• 제목/요약/키워드: crude steel cement

검색결과 4건 처리시간 0.017초

폐스티로폼과 조강시멘트를 혼입한 경량기포콘크리트의 특성 (Properties of Lightweight Foamed Concrete with Waste Styrofoam and Crude Steel Cement)

  • 박채울;이상수
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2020년도 봄 학술논문 발표대회
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    • pp.77-78
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    • 2020
  • In Korea, more than 30,000 tons of waste Styrofoam are produced every year. Styrofoam is spent more than 500 years decomposing during the reclamation process, so it needs to be recycled. The recycling rate of waste styrofoam continues to be the third highest in the world, but it is lower than that of Germany and Japan. Therefore, measures are needed to increase the recycling rate of waste Styropol. Another problem is that cement is mainly used in existing lightweight foam concrete. However, large amounts of CO2 from cement-producing processes cause environmental pollution. Currently, Korea is increasing its greenhouse gas reduction targets to cope with energy depletion and climate change, and accelerating efforts to identify and implement reduction measures for each sector. In 2013 alone, about 600 million tons of carbon dioxide was generated in the cement industry. Therefore, this study replaces CO2 generation cement with furnace slag fine powder, uses crude steel cement for initial strength development of bubble concrete, and manufactures hardening materials to study its properties using waste styrofoam. As a result of the experiment, the hardening agent replaced by micro powder of furnace slag was less intense and more prone to absorption than cement using ordinary cement. Further experiments on the segmentation and strength replenishment of furnace slag are believed to contribute to the manufacture of environmentally friendly lightweight foam concrete.

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전기로 제강분진의 재활용과정에서 발생된 Clinker의 전기로에서의 가열용해에 의한 자원화에 관한 연구 (A Study on the Resource Development by Heat Dissolution in Electric Arc Furnace of Clinker generated in the Recycling Process of Electric Arc Furnace Dust)

  • 윤재홍;윤치현;本庄昭郎
    • 열처리공학회지
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    • 제36권1호
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    • pp.22-32
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    • 2023
  • In general, when scrap is dissolved in an electric arc furnace, the amount of electric furnace steel dust (EAFD) generated is about 1.5% of the scrap charge amount, and the electric furnace steel dust collected by the bag filter is charged into the Rotary Kiln or Rotary Hearth Furnace (RHF), and the zinc component is recovered as crude zinc oxide, at which time a clinker of Fe-Base is generated. In this research, first, for the efficient resource conversion of electric furnace steel dust, a reduction and roasting experiment was conducted and the reaction kinetics was examined. As a result of the experiment, it was observed that the reduction and roasting reaction was actively conducted in the range of 1100~1150℃, and melting occurred in the range of 1250℃. In the past, this clinker was widely used as a roadbed material for road construction and an Fe-Source for cement production, but in recent years, it has been mainly reclaimed due to strengthening environmental standards. However, landfill treatment is by no means a desirable treatment method due to environmental pollution caused by leachate, expensive landfill costs, and waste of Fe resources. Therefore, in order to more actively recycle the Fe component in the clinker, first of all the clinker was pulverized into an optimal particle size, and anthracite and binder (starch) were added to the magnetic material obtained by specific gravity and magnetic separation for briquet. As a experimental results, it was possible to efficiently separate clinker as Fe component and other slag component by specific gravity and magnetic force. As a results of loading and dissolving the manufactured briquet clinker in an electric arc furnace, it was observed that the unit of power and production yield were clearly improved and the carbon addition effect in molten metal was also somewhat.

중국의 개발과 환경보전에의 도전 (A Challenge to Development and Environmental Protection in China)

  • 조윤숭
    • 환경위생공학
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    • 제8권2호
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    • pp.123-148
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    • 1993
  • Over the past-decade of reform and opening up to the outside world, China#s GNP doubled which now ranks eighth in the world, making an average 9.6% increase annually. Some industrial products such as steel, crude oil and power generation rank fourth in the world, while output of coal and cement rank first. In the agricultural sector, China ranks first in the output of grain, cotton, meat and basically solved the problem of providing food and daily necessities for 22% of the world#s population, The Chinese government has set the objectives in environmental protection plan to be achieved by the year 2000 together with ecological protection. During the Seventh Pive-Year Plan(1985-90), Chains#s annual investment in controlling environment pollution was about 10 billion Yuan, or 0.7% of her GNP, while during the Eighth Five-Year Plan, effort will be made to increase such investments, in terms of the GNP, possibly to 0.85"1% . However, the expanding development including industrial production will increase large amounts of pollutants into the environment and efforts are underway to deal with these pollution. *대한위생학회장 Regional community are faced with serious environmental problems. For instance, so called# Yellow Sand Storm# from China is one of the case. Recently, to make matter worse, acid rain and dry depositation from transboundary air pollution is tend to increase mainly because of emissions from mainland China. Therefore, the countries concerned in the region, should seek to promote international cooperation on environmental issues. An overall aspects of development and environmental programs in China are presented.

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산업연관표(2003년)를 활용한 산업별 CO2 배출 원단위 분석 (Analysis of CO2 Emission Intensity per Industry using the Input-Output Tables 2003)

  • 박필주;김만영;이일석
    • 자원ㆍ환경경제연구
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    • 제18권2호
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    • pp.279-309
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    • 2009
  • 산업에서 발생되는 온실가스를 줄이기 위해서는 각 산업별 온실가스 발생량을 정확히 예측해야 한다. 이에 본 연구에서는 2003년 산업연관표와 에너지 사용량 통계자료를 기초로 401개 산업별 직 간접 $CO_2$ 원단위를 산출하고 이를 활용하는 방안을 검토하였다. 본 연구는 국내에 없는 일부 데이터 대신 해외 데이터 사용, 석유정제부문에 대한 분배 문제, 카본뉴트럴 측면에서 재검토 필요성, 폐기물처리 부문 과정의 일부 미고려 등에 따른 결과의 한계를 가지고 있다. 그럼에도 불구하고 부산물로 얻어지는 코크스로가스나 철강계 가스, 자원순환 관점에서 주목받고 있는 폐기물 영향까지를 고려한 401개 상세 산업별 직 간접 $CO_2$ 원단위를 산출했다는 측면에서 의미가 있다. 산업별 $CO_2$ 배출 원단위 분석 결과를 살펴보면, 간접 $CO_2$ 원단위가 크게 나타난 대표적인 산업으로는 조강, 레미콘, 선재 및 궤조, 주철물, 철근 및 봉강 산업이다. 이들 산업은 직접 $CO_2$ 원단위가 큰 산업에서 생산된 원료물질을 이용하여 제품을 생산하고 있다. 직접 $CO_2$ 배출 원단위가 크게 나타난 대표적인 산업으로는 시멘트, 선철, 석회 및 석고 제품, 석탄화합물 등 자연으로부터 채취한 원광석 등을 이용하여 다른 산업에 유용한 원료물질로 정제하는 산업이었다. 본 연구 결과는 산업별 특성이 반영된 저감 목표치 산정, $CO_2$ 저감정책별 감축 잠재량 산정, 기업의 $CO_2$ 배출량 수준 파악 및 저감 목표량을 설정할 때 유용하게 활용될 수 있다. 그 밖에도 국내에서 활발히 연구되고 있는 환경경제통합계정, 산업별 물질흐름분석 분야에서 널리 응용될 수 있을 것이다.

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