)

  • Lee, Han-Kook;Moon, Bu-Shik;Lee, Dong-Hoon
    • Journal of Korean Society of Environmental Engineers
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    • v.27 no.11
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    • pp.1205-1214
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    • 2005
  • This study was carried out to investigate the emission characteristics of volatile metals(Hg, As, Se) and semi volatile metals such as Pb from small and medium size municipal solid waste incinerators(MSWIs). The concentrations of Hg, Pb, As and Se in emission gas from small size waste incinerators were higher than those of medium size waste incinerators. This is probably due to less air pollutant control devices and high emission gas temperature of the small size waste incinerators relative to the medium size waste incinerators. Emission gas temperature from small and medium size waste incinerators were divided into 2 groups. The first group was about $100^{\circ}C$ and the second roup in the range of $400{\sim}700^{\circ}C$. The concentrations of emission gas at the second group were Hg $70.43\;{\mu}g/Sm^3$, Pb $0.94\;{\mu}g/Sm^3$, As $9.83\;{\mu}g/Sm^3$ and Se $5.05\;{\mu}g/Sm^3$. The concentrations of Hg, Pb, As and Se at the first group were lower than those found at the second group. Besides, the removal efficiencies of Hg in medium size waste incinerators were $55.2{\sim}95.9%$. Emission gas temperature reduction from waste heat boiler(WHB) contribute to control of Hg. Based on above results, we postulate that the temperature of flue gas should play a very important role in volatile metal control in small and medium size MSWIs. In order to improve the volatile metals removal efficiency, the temperature of cooling system must be controlled and the air pollution control device should be operated properly.

Environmental impact evaluation and improvement measure of incineration plant by life cycle assessment (전과정평가를 이용한 소각시설의 환경영향평가 및 개선방안)

  • Kim, Hyeong-Woo;Kim, Kyeong-Ho;Park, Hung-Suck
    • Journal of the Korea Organic Resources Recycling Association
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    • v.21 no.4
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    • pp.88-100
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    • 2013
  • This study evaluated the direct and indirect environmental impacts of various unit operations of a industrial waste incineration plant by using the life cycle assessment tool and reviewed the improvement plan. During the incineration process, the direct environmental impact was decreased with decrease in emission of various air pollutants by incorporating an air pollution prevention facilities. However, an increase in indirect environmental impacts was observed as a consequence of resources and energy of consumption at the various operational facilities. Consequently, quantitative direct and indirect impact were 89.1%, 10.9%, respectively. The environmental impact analysis of system revealed the highest impact of incineration followed by the impacts of other unit processes such as semidry reactor, and bag-filter. The various air pollutants and ashes generated during the incineration process caused the most significant environmental impact. Among the various categories of environmental impact, global warming accounted the highest impact(more than 85%) followed by eutrophication, and abiotic depletion. As a result of the avoided impact by the utilization of heat generated during the waste incineration process, using an incineration heat for steam and electricity obtained the impact reduction of 45.5%, 19.8%. So, during siting of new incineration plant, the utilization of steam generated from the waste combustion is highly considered to reduce the environmental impact.

The Development of N2O Emission Factor at Municipal Solid Waste Incinerator (도시고형폐기물 소각시설의 N2O 배출계수 개발)

  • Ko, Jae Churl;Choi, Sang Hyun
    • Clean Technology
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    • v.25 no.1
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    • pp.40-45
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    • 2019
  • In this study, nitrous oxide ($N_2O$) emission concentration was measured 3 times continuously for 24 hours from August 27, 2018 to October 22, 2018 and non-dispersive infrared (NDIR) spectrometer was used to calculate $N_2O$ concentration of exhaust gas from municipal solid waste (MSW) incinerator. As a result of $N_2O$ emission characteristics, it is estimated that $N_2O$ emission concentration is due to the difference of furnace temperature, oxygen concentration rather than the chemical component of waste. The measured $N_2O$ emission concentration of MSW incinerator was obtained in the range of 53.6 ~ 59.5 ppm and the total average concentration was measured 55.6 ppm. Therefore, the amount of $N_2O$ emissions calculated from the $N_2O$ concentration was $98.05kg\;day^{-1}$ on average and the amount of $N_2O$ distribution in the range of $90.41{\sim}108.44kg\;day^{-1}$ was obtained. As a result, the $N_2O$ emission factor of the MSW incinerator was estimated to be $1,066.13g_{N_2O}\;ton_{waste^{-1}}$. The estimated $N_2O$ emission factor of the MSW incinerator was 20 times higher than calculated emission factor used in the Tier 2 method. Consequently, it is considered that the method of calculating the amount of $N_2O$ emission in the MSW incineration facilities using waste type and incineration amount needs to be supplemented to ensure accuracy.

Evaluation of Operation Status for Incineration Facility Using Performance Index (소각시설 이행지표를 활용한 운영 현황 평가)

  • Kim, Jong-Hwan;Park, Joon-Seok;Phae, Chae-Gun
    • Journal of the Korean Applied Science and Technology
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    • v.33 no.3
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    • pp.507-520
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    • 2016
  • This research was performed to evaluate incineration facilities with different scale and type using performance index. Incineration facilities of 28 units, which occupying about 15% of 184 units in nationwide, were selected for questionnaire survey. The facilities were classified in scale with large(${\geq}100t/d$), middle(50~<100 t/d), small(<50 t/d) ones, and in type with stoker, pyrolysis, fluidized bed. Performance index was composed of technological, economical, and environmental items, which have 6, 10, and 30 kinds of questions, respectively. As a result of scale evaluation, large scale facility has higher score than small one in all technological, economical, and environmental items. In overall evaluation of the facilities with different type, stoker incinerator has higher score of 65.3 than 59.0 of fludized bed and 58.3 of pyrolysis. It was shown that there was significant difference in economical evaluation field, in all technological, economical, and environmental items.

Research on Managing Incineration Facility according to Prediction of Change in Amount of Waste (폐기물 발생량 변화 예측에 따른 소각시설 운영에 관한 연구)

  • Ha, Sang An
    • Journal of the Korea Organic Resources Recycling Association
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    • v.20 no.1
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    • pp.23-30
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    • 2012
  • In the state that re-evaluation of calculating optimum amount of incineration in the future is needed, as considering the amount of waste, increase of heat value and change in floating population in each area in city B, the purpose of this research was to predict optimum available capacity in incineration plant and to study alternatives for the amount of disposal in each incineration plant based on the available capacity that was predicted. As a result of predicting the change in population based on progress of population in city B in the past, it is expected that an overall population is decreasing, but in some areas, population is concentrated due to increased apartment complexes, showing similar figures as the present. Moreover, when predicting the amount of waste through forecasting population, it is considered that the amount of waste by decreased population is also decreasing. However, the amount of combustible component among a total amount of waste is expected to increase, so it is predicted that the amount of incineration and combustible component will be reasonable except D incineration plant, Therefore, D incinerating plant showed 72.7% of rate of utilization of incineration facility compared to 59.1% of national rate. However, if shortfall of waste in the future can be used wisely in other areas, the use of renewable energy using burner useless heat can be maximized.

Analysis of Citizen's Attitude to the Incineration (소각장에 대한 시민의식 조사분석)

  • Kim, Joong-Kee;Park, Chang-Hee;Chung, Jae-Chun;Lee, Sung-Taik;Heo, Seok
    • Journal of the Korea Organic Resources Recycling Association
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    • v.4 no.2
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    • pp.87-95
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    • 1996
  • A questionary survey was performed to invetigate the citizen's attitude concerning the waste incineration facility. People disliked most cremetorim followed by waste transfer station, chmical factory, waste incineration facility and sanitary landfill. Most people favored 1km minimum distance of incineration facilities from the residence. Most people think that we need most composting facilities in the future followed by sanitary landfill and incineration facilities. Majority of people was willing to accept the perfect incineration facilities near their residence. However, 37.6% answered no. Most people accepted complusory measures by the goverment in the location of incineration facilites. One incineration facility per one city or Gun was slightly favored than multy-city or Gun incineration facility. People think that perfect thchnology most important to overcome Nimby's.

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Estimation of Greenhouse Gas Emission from Solid Waste Incinerators (폐기물 소각시설에서 발생하는 온실가스 배출량 조사)

  • Jang, Young-Gi;Choi, Sang-Jin;Kim, Gwan;Jeon, Eui-Chan;Kim, Deuk-Su
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 1999.10a
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    • pp.274-276
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    • 1999
  • 지구 기온상승에 영향을 주는 가스는 여러 부문에서 배출되지만, 환경기초시설에서는 소각시설에서 이산화탄소($CO_2$)와 아산화질소($N_2$O), 쓰레기매립지에서 메탄(CH$_4$), 하폐수처리장에서 메탄(CH$_4$)과 아산화질소($N_2$O)가 주로 배출된다. 그러나 우리나라에서는 이 부문의 배출량에 대하여 아직 체계적인 조사가 이루어지지 못하였다. 본 연구의 목적은 우리나라의 폐기물 소각시설에서 발생하는 온실가스 배출량을 산출하는 것이다.(중략)

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Investigation of N2O Emission and Reduction Effect from MSW Incineration Plant (도시고형폐기물 소각시설에서 발생하는 N2O 발생량 조사 및 저감효과에 관한 연구)

  • Song, Hyun-Ok;Ko, Jae-Churl;Choi, Sang-Hyun;Kim, Duk-Hyun
    • Journal of Korean Society of Environmental Engineers
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    • v.39 no.12
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    • pp.672-678
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    • 2017
  • In this study, municipal solid waste (MSW) has collected 3 times and physico-chemical analysis has done. Nitrous oxide emissions from MSW incineration plant were measured continuously by EPA Method 18 and it was compared with the emission by calculation using the emission factor. The $N_2O$ emission of MSW incineration plant was more than twice as large as the emission by calculation. It was found that the installation of abatement facilities in MSW incineration plant is effective in achieving the greenhouse reduction targets and it can be ensure economical efficiency through emission trading system.

이중 백필터 시스템에서 가스상/입자상 다이옥신류의 거동 특성

  • 이종길;서성석;김상윤;라돈섭;차진선;동종인
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2001.11a
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    • pp.429-430
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    • 2001
  • 소각시설에서의 다이옥신류의 거동에 대한 연구는 유입폐기물의 성상이나 운전 조건, 공정 특성 둥에 따라서 영향을 받고, 실험실규모에서의 기초연구가 실규모의 시설에는 조건 및 환경의 차이로 인해 적용될 수 없는 등 자료해석의 일반화를 도모하기가 어려운 경우가 많았다. 따라서, 본 연구는 실제 도시 고형폐기물 소각시설 후단의 배출가스 처리장치를 대상으로 하여 다이옥신류의 거동 특성에 대해 알아보았다. (중략)

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