• Title/Summary/Keyword: 시차열 중량분석

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Measurement of carbonation depth of concrete in old buildings and experimental evaluation of carbonation degree and CO2 absorption using differential thermal gravimetric analysis (노후 건축물의 콘크리트 탄산화 깊이 측정과 시차열 중량분석을 통한 탄산화도 및 CO2 흡수량 실험적 평가)

  • Lee, Sang-Hyun;Ki, Jun-Do;Cho, Hong-Bum;Park, Chang-Gun;Kim, Young-Sun;Moon, Hyung-Jae
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2022.11a
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    • pp.197-198
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    • 2022
  • Based on the carbonation depth measurement by the indicator for concrete collected from old structures and the quantitative analysis of Ca(OH)2 and CO2 in the carbonation section before and after the carbonation depth and in the non-carbonation section, the absorbable CO2 amount and carbonation degree measurement result is as follows 1) The carbonation depth of the 40-year-old reinforced concrete structure was measured to be about 22 mm. (basement interior wall, marble finish, strength 30MPa) 2) The amount of CO2 absorbed by the concrete was about 4.3% of the sample weight, and the carbonation degree was estimated to be about 53%.

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Measurement of Carbonation Depth of Concrete in Old Buildings and Experimental Evaluation of Carbonation Degree and CO2 Absorption Using Differential Thermal Gravimetric Analysis, Part2 (노후 건축물의 콘크리트 탄산화 깊이 측정과 시차열 중량분석을 통한 탄산화도 및 CO2 흡수량 실험적 평가, Part2)

  • Lee, Sang-Hyun;Ki, Jun-Do;Cho, Hong-Bum;Park, Chang-Gun;Kim, Young-Sun;Moon, Hyung-Jae
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2023.05a
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    • pp.317-318
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    • 2023
  • This study is part of the carbonation degree DB accumulation through quantitative analysis of carbonation depth, Ca(OH)2 and CO2 according to the type of finish and years of use of old concrete structures in order to predict the amount of CO2 that can be absorbed through carbonation of concrete. To this end, the depth of carbonation of the concrete core specimen is measured using an indicator, and the dry amount of water combined with CO2 in the sample is measured using a differential thermal gravimetric analyzer for samples in the carbonation area and non-carbonated area classified by the indicator, and the absorption compared to the weight of the sample. The amount of absorbed CO2 was calculated. In addition, the degree of carbonation was calculated through quantitative comparison of Ca(OH)2 in the carbonation section and non-carbonation section. In the future, we will continue to add the survey and analysis data of dismantled structures and use them as basic data for estimating the amount of carbon dioxide that can be absorbed according to the exposure conditions and years of use by concrete mix.

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Effects of Strain-Induced Crystallization on Mechanical Properties of Elastomeric Composites Containing Carbon Nanotubes and Carbon Black (탄소나노튜브 및 카본블랙 강화 고무복합재료의 변형에 의한 결정화가 기계적 특성에 미치는 영향)

  • Sung, Jong-Hwan;Ryu, Sang-Ryeoul;Lee, Dong-Joo
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.35 no.9
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    • pp.999-1005
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    • 2011
  • The effects of strain-induced crystallization (SIC) on the mechanical properties of elastomeric composites as functions of extension ratio (${\lambda}$), multiwalled carbon nanotube (CNT) content, and carbon black (CB) content are investigated. The differential scanning calorimetry (DSC) analysis shows that the degree of crystallinity increases with the increase in the CB and CNT content. As ${\lambda}$ increases, the glass transition temperature (Tg) of the composites increases, and the latent heat of crystallization (LHc) of the composites is maximum at ${\lambda}$=1.5. It is found that the mechanical properties have a linear relation with LHc, depending on the CNT content. According to the TGA (thermogravimetric analysis), the weight loss of the composite matrix is 94.3% and the weight of the composites decreases with the filler content. The ratio of tensile modulus ($E_{comp}/E_{matrix}$) is higher than that of tensile strength (${\sigma}_{comp}/{\sigma}_{matrix}$) because of the CNT orientation inside the elastomeric composites.

Thermal Characteristics for Cross-Linking Polyethylene (가교 폴리 에틸렌 수지의 열적 특성 분석)

  • Song, Woo-Chang;Park, Ha-Yong;Shim, Jae-Sun;Bae, In-Su;Song, Jin-Ho;Park, Young-Jik;Kweon, Myeong-Hyun
    • Proceedings of the KIEE Conference
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    • 2015.07a
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    • pp.1130-1131
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    • 2015
  • 팰릿 형태의 XLPE (Cross-Linking Polyethylene)를 Hot Press로 시험편을 제작하여 열분석 데이터 처리장치를 이용하여 시차 주사 열량법 (differential scanning calorimetry, DSC)과 열 중량 분석 (Thermo gravimetric analysis, TGA) 등으로 열적 특성을 분석하였다. 분석 결과, XLPE의 전이온도 피크는 $61^{\circ}C$, 용융온도에 해당하는 피크는 $102^{\circ}C$에서 나타났으며 XLPE의 TG 분석 결과 $470^{\circ}C$ 근처에서 한 번의 급격한 열중량 감소를 보였으며 $800^{\circ}C$까지 측정 후 잔류물은 완전 분해되어 거의 존재하지 않았음을 알 수 있었다.

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The material properties study of a construction sludge for recycling (건설오니(建設汚泥) 재활용(再活用)을 위한 재료적(材料的) 특성(特性) 연구(硏究))

  • Soung, Jin-Kyeong;Kim, Soon-Ho;Bae, Won-Tae;Jun, Myung-Hoon
    • Resources Recycling
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    • v.16 no.4
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    • pp.40-46
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    • 2007
  • This research constructed property analysis for an high additional value construction materials. We try to utilize by the addition material of soil stabilizer. It was described to the material properties analysis of a sludge. A sample used 4 kinds of filtration cake which occurs by 4 companies and 3 kinds of sludge before filtration. ph of a sludge, a particle analysis and a scanning electron microscope observation were performed. We analyzed on the chemical ingredient by XRF, the phase by XRD, observed and analyzed the thermo-property of the sludge and the amount of the volatile constituent by TG-DTA.

A Thermal Study of the Harmful Chemical Species of Charcoal and Their Transformation during Combustion (숯의 유해물질과 이들의 연소 중 상변화에 대한 열분석 연구)

  • Yoon, Hye-On;Kim, Ki-Hyun
    • Journal of the Mineralogical Society of Korea
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    • v.24 no.2
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    • pp.101-110
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    • 2011
  • Charcoal burning in the process of manufacture and ordinary use often release many constituent chemical species. As a result of open burning, the chemical composition as well as the physical properties of original material changes through the modification of surface properties of charcoal. Surface modification could be more responsible toward the outside elements for surface adsorption, it becomes easy to adsorb more toxic elements through surface adsorption. In this study, four kinds of commercially available charcoal were studied against the chemical and thermal stability along with the heavy metals and organic hazardous substances. Thermo gravimetric analysis (TGA) and differential scanning calorimetry, from room temperature to $400^{\circ}C$, were performed to study the weight loss and the changes in the behavior of those substances. According to TGA analysis, about 10% of weight loss was happened before $200^{\circ}C$. It was found that related weight loss of this temperature region may responsible to the gas phase organic matter. Natural charcoal, K1 and C1 show 15% of loss during the reaction heated to $400^{\circ}C$, while the artificial charcoal K2, C2 show the weight loss of about 20% was found. This is consistent with the main organic matter and VOC analysis results shown. Chemical composition based on the x-ray diffraction analysis was carried out. X-ray diffraction analysis reveals the existence of chemical additive in the forms of $Ba(NO_3)_2$, $BaCO_3$, and $NaNO_3$.

Study on the Thermal Characteristic Comparison of Fire.Explosion Hazard of Fugitive Dust Generated in the Manufacturing Process (제조공정상 발생하는 비산분진의 화재·폭발 위험성에 대한 열적특성 비교에 관한 연구)

  • Sun, Ko Jae
    • Journal of the Society of Disaster Information
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    • v.10 no.1
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    • pp.71-83
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    • 2014
  • This study carried out an experiment in order to compare thermal characteristics after collecting dust generated in the process of disposing of waste tire, plywood flour in the process of manufacturing plywood, salicylic acid dust in the process of manufacturing functional soap, and dust in the process of manufacturing wheat powder, which has potential fire and explosion hazard. According to the results of experiment, the analysis showed that all samples subject to the experiment were in the condition where heat flux decreased and temperature decreased as the quantity of added talc was increased. This shows that decomposition rate decreased, and hazard decreased. However, in all of samples subject to the experiment, as heating rate increased, endothermic onset temperature moved to the low-temperature part, and the amount of absorbed heat was largely increased. This showed that the decomposition hazard of sample increased as heating rate increased, according to the analysis. Besides, TGA experiment results showed that thermal stability was secured because total weight loss decreased as the amount of talc was increased for all samples subject to the experiment regarding the ratio of weight loss. It is expected that the continuous research and supplementation of dust explosion mechanism in the future will contribute to the establishment of measures for the effective dust explosion prevention.

Infrared Spectroscopy and Differential Scanning Calorimetry of Silk Fibroin/Hyaluronic Acid Blend Film (견피브로인/히아론산 브렌드 필름의 적외선 분광 분석 및 시차열분석)

  • Kweon HaeYong;Lee Kwang-Gill;Yeo Joo-Hong;Woo SoonOk;Han SangMi;Lee Yong Woo;Lee Jang Hern;Park Young Hwan
    • Journal of Sericultural and Entomological Science
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    • v.46 no.1
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    • pp.28-31
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    • 2004
  • Bombyx mori silk fibroin/hyaluronic acid blend films were prepared by mixing aqueous solution of B. mori silk fibroin and hyaluronic acid. According to the FTIR spectra, no interaction between silk fibroin and hyaluronic acid was found. The conformation of silk fibroin in blend films was changed from random coil to $\beta$-sheet structure by treatment of EDC ethanol solution. Thermal degradation peak of silk fibroin and hyaluronic acid was also not altered by blending each other. The average swelling ratio of silk fibroin/hyaluronic acid blend films was 70. Therefore, silk fibroin/hyaluronic acid blend films might be one of possible wound dressing materials.

Comparative Analysis of the Characteristics of Natural Zeolites from Mongolia, Korea, and the United State (몽골, 한국, 미국 천연 제올라이트의 특성 비교 분석)

  • Battsetseg, Bayarsaikhan;Kim, Hu Sik;Kim, Young Hun;Kim, Jeong Jin;Lim, Woo Taik
    • Korean Journal of Mineralogy and Petrology
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    • v.35 no.2
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    • pp.141-151
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    • 2022
  • The 16 natural zeolites collected from Mongolia (6 types), the United States (1 type), and Korea (9 types) were characterized by XRD, XRF, TGA, DTA, and CEC analysis. All 16 samples are composite minerals. Two or more mineral phases co-exist and consist primarily of minerals such as clinoptilolite, heulandite, mordenite, and chabazite. In certain samples, minerals like illite and quartz were present as impurities. The XRF analysis showed that the 16 natural zeolites contain SiO2, Al2O3, K2O, CaO, Na2O, MgO, and Fe2O3 oxides. The cation exchange capacity of the U-1 sample was 223.3 meg/100 g, which is higher than the rest of the samples. M-6 sample in Mongolian natural zeolite and K-1 sample in Korean natural zeolite showed the highest cation exchange capacity at 166.6 meg/100 g. As a result of thermal differential and thermos gravimetric analysis, all 16 samples showed excellent thermal stability up to 600℃.