• Title/Summary/Keyword: 광물 탄산화

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Review of Water-Based Synthetic Methods of Calcium Carbonate Polymorphs and Their Morphological Features (탄산칼슘 동질이상체의 수용액 기반 합성법 및 형태학적 특성 리뷰)

  • YoungJae Kim;Seon Yong Lee;Young Jae Lee
    • Economic and Environmental Geology
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    • v.56 no.3
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    • pp.217-227
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    • 2023
  • Crystalline calcium carbonate (CaCO3) occurs in various geological and aqueous environments as calcite, aragonite, and vaterite. These minerals also have practical applications in engineered settings. Synthetic methods of calcium carbonate have been developed for scientific research and technical applications. For example, these methods have become widely adopted for studying the formation of CaCO3 minerals and (geo-)chemical processes involving these minerals in natural and engineered systems. Furthermore, these methods have the potential to be applied in various technical and biomedical fields. Water-based synthesis is particularly important for simulating the formation of calcium carbonate minerals in natural aqueous environments. This review paper describes the procedures and experimental conditions for water-based synthetic methods of each calcium carbonate polymorph, compares the morphological and structural features of the resulting crystals, and analyzes the crystallization mechanisms.

The Effect of Chloride Additives and pH on Direct Aqueous Carbonation of Cement Paste (시멘트 풀의 직접수성탄산화에서 Chloride 첨가제와 pH의 영향)

  • Lee, Jinhyun;Hwang, Jinyeon;Lee, Hyomin;Son, Byeongseo;Oh, Jiho
    • Journal of the Mineralogical Society of Korea
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    • v.28 no.1
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    • pp.39-49
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    • 2015
  • Recently, carbon capture and storage (CCS) techniques have been globally studied. This study was conducted to use waste cement powder as an efficient raw material of mineral carbonation for $CO_2$ sequestration. Direct aqueous carbonation experiment was conducted with injecting pure $CO_2$ gas (99.9%) to a reactor containing $200m{\ell}$ reacting solution and the pulverized cement paste (W:C = 6:4) having particle size less than 0.15 mm. The effects of two additives (NaCl, $MgCl_2$) in carbonation were analyzed. The characteristics of carbonate minerals and carbonation process according to the type of additives and pH change were carefully evaluated. pH of reacting solution was gradually decreased with injecting $CO_2$ gas. $Ca^{2+}$ ion concentration in $MgCl_2$ containing solution was continuously decreased. In none $MgCl_2$ solution, however, $Ca^{2+}$ ion concentration was increased again as pH decreased. This is probably due to the dissolution of newly formed carbonate mineral in low pH solution. XRD analysis indicates that calcite is dominant carbonate mineral in none $MgCl_2$ solution whereas aragonite is dominant in $MgCl_2$ containing solution. Unstable vaterite formed in early stage of experiment was transformed to well crystallized calcite with decreasing pH in the absence of $MgCl_2$ additives. In the presence of $MgCl_2$ additives, the content of aragonite was increased with decreasing pH whereas the content of calite was decreased.

Development of the FEED framework of the mineral carbonization pre-treatment system using systems engineering technique (시스템엔지니어링 기법을 이용한 광물탄산화 시스템 FEED 프레임워크 개발 방안에 관한 연구)

  • Kim, Jinil;Yeom, Choongsub;Ryu, BoHyun;Yoon, Munkyu;Kim, Joonyoung
    • Journal of Energy Engineering
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    • v.27 no.1
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    • pp.12-20
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    • 2018
  • The FEED (Frond End Engineering Design) framework defines the activities and outputs to be performed at the FEED stage. In the meantime, many studies on FEED have been carried out, but most of them have slightly different opinions depending on experiences. It is important to define the FEED appropriately for the project and define the activities and outputs that are needed. It is also necessary to develop FEED processes on a solid basis, such as international system engineering process standards rather than experience. In this study, FEED is defined as suitable for the mineral carbonation system development project, and a method for developing the process and output to satisfy it is proposed based on the system engineering standard process.

Experimental Study Of Shotcrete Containing Mineral Admixture (광물질 혼화재를 혼입한 숏크리트의 실험적 연구)

  • Kim, S.S.;Jung, H.S.;Park, K.P.;Lee, J.B.;Lee, Y.G.;Jun, H.S.
    • Proceedings of the Korea Concrete Institute Conference
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    • 2008.11a
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    • pp.633-636
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    • 2008
  • In order to efficient use of land and development of human, a lot of research on the utilization of underground space is being progress. For the smooth flow of traffic, in the case of mountainous terrain like our country, construction of the tunnel is rapidly increasing. The NATM method is used mainly in the domestic. And also, a lot of research for the NATM is underway, but aspects of the material are lacking. In this study, therefore, it is to evaluate the properties of durability according to mixing ratio and a kind of mineral admixture for the development of shotcrete performance by using the MATM.

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Properties of Extruding Panel using Waste Concrete Powder with Mineral Carbonation as Silica Source (광물탄산화를 거친 폐콘크리트 미분말을 실리카 원료로 활용한 압출성형패널의 특성)

  • Choi, Hong-Beom;Kim, Kin-Man;Yu, Jae-Seong
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2017.05a
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    • pp.13-14
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    • 2017
  • In this paper, research for use possibility as silica source of waste concrete powder discharged from direct and indirect carbonation has progressed. For the research, properties on the extruding panel using waste concrete powder with high silica content is evaluated. As the results, compressive strength of specimen is increased 24% compared to control specimen when waste concrete powder replaced 50%, that is discharged from carbonation process, as silica source.

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Evaluation of the Utilization of Carbon Dioxide Microbubble Mixing Water for Mineral Carbonation of Cement Materials (시멘트 재료의 광물탄산화를 위한 이산화탄소 마이크로버블 배합수 활용성 평가)

  • Nam, Min-Seok;Park, Dong-Cheon
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2023.11a
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    • pp.205-206
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    • 2023
  • In this study, the characteristics of cement were analyzed using carbon dioxide microbubble water as a mixed water for mineral carbonation of cement materials. Carbon dioxide reacts with the calcium compound of cement to produce calcium carbonate and affects the initial strength improvement. Therefore, in this study, temperature, air content, thermal analysis, and compressive strength tests were conducted to confirm the reaction between cement materials and carbon dioxide. As a result of the measurement, the reaction between cement and carbon dioxide was confirmed in a specimen using carbon dioxide microbubble water as a mixed water, which affected the initial strength improvement.

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Characterization of CO2 Biomineralization Microorganisms and Its Mineralization Capability in Solidified Sludge Cover Soil in Landfill (매립지 복토용 슬러지 고화물내 이산화탄소 생광물화 고정균 분석 및 생광물화능 평가)

  • Ahn, Chang-Min;Bae, Young-Shin;Ham, Jong-Heon;Chun, Seung-Kyu;Kim, Chang-Gyun
    • Journal of Korean Society of Environmental Engineers
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    • v.35 no.8
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    • pp.598-606
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    • 2013
  • This study was performed to determine whether biomineralization microbes were actively present underneath landfill cover soil producing biocalcification. From this, various types of microbes were observed. Among them, two species were dominantly found; Bacillus megaterium and Alkaliphilus metalliredigens that were known as biominerlization bacteria. With those microbes, $CO_2$ was more highly consumed than without bacteria. In response, the calcium carbonate mineral was produced at 30% (wt) greater than that of the control. At the same time, TG-DTA was successfully used for quantification of $CO_2$ consumed forming calcium carbonate minerals resulting from biocalcification. It was decided that the presence of solidified sewage sludge cake utilized as a cover soil in the landfill could efficiently contribute to possible media adaptably and naturally sequestering $CO_2$ producing from the landfill.

Durability Assessment of High Strength Concrete with High Volume Mineral Admixture (다량의 광물질 혼화재를 사용한 고강도 콘크리트의 내구성 평가)

  • Baek, Chul-Woo;Kim, Hoon-Sang;Choi, Sung-Woo;Jo, Hyun-Tae;Ryu, Deug-Hyun
    • Journal of the Korea Concrete Institute
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    • v.27 no.6
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    • pp.641-649
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    • 2015
  • The purpose of this study was to assess the durability of high-strength concrete with high volume mineral admixture (HVMAC) derived from previous studies within ternary blended concrete (TBC) and normal concrete (NC). Four durability evaluation types such as chloride penetration resistance, freezing and thawing resistance, carbonation resistance in two pre-treatment conditions, and sulfuric acid and sulfate resistance using 5% sulfuric acid ($H_2SO_4$), 10% sodium sulfate ($Na_2SO_4$), and 10% magnesium sulfate ($MgSO_4$) solution were selected and performed in this study. HVMAC showed the excellent chloride penetration resistance in any age and the freezing and thawing durability close to 100%. In addition, HVMAC affected more reduction in carbonation resistance than TBC. When the curing time was increased, to create a concrete internal organization densely improved resistance to carbonation. HVMAC also showed the most superior in sulfuric acid and sulfate resistance. As the reduction of calcium hydroxide and $C_3A$ to apply a large amount of admixture reduced the swelling and cracking of concrete, the strength reduction and mass change of concrete was found to be small indicated.

A Fundamental Study on CO2 Sequestration of Concrete Slurry Water by Pressure Carbonation (가압 탄산화를 통한 레미콘 회수수의 CO2 고정화에 관한 기초적 연구)

  • Sim, Sang-Rak;Ryu, Dong-Woo
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2023.05a
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    • pp.107-108
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    • 2023
  • In this study, in CO2 sequestration was carried out through pressure carbonation for concrete slurry water to realize carbon neutrality in the cement industry. As a result of the experiment, it was confirmed that as the pressure of CO2 increased, the pH decreased and the amount of CaCO3 produced increased. However, despite the CO2 pressure of 5 bars, the carbonation reaction for 10 minutes alone did not proceed completely.

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