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Assessment of Ion Leaching and Recycling Potential of Steel Slag Mixed with Clay (점토와 혼합된 제강슬래그의 이온 용출 및 재활용 가능성 평가)

  • Hyeongjoo Kim;Hyeonki Lee;Taegew Ham;Sohee Jeong;Hyeongsoo Kim
    • Journal of the Korean GEO-environmental Society
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    • v.25 no.5
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    • pp.39-47
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    • 2024
  • In this study, the environmental implications of electric arc furnace steel slag, commonly used in road construction and soil reinforcement, were examined. Experiments were conducted to assess the leaching of heavy metals based on particle size and to investigate ion leaching from specimens with varying mixtures of steel slag and clay. The official waste test revealed no detectable heavy metals in the sample items. However, when subjected to leaching experiments and analyzed using ICP-OES, certain heavy metals were found. The reaction of steel slag with water, facilitated by free CaO within the slag, was identified as the cause of leaching. Results showed that aluminum, exhibiting the highest leaching rate, displayed an inverse relationship with particle size. In mixed soil containing steel slag and clay, higher steel slag content resulted in increased aluminum leaching. Nonetheless, the quantity of leached aluminum was notably lower in mixed soil compared to pure steel slag. Furthermore, leaching of other heavy metals remained within acceptable limits. These findings suggest that recycling mixed soil of steel slag and clay for road construction or soil stabilization presents reduced environmental risks compared to using steel slag alone. Utilizing such mixtures could offer an environmentally sustainable and safe alternative.

An Experimental Study on Properties of Electric Arc Furnace Dust for Minearal Filler of Asphalt Concrete (아스팔트 콘크리트용 채움재로서 제강더스트의 특성에 관한 실험적 연구)

  • 김주원
    • Magazine of the Korea Concrete Institute
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    • v.5 no.3
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    • pp.161-168
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    • 1993
  • 본 연구는 아스팔트 콘크리트의 채움재로서 제강더스트의 사용가능성을 실험을 통하여 분석하였다. 실험에는 제강더스트의 기본물성시험과 혼합물의 비교시험을 포함시켰다. 비교시험에서는 채움재로서 석회석분을 사용하는 경우와 제강더스트를 사용하는 경우, 채움재와 아스팔트를 혼합한 필리-비투먼, 그리고 골재까지 혼합한 아스팔트 콘크리트에 대하여 물성을 비교분석하였다. 실험결과 제강더스트는 포장용 채움재의 규정을 만족시키며, 제강더스트를 채움재로 사용한 아스팔트 콘크리트보다 우수하며, 제강더스트는 아스팔트 혼합물용 채움재로써 충분히 사용가능한 것으로 밝혀졌다.

Swine Wastewater Treatment by using Steel-making Slag (제강슬래그 특성을 이용한 축산폐수 처리효과)

  • Kim, Tae Heui;Park, Kyung Bong
    • Clean Technology
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    • v.6 no.2
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    • pp.85-92
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    • 2000
  • For increase of recycling rate of steel-making slag, the swine wastewater treatment using steel-making slag as filter media were investigated. As the discharged wastewater from the existing facilities retreated through the laboratory wastewater treatment equipment filled with steel-making slag as filter, pH of retreated wastewater was increased, and the concentration of N, P, COD and BOD were decreased. For the pilot experiment, steel-making slag eliminated suspended substances and absorbed a shock of sudden change of their concentration in influent. COD and BOD were decreased under the influence of them in influent. As calcination increased the amount of free-CaO in steel-making slag, the calcined eliminated phosphorus more effectively and increase pH than the uncalcined.

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Hydrogen Behavior in the Steelmaking Process (제강공정에서 수소의 거동)

  • Shim, Sang-chul;Cho, Jung-wook;Hwang, Sang-taek;Kim, Kwang-chun
    • Korean Journal of Metals and Materials
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    • v.46 no.10
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    • pp.662-671
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    • 2008
  • The behavior of hydrogen in the steel making process was investigated. The relation between the composition of ladle slag and hydrogen concentration in molten steel was considered. The hydrogen distribution ratio between ladle slag and molten steel was increased with increasing basicity of the slag; it was about 20 when the basicity of slag was 15. Hydroxyl capacity measured from the hydrogen distribution ratio between slag and the molten steel was comparatively corresponding to the value of hydroxyl capacity measured by the equilibrium reaction of slag and $H_2O$ gas. However, it is considerably different from the value calculated by regular solution model. The influence of hydrogen on a sticking type breakout is considered. The effect of hydrogen and $H_2O$ gas on the crystallization behavior of mold powder was investigated by DHTT (Dual hot thermocouple technique). As a result, it was proved that mold powder could be crystallized by $H_2O$ gas in the atmosphere. Therefore, it is concluded that $H_2O$ gas in the atmosphere can be a possible cause of the sticking type breakout that occasionally occurs in the continuous casting process.

The Properties of Flow and Compressive Strength of Mortar According In Replacement Ratio of Rapidly-Chilled Steel Slag Pine Aggregate (급냉 제강 슬래그 잔골재 대체율에 따른 모르타르의 유동성 및 압축강도 특성)

  • Cho Sung-Hyun;Kim Jin-Man;Kim Moon-Han;Han Ki-Suk
    • Journal of the Korea Concrete Institute
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    • v.17 no.1 s.85
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    • pp.77-84
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    • 2005
  • The steel slag, a by-product which is produced by refining pig iron during the manufacture of steel, is mainly used as road materials after aging. It is necessary to age steel slag for long time in air because the reaction with water and free-CaO in steel slag could make the expansion of volume. This problem prevents steel slag from being used as aggregate for concrete. However, steel slag used in this study was controled by a air-jet method which rapidly cools substance melted at a high temperature. The rapidly-chilled method would prevent from generation of free-CaO in steel slag. This study dealt with the influence of the using rate of rapidly-chilled steel slag on flow, dosage of SP, W/C ratio, and strength of mortar by statistical experimental design. Also, the results of this experiment were approved by statistical analysis methods, such as analysis of variance and F-testing. As results of F-testing, this paper proved at $1\%$ level of significance that the more the using rate of rapidly-chilled steel slag increased, the more this affected the enhancement of flow, the decrease of dosage of SP and W/C ratio, and the development of compressive strength. Also, considering the fluidity and compressive strength of mortar, it is desirable to use $75\%$ of rapidly-chilled steel slag for river sand.

Effects of Basic Oxygen Furnace Slag Application on Soils and Plant Growth at a Nursery and Pine Forests (제강(製鋼)슬래그의 시용(施用)이 묘포(苗圃) 및 소나무림의 토양(土壤)과 식물생장(植物生長)에 미치는 영향(影響))

  • Park, In Hyeop;Seo, Young Kwon;Lim, June Taeg;Lee, Choong Il
    • Journal of Korean Society of Forest Science
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    • v.90 no.6
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    • pp.699-706
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    • 2001
  • This study was conducted to evaluate the effectiveness of basic oxygen furnace (BOF) slag as soil conditioner in a nursery and two natural forests. The BOF slag was applied at rates of 0, 4, 8, and 12 t/ha for seedbed nursery of three tree species-Pinus densiflora, Larix leptolepis and Amorpha fruticosa; and 0, 10, 20, and 40 t/ha for Pinus densiflora natural forests located at two sites. In case of the nursery study, the significant increase in soil pH and contents of Ca, Mg, $SiO_2$, Fe and Mn was noticed after six months of the BOF slag application. Dry weight of Pinus densiflora seedlings with BOF slag treatments was lower compared with that of control. There were no significant differences among treatments in dry weight of Larix leptolepis seedlings. Dry weight of Amorpha fruticosa seedlings, which are deciduous species and grow rapidly at seedling stage, increased significantly and T/R ratio decreased as BOF slag rate increased. The differences of effects of BOF slag application on the seedlings of tree species may be attributed to the differences of optimum pH range of the species. In Pinus densiflora natural forests, there were no significant differences in soil pH and contents of $SiO_2$, Fe and Mn among the treatments, but these values became higher as BOF slag rate increased. Contents of Ca in soil became significantly higher as BOF slag rate increased. There were no significant differences among treatments in net production of mature Pinus densiflora trees, but BOF slag rate of 10ton/ha showed the highest net production. Young Pinus densiflora trees at the plots of BOF slag rate of 10 t/ha showed significantly higher root collar diameter growth rate and twig net production than those of other treatments. It may be given as a conclusion that BOF slag application in nursery and forest soil increased soil pH and contents of Ca, $SiO_2$, Fe and Mn in soil and they showed the ability of BOF slag to be used as a soil conditioner in strongly acid soil.

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Comparison of Steel Slag and Activated Carbon for Phosphate Removal from Aqueous Solution by Adsorption (폐수 내 인 흡착 제거를 위한 제강슬래그와 활성탄 비교)

  • Lee, Seung-Han;Kim, Chang-Kyu;Park, Jung-Geun;Choi, Dong-Kwang;Ahn, Johng-Hwa
    • Journal of Korean Society of Environmental Engineers
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    • v.39 no.5
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    • pp.303-309
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    • 2017
  • This study investigated the potential use of steel slag (SS) (0.5~2.0 g/200 mL) for the removal of phosphate from wastewater compared with activated carbon (AC) (3.0~6.0 g/200 mL). The adsorption equilibrium data were best represented by Langmuir isotherm and its calculated maximum adsorption capacity was 91 mg/g for SS, 27 mg/g for AC. The adsorption kinetics was found to follow the pseudo-second order kinetics model and its rate constant was $0.0232{\sim}0.1357g/mg{\cdot}min$ for SS, $0.0247{\sim}0.1221g/mg{\cdot}min$ for AC. The overall uptake for the SS and AC was maximum at pH 2. Therefore, it can be concluded that steel slag could play an effective role in reducing phosphate concentration compared with activated carbon.

Effect of Carbon Materials on the Slag Foaming in EAF Process (전기로 슬래그 포밍에 미치는 가탄재 종류의 영향)

  • Kim, Young-Hwan;Yoo, Jung-Min;Um, Hyung-Sic
    • Resources Recycling
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    • v.28 no.2
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    • pp.40-45
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    • 2019
  • During steelmaking in EAF, recycled scraps is used as a main material, melted by arc, and electricity use as a main energy. Slag foaming is an important technology for reducing electrical energy. CO gas generated by the reaction between injection carbon and (FeO), [C] and injection {$O_2$}. CO gas generated by this reaction is collected in slag, resulted in slag foaming. In general, the carbon materials used in the EAF process is anthracite and coke. This study investigated the effects of the carbon materials used on slag foaming in the steelmaking process. As a result of this study, the slag foaming height is increased by cokes rather than anthracite, and with an increase in the amount of particles samller than $500{\mu}m$. Based on these results, the application to the operation resulted in increase of slag forming height, reduction of injection carbon, and reduction of electrical energy.

Study for the Stabilization of Arsenic in the Farmland Soil by Using Steel Making Slag and Limestone (제강슬래그와 석회석을 이용한 비소오염 농경지 토양 안정화 연구)

  • Lee, Min-Hee;Jeon, Ji-Hye
    • Economic and Environmental Geology
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    • v.43 no.4
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    • pp.305-314
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    • 2010
  • The stabilization process using limestone ($CaCO_3$) and steel making slag as the immobilization amendments was investigated for As contaminated farmland soils around Chonam abandoned mine, Korea. Batch and continuous column experiments were performed to quantify As-immobilization efficiency in soil and the analyses using XRD and SEM/EDS for secondary minerals precipitated in soil were also conducted to understand the mechanism of Asimmobilization by the amendments. For the batch experiment, with 3% of limestone and steel making slag, leaching concentration of As from the contaminated soil decreased by 62% and 52% respectively, compared to that without the amendment. When the mixed amendment (2% of limestone and 1% of steel making slag) was used, As concentration in the effluent solution decreased by 72%, showing that the mixed of limestone and steel making slag has a great capability to immobilize As in the soil. For the continuous column experiments without the amendment, As concentration from the effluent of the column ranged from 50 to $80\;{\mu}g/L$. However, with 2% limestone and 1% steel making slag, more than 80% diminution of As leaching concentration occurred within 1 year and maintained mostly below $10\;{\mu}g/L$. Results from XRD and SEM/EDS analysis for the secondary minerals created from the reaction of the amendments with $As^{+3}$ (arsenite) investigated that portlandite ($Ca(OH)_2$), calcium-arsenite (Ca-As-O) and calcite ($CaCO_3$) were main secondary minerals and the distinct As peaks in the EDS spectra of the secondary minerals can be observed. These findings suggest that the co-precipitation might be the major mechanisms to immobilize As in the soil medium with limestone and steel making slag.