• Title/Summary/Keyword: 건설부산물

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기술연구II - 초경량골재를 이용한 콘크리트의 건조수축 및 흡수특성에 관한 고찰

  • Lee, Jong-Yeol
    • Cement
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    • s.191
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    • pp.43-48
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    • 2011
  • 최근 고강도화 기술이 발전함에 따라 각국에서는 지역마다 랜드마크로 불리는 건축물들이 자주 등장하는 것을 문헌을 통하여 자주 접한다. 또한 건축물의 거대화 고층화에 따라, 합리적인 설계를 가능하게 하는 콘크리트의 경량화가 새로운 과제로 주목을 받고 있다. 초경량 콘크리트 구조물을 실용화 할 수 있으면 상부구조의 경량화, 지진하중의 저감, 건설기계의 생력화, 기초 부담의 저감 및 기초의 경량화 등에 따라 건설콘스트 에너지 전체의 저감에도 큰 효과가 기대되기 때문이다. 국내에도 경량 골재에 대한 제조가 간헐적으로 계속되어 오고 있다. 특징을 보면 산업부산물을 이용한 친환경소재, 에너지 절감, 흡수율 등을 대폭적으로 낮추었다고 소개되고 있는 반면, 비중을 초경량화한 경우는 거의 없다. 따라서 본 검토는 절건비중이 1.0 미만인 초경량골재를 사용한 경우로 비록 실험실적 결과이지만 쉽게 접할 수 있는 제품이 아닌 것 같아 아소(麻生)공과대학 미즈다(水田)교수의 논문을 소개하는 것이고, 콘크리트 테크노 2009년 1월에 게재된 문헌을 요약 발췌한 것임을 밝혀둔다.

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A Study on the Hydraulic Stability of Soil Mixed with Bio-Polymer (바이오 폴리머가 혼합된 토양의 수리안정성에 관한 연구)

  • Lee, Du Han;Kim, Myounghwan
    • Proceedings of the Korea Water Resources Association Conference
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    • 2019.05a
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    • pp.270-270
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    • 2019
  • 미생물의 부산물인 바이오 폴리머와 혼합된 토양의 수리안정성이 증가하는 효과를 시험하기 위하여 안동 하천실증연구센터 실규모 수로에 물관리연구사업의 "친환경 신소재를 이용한 고강도 제방 기술 개발" 연구과제에서 개발 중인 바이오 폴리머와 혼합된 토양을 도포하여 시험구를 만들고 수리안정성에 관한 실험을 수행하였다. 실험에서는 바이오 폴리머와 마사토를 혼합하여 사용하였으며, 바이오 폴리머와 혼합된 토양은 도포 두께, 식생 유무 등에 따라 구분하였다. 실험은 물의 소류력과 토양손실과의 관계를 통하여 수리안정성을 평가하는 ASTM 시험법을 준용하여 진행하였고, 실험 결과를 통하여 새로 개발된 바이오 폴리머가 토양의 수리안정성을 증가 시키는 것을 확인 할 수 있었다. 특히 바이오 폴리머가 도포된 토양에 식생이 활착되었을 경우 강한 소류력이 발생하는 흐름에서도 토양 손실이 매우 적게 발생하였으며, 이를 통하여 개발된 바이오 폴리머의 성능을 일부 확인 할 수 있었다.

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Flow and Compressive Strength Properties of Low-Cement Soil Concrete (저시멘트 소일콘크리트의 유동성 및 압축강도 특성)

  • Park, Jong-Beom;Yang, Keun-Hyeok;Hwang, Chul-Sung
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.6 no.1
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    • pp.1-7
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    • 2018
  • This study examined the effect of binder-to-soil ratio(B/S) and water-to-binder ratio(W/B) on the flow and compressive strength development of soil concrete using high-volume supplementary cementitious materials. As a partial replacement of ordinary portland cement, 10% by-pass dust, 40% ground granulated blast-furnace slag, and 25% circulating fluidized bed combustion fly ash were determined in the preliminary tests. Using the low-cement binder incorporated with clay soil or sandy soil, a total of 18 soil concrete mixtures was prepared. The flow of the soil concrete tended to increase with the increase in W/B and B/S, regardless of the type of soils. The compressive strength was commonly higher in sandy soil concrete than in clay soil concrete with the same mixture condition. Considering the high-workability and compressive strength development, it could be recommended for low-cement soil concrete to be mixed under the following condition: B/S of 0.35 and W/B of 175%.

Hydration Properties of High Volume Cement Matrix Using Blast Furnace Slag and Alkaline Aqueous by Electrolysis (고로슬래그 및 전기분해한 알칼리 수용액을 사용한 하이볼륨 시멘트 경화체의 수화특성)

  • Kim, Sun-A;Park, Sun-Gyu
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.5 no.1
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    • pp.8-13
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    • 2017
  • This experimental study is purposed to analyze the effect of alkaline aqueous solution by electrolysis on strength development in order to develop high volume cement matrix using industrial by-products. Blast furnace slag was used a binder, and an alkaline aqueous solution obtained by electrolyzing pure water was used as an alkali activator. The hydration properties of these specimens were then investigated by compressive strength test, XRD and observation of micro-structures using SEM. As a result, we found that compressive strength increased with the addition of alkaline aqueous solution which cement matrix incorporating blast furnace slag. But those strength decreased reversely when replacing ratio of blast furnace slag was increased. It is judged that results of engineering properties evaluation on the binder and alkaline aqueous solution are useful as a basic data for mixtures design and evaluation properties of high volume cement matrix using by-products.

Mechanical Properties of Non-cement Matrix Utilizing the Circulating Fluidized Bed Combustion Boiler Fly Ash and Dyeing Sludge Carbide (염색슬러지 탄화물과 순환 유동층 연소 보일러 플라이애시를 활용한 무시멘트 경화체의 역학적 특성)

  • Kim, Tae-Hyun;Lee, Seung-Ho;Lee, Yong;Shin, Jin-Hyun;Lee, Sang-Soo
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.4 no.4
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    • pp.425-430
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    • 2016
  • Both rapid industrial development and society has achieved more comfortable life. But, behind this facts of this industrial development have current pictures that occur global warming and much more by-products by environmental pollution. Therefore, this study used BFS and CFA as by-products to reduce cement usage emitted at a high rate of $CO_2$ gas, to examine sludge recycling strategy more than 200,000ton emitted at local dyeing complex, we suggest basic data research about non-cement matrix properties of utilizing dyeing sludge carbide. As a result, the more dyeing sludge carbide replacement ratio gets higher, the more air content and flow rise. Also, as the dyeing sludge carbide replacement ratio increase more, flexural strength and compressive strength go down.

A Study on the Cementitious Materials as Carbon Capture Materials-Micro-Structure Change by Carbonation Curing (시멘트계 재료의 탄소포집 건설재료로 활용연구 - 탄산화 양생에 의한 미세구조 변화)

  • Moon, Eun-Jin;Kim, Sang Jun;Park, Hong Gi;Choi, Young Cheol
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.22 no.6
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    • pp.123-129
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    • 2018
  • Recently, there has been a growing interest in the study of treatment of $CO_2$ generated by industrial activities and resource recycling of industrial byproducts. The aim of this study is to investigate the applicability of industrial byproducts that can be used as concrete mixed materials by carbonation curing. For this purpose, the physical and chemical changes of the pastes with research cement(RC), blast furnace slag powder (GGBFS) and circulating fluidized bed combustion ashes (CFBC) were evaluated by carbonation curing. XRD and SEM analyzes were performed to investigate micro-structural changes. As a result, it was confirmed that calcium carbonate, which is a reaction product produced by carbonation curing, filled the space inside the paste and formed a dense micro-structure. Also, as the $CO_2$ curing time increased, it was confirmed that calcium carbonate crystals were grown together to form a dense micro-structure.

Development of Organic-Inorganic Hybrid Insulating Materials with Semi-Non-Combustible Using by Recycling Gypsum (재활용 석고 부산물을 이용한 준불연 유무기 융합 단열재 개발 연구)

  • Ha, Joo-Yeon;Shin, Hyun-Gyoo;Song, Tae-Hyeob
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.7 no.4
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    • pp.431-437
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    • 2019
  • The purpose of this study is to develop an organic-inorganic hybrid insulation materials which has an economic feasibility of organic level and excellent adiabatic performance and fire stability by impregnating organic materials with inorganic binder solutions. The organic base was commercial polyurethane sponge, and the inorganic binder slurry was prepared by mixing water and additives into recycled gypsum byproducts. As a result of evaluation of the developed materials, it was confirmed that it not only has excellent insulation performance of a thermal conductivity of 0.051 W/mK or less but also it is a semi-non-combustible materials specified in the Ministry of Land, Infrastructure and Transport Notice No. 2015-744. The developed materials can also be controlled for thermal conductivity and flame retardance according to density control during manufacturing process, and thus it can be applied to various insulation materials.

The Effects of Substitution Rate of Incinerated Sewage Sludge Ash on the Concrete Materials (건설재료로서 하수슬러지 소각재 적정 대체율 도출에 관한 연구)

  • Kim, Chun ho;Kim, Nam wook
    • Resources Recycling
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    • v.25 no.1
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    • pp.10-15
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    • 2016
  • In recent years, in terms of environmental protection and efficient use of the land, efficient utilization of byproducts and wastes generated in industrial areas are emerging. In this study, for the effective utilization of using ever increasing amount of utilizing sewage sludge incineration ash to increase sewage sludge, it is evaluated the use of as an construction material. After making concrete specimens, it is evaluated compressive strength, carbonation and environmental resistance. From the experimental results, compared with concrete without sewage sludge it is obtained satisfactory results for compressive strength and carbonation and results of the leaching test also satisfies the standard value. So, it is sufficient possibility using of concrete aggregate and the replacement rates is judged to be about 10%.

A Study on the Characteristics of Mine Liner According to the Contents of CSA Using Industrial Byproducts (산업부산물을 활용한 CSA 첨가량에 따른 광산 차수재 특성에 관한 연구)

  • Kang, Suk-Pyo;Lee, Yeong-Hun;Kang, Hye-Ju;Cho, Sung-Hyun;Cho, Yong-Kwang
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.7 no.1
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    • pp.74-81
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    • 2019
  • In this study, to characterize the application of CSA and dihydrate gypsum Utilizing industrial byproducts, we investigated the characteristics of CSA and dihydrate gypsum to investigate the characteristics of Mine Liner according to the addition amount. As a result of compressive strength, length change and absorption rate of mining lime wastewater according to CSA addition amount, up to 30% of CSA showed a positive effect on shrinkage and absorption reduction effect as well as strength at initial age. However, due to excessive use of CSA 50%, it was reduced by 15% compared to OPC due to increase of absorption rate and decrease of cement amount due to over expansion rather than shrinkage compensation and void filling.

Performances of Prepacked-Type Thermal Conductive Backfills Incorporating Byproduct Powders and Aggregates (부산물 분체 및 굵은 골재를 활용한 프리팩트형 열전도성 되메움재의 성능)

  • Sang-Min Jeon;Young-Sang Kim;Ba-Huu Dinh;Jin-Gyu Han;Yong-Sun Ryu;Hyeong-Ki Kim
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.11 no.3
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    • pp.169-176
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    • 2023
  • This study aims to develop a thermally conductive backfill by applying the prepacked concrete concept, in which a coarse aggregate with relatively high thermal conductivity was first filled and then the voild filled with grout. Backfill with improved thermal conductivity can increase the heat exchange efficiency of underground heat exchangers or underground transmission facilities. The backfills was prepared by using crushed concrete as the coarse aggregate, fly ash-based grout, and a small amount of cement for solidification. The results of this study showed that the fly ash-cement-sand-based grout with a flow of at least 450 mm accor ding to ASTM D 6103 could fill the void of pr epactked coar se aggr egates with a maximum size of 25 mm. The thermal conductivity of the backfil with coarse aggregate was over 1.7 W/m·K, which was higher than that of grout-type backfills.