• Title/Summary/Keyword: 시멘트 부원료

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Recycling of the Waste Rock and Tailings from Yangyang Iron Mine (양양철광산 선광 부산물의 순환자원화)

  • Jung, Moon Young;An, Yong Hyeon;Kim, Young Hun
    • Resources Recycling
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    • v.25 no.4
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    • pp.23-31
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    • 2016
  • It was found that there was no problem in recycling by-products (waste rock and tailings) from Yangyang iron mine themselves through matter conversion because they are not hazardous according to results of KSLT method. In case of using tailings as sub-materials of cement, it recommended the use of less than 3% tailings dosage not to exceed 0.6% of total alkali ($R_2O$) content based on standard quality of portland cement (KS L 5201). Non sintered eco-brick corresponding to class 1 quality of recycled clay brick (KS I 3013) can replace 15% of cement with tailings and 100% of general fine aggregate with waste rock from iron mine. As mentioned above, recycling the by-products (waste rock and tailings) as sub-materials of cement and non sintered eco-brick could gain both environmental and economic benefits, that is, reduction of scale and maintenance cost of tailing ponds, decrease of energy use and $CO_2$ emission.

Effect of Low-grade Limestone on Raw Mill Grinding and Cement Clinker Sintering (저품위 석회석이 원료밀의 분쇄성과 시멘트 클링커 소성성에 미치는 영향)

  • Yoo, Dong-Woo;Park, Tae-Gyun;Choi, Sang-Min;Lee, Chang-Hyun
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.9 no.1
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    • pp.20-25
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    • 2021
  • The cement clinker, the main raw material of cement, is manufactured using limestone as the main material. Depending on the quality of limestone, the use of subsidiary materials changes, and has a great influence on the production of cement clinkers. In this study, the effect of CaO content of limestone, a cement clinker material, on Raw Mill grinding and sintering of cement clinker was investigated. The grinding time of the union materials changed in the content of limestone CaO was measured to identify the grinding properties. The raw material combination was cleaned within a range of 1,350-1,500℃. The sintering performance of cement clinker by Burnability index calculation was identified. The lower the grade of limestone, the lower the grinding quality of the raw material combination. The lower the CaO content of limestone, the greater the variation in F-CaO for sintering temperature. The lower the class of limestone, the higher B. I. value was calculated, indicating the lower cement clinker sintering. In addition, the mineral analysis results of cement clinker showed that if the F-CaO value was low due to the increase in sintering temperature, the Belite content decreased and the Alite content increased. In the case of Alite, the ratio of R-type decreased and that of M-type increased as the content of limestone CaO increased.

Study on the Producing SiC Based Briquette for Raised Temperature of Molten Steel using Si Sludge Induced in the Process of Si Fabrication (실리콘 제조 공정에서 발생한 실리콘 슬러지를 활용한 용강 SiC계 승온제 제조 연구)

  • Lee, Chang-Hyun;Lee, Sang-Ro;Park, Man-Bok;Koo, Yeon-Soo;Lee, Man-Seung
    • Resources Recycling
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    • v.26 no.6
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    • pp.45-49
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    • 2017
  • Most Waste slurry is produced in the process of silicon manufacturing for semiconductor industry, containing silicon (Si) and silicon carbide (SiC). Waste slurry is simply stored with solidifying by cement or buried. On the other hand, it was suggested in this study that the waste slurry should be used for heating source as supplementary material in steel making process. The waste slurry was refined and pulverized, which was recycled into SiC-based sludge briquette. Chemical composition for SiC-based sludge briquette was analyzed and the feature of heating source was observed in accordance with the injection time and input amount. As a result, SiC-based sludge briquette in terms of low cost and high efficiency had an effect on increasing liquid steel temperature in steel making plants.

A Study on the Recycling of Waste in the Limestone Mine (석탄석광산 폐석의 재활용 연구)

  • Chae, Young-Bae;Joeng, Soo-Bok;Koh, Won-Sik;Park, Je-Shin;Yang, Shi-Young
    • Resources Recycling
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    • v.5 no.4
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    • pp.25-31
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    • 1996
  • The wastes ot l~mestone mines have been cause the extrar.ngance of the valuablz m e r a l s and destruction of the environment. Therefore, \\-c tied ta separation of calcite illid clay from the limestone mine wastes by rotntmg screen type separator made by ourselves in order to recyding such us a raw matcriala for cement maimfacture. CaO amtents in the separated coarse products increased from 37.36 wt% to 42+2 wt% at the condition ihat water content in wastes was lzss than 6wt%, the passing time of specimen in &amber was 15 semnds and the rotation speed was 6OLl qm. A process in order lo separate wastes effectively to having wide range aI part~dcs ize was cstablishcd and CaO contents of coarsc products through this process increased to 46.85 wt%. Tbis rcsult is insuEiicient to directly rcusing as a raw malerials for cement. However, it is supposed that coarse products would be able to be reuscd as a raw materials uf cement, if only it rs sclected dolomite in wastes, and really it may be possible in fields Othenvise, undcrsize products(less than 20 mm) would be able to recycling as a raw of cement bccause chcmicrl campasitions of thosc is kept almost constant v&cs on the overall process.

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