• Title/Summary/Keyword: coal briquette manufacturing industry

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The Location Characteristics of the Coal Briquette Manufacturing Industry in Seoul and the Impact of Government Policy (서울시 연탄 제조업의 입지 특성과 정부 정책의 영향)

  • Kim, Jung-Sook;Jang, Young-Jin
    • Journal of the Korean association of regional geographers
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    • v.17 no.2
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    • pp.216-230
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    • 2011
  • Coal briquette manufacturers once served as major fuel suppliers for households. For the coal briquette industry, transportation accounts for a considerable portion of the total manufacturing cost as briquettes are heavy in weight but low in value-addition. Moreover, they were put under strict control by the government for the characteristics of the briquettes as public goods. This study intends to identify the factors of and the types of the location of coal briquette manufacturing industry. In particular, the focus of the study is the briquette manufacturers in Seoul. Moreover, this study aims to identify how government policy influenced the location of the industry. The coal briquette manufacturing industry in the example regions were oriented toward the market and trans-shipment points. Simultaneously, the industry underwent spatial changes due to the spatial policy. While derived spatial policies were significant factors for growth of coal briquette industry, explicit spatial policies only modified or facilitated some of the location features resulting from the characteristics of the industry.

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A Study on the Carbon Composite Briquette Iron Manufacturing Using Fe-containing Process Wastes (함철부산물을 활용한 탄재 내장 단괴 제조에 관한 연구)

  • Yu, Jong Yeong;Yang, Dae Young;Shin, Hee Dong;Sohn, Il
    • Resources Recycling
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    • v.24 no.3
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    • pp.34-43
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    • 2015
  • Raw materials in steel industry decide on the productivity, quality and price competitiveness. Utilizing iron-containing by-products as raw materials for steel products can save the cost of cleaning up iron-containing by-products and solve environmental issues. Iron-containing by-products have a small particle size. If they are directly inserted in a steel making process, it cause a problem such as poor heat flow and scattering. To solve these problems and induce the additional reduction, study concern with iron ore-coal mixed briquette technique are conducted by many researchers. In this paper, method of making carbon composite briquette iron(CCBI) using iron-containing by-products was studied. The effect of composition of Fe-containing process wastes, reducing agent, flux and binder on formability of CCBI (carbon composite briquette iron) was measured.

Optimization of Briquette Manufacturing Conditions Using Steel Sludge (제강슬러지를 이용한 브리켓 제조 조건 최적화 연구)

  • Lee, Dong Soo;Chae, Hui Gwon;Park, Tae Jun
    • Resources Recycling
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    • v.31 no.4
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    • pp.12-18
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    • 2022
  • Korea depends on the import of raw materials such as iron ore and coal for the steel industry. These raw materials have a major impact on the cost, productivity, and quality competitiveness in the global steel industry. To secure the competitiveness of steel companies, it is necessary to reduce the country's dependence on raw materials. This can be achieved using byproducts with a high Fe content, which are primarily generated by the steel industry. These byproducts are available in the form of a very fine powder, which can disperse as dust when used directly in plant processes. Dust dispersion has a negative impact on the environment and can lead to the loss of raw materials. To enable the use of a wide range of Fe-containing byproducts, it is necessary to pretreat them in the form of larger aggregates such as pellets and briquettes. There are several methods to achieve such aggregates. There are two ways to produce briquettes: using a hot briquette, which supplies additional heat to produce briquettes, or using a cold briquette, which does not use heat. A method for producing cold briquettes using Fe-containing byproducts was investigated in this study. The yield ratio and briquette strength were examined under various manufacturing conditions.