• Title/Summary/Keyword: 탈석회

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Experimental Study on Accelerated Carbonation Characteristics of OPC Paste for CSC-Based Low Carbon Precast Concrete Products (CSC 기반 저탄소 콘크리트 2차제품 제조를 위한 OPC 페이스트의 촉진탄산화 특성에 관한 실험적 연구)

  • Yoon, Jun-Tae;Kim, Young-Jin;Sim, Sang-Rak;Ryu, Dong-Woo
    • Journal of the Korea Institute of Building Construction
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    • v.24 no.3
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    • pp.285-295
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    • 2024
  • This study investigated the impact of accelerated carbonation on Ordinary Portland Cement(OPC) paste that had undergone steam curing at 500℃·hr. Two carbonation environments were examined: atmospheric carbonation(1atm, 20% CO2) and pressurized carbonation(5atm, 99% CO2). Chemical analysis using X-ray diffraction(XRD) and Fourier-Transform Infrared spectroscopy(FT-IR) were conducted, along with physical characterization via scanning electron microscopy(SEM) and compressive strength testing. Results indicated that atmospheric carbonation with 20% CO2 concentration significantly densified the internal microstructure of the OPC paste, leading to enhanced compressive strength. Conversely, pressurized carbonation at 5atm with 99% CO2 concentration resulted in rapid densification of the surface structure, which hindered CO2 diffusion into the sample. This limited the extent of carbonation and prevented the improvement of physical properties.

The Differences between Ruptured and Unruptured Mediastinal Teratoma (파열된 종격동 기형종과 단순 기형종과의 차이)

  • Cho, Suk-Ki;Lee, Eung-Bae
    • Journal of Chest Surgery
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    • v.42 no.3
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    • pp.355-360
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    • 2009
  • Background: Benign teratoma is mostly asymptomatic, but this tumor rarely ruptures into the adjacent structure such as the pleural space, pericardium, lung parenchyma or tracheobronchial tree. Thus, it is important to differentiate ruptured teratoma from unruptured teratoma. This study evaluated the difference between ruptured and unruptured benign teratoma. Material and Method: Twenty-four cases of surgically resected benign teratomas were reviewed retrospectively. The clinical symptoms, chest CT findings and operative findings of the ruptured teratoma were compared with those of the unruptured teratoma. Especially, the tumor size, wall thickness, location of the mass, internal septation, homogeneity, calcification and ancillary findings were evaluated on CT. Result: Of the 24 patients, 7 patients were diagnosed with ruptured teratoma. Severe symptoms were more commonly found for ruptured teratoma than for unruptured teratoma. The ruptured teratoma had a tendency to display calcification and such ancillary findings as collapse or consolidation of the lung parenchyma. For the ruptured teratoma, the resection was performed by sternotomy or thoracotomy, and more lung resection was included. Conclusion: Calcification within the mass and changes in the lung parenchyma on the preoperative CT findings can be diagnostic signs of a ruptured teratoma. The demonstration of ruptured teratoma is important not only for making the early diagnosis, but also for the surgical planning.

Biomineralization Strategy of Biocomposites on Regenerated Shell: Chitin Synthesis and Regenerated Shell Formtation by Deformed Oyster Shell (생체복합체의 재생패각 합성전략: 참굴 패각의 변형에 따른 키틴 합성 및 패각재생)

  • Lee, Seungwoo;Park, Seungbin;Yeong, Donghee;Choi, Cheongsong
    • Korean Chemical Engineering Research
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    • v.46 no.3
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    • pp.529-534
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    • 2008
  • The normal shell and the regenerated oyster shell, Crassostrea gigas, are separated according to the characteristics of inner shell morphology. To study characteristics of chitin obtained from the regenerated shell, chitin prepared by acid and alkali process is analyzed by FT-IR (Fourier transform infrared spectrometer) and XRD (X-ray Diffractometer). The content of insoluble protein in the normal shell was more than doubled as compared with that in the regenerated shell. A comparison of secondary structure of the normal shell and the regenerated shell revealed that the content of random of the regenerated shell was above 47%, indicating an amount in the structural unordered state. Through amino acid composition analysis and secondary protein structure of soluble protein isolated from the normal shell and the regenerated shell, it was found that there are differences in biomineralization strategy of the regenerated shell as compared to the normal shell. The relatively low hardness of the regenerated shell is caused by the change of amino acid composition and ordered secondary protein structure as compared to hardness of the normal shell.