• 제목/요약/키워드: 11${\AA}$Tobermorite

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알루미나가 11Å Tobermorite의 수열합성에 미치는 영향 (Influence of Alumina on Hydrothermal Synthesis of 11Å Tobermorite)

  • 임굉;임재석
    • 한국재료학회지
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    • 제15권2호
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    • pp.97-105
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    • 2005
  • [ $11\AA$ ] tobermorite$(5CaO{\cdot}6SiO_2{\cdot}5H_2O)$ is synthesized from the mixtures of calcium hydroride and quartz using alumina in a molar ratio $Ca(OH)_2/SiO_2$ of 0.8 at $180^{\circ}C$ for 8 and 24 hrs under saturated steam pressure. The influence of alumina on the formation of $11\AA$ tobermorite was investigated by X-ray diffraction, differential thermal analysis and infrared spectroscopy. $11\AA$ tobermorite containing increasingly larger amounts of aluminum showed a shift of the basal spacing from 11.3 to $11.6\AA$. In general, there was a direct linear relation between the basal spacing and added content of alumina. The differential thermal analysis curves showed that $11\AA$ tobermorite with increasing alumina contents exhibited the exothermic peak at high temperature, namely $11\AA$ tobermorite containing aluminum gave a sharp exothermic peak at temperature around $850\~860^{\circ}C$ in the case of $S_3\~S_5$. The absorption band at $1607\~1620cm^{-1}$ is attributed to the bending vibration of water, and the position of the main O-H stretching and Si-O lattice vibration of $11\AA$ tobermorite at 3500 and $965cm^{-1}$ respectively is not altered. Consequently the existence of alumina accelerates the crystallization of $11\AA$ tobermorite, and that the aluminum ion appears to substitute for the silicon ion in $11\AA$ tobermorite structure. Al-containing tobermorite is distinguished from Al-free tobermorite.

Tobermorite의 가열변화 -규산칼슘 수화물의 가열성상에 관한 연구(II)- (The Thermal Transformation of Tobermorite-Studies on The Thermal Transformation of Calcium Silicate Hydrates(II)-)

  • 이종근;최상흘;한상목
    • 한국세라믹학회지
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    • 제11권4호
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    • pp.25-30
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    • 1974
  • The mixture of quartz powder and slaked lime with plenty water was oscillated in an autoclave and treated hydrothermally under the pressure of 10 kg/$\textrm{cm}^2$ for 8 hours. The main mineral synthesized was confirmed 11$\AA$ tobermorite by the method of X-ray diffraction and selected area electron diffraction. Tobermorite was heat-treated at 40$0^{\circ}C$, 80$0^{\circ}C$ and 100$0^{\circ}C$ for investigation of transformation of morphology and structure. Electron micrographs showed the thin platy structure of synthetic tobermorite with a little of crumpled foil or fibrous semi-crystalline calcium silicate hydrates. No difference in structure was appeared under the temperature of 80$0^{\circ}C$ but tobermorite converted gradually into wollastonite at 800$^{\circ}$~85$0^{\circ}C$. On heating, moulded material from tobermorite hardly shrinks under 80$0^{\circ}C$.

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$CaO-SiO_2-H_2O$ 계 수열반응에 미치는 NaOH와 KOH의 영향 (The Effect of NaOH, KOH on the Hydrothermal Reaction of $CaO-SiO_2-H_2O$ System)

  • 이경희
    • 한국세라믹학회지
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    • 제18권3호
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    • pp.147-151
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    • 1981
  • On the calcium silicate hydrothermal reaction, the effect of NaOH and KOH Studied. Forincreasing the yield of fibers and to promote crystal growth, Rotary autoclae has been used. By addition NaOH solution, approximately 150${\mu}{\textrm}{m}$ of pectolite was grown. By addition KOH solution, approximately 30${\mu}{\textrm}{m}$ of 11$\AA$-Tobermorite was grown under the conditon of 21$0^{\circ}C$ 10 days reaction. These results indicate that 11$\AA$-Tobermorite was stabilized by KOH over a wide Temperature and composition range.

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Hydrothermal Synthesis and Transition Metal Cations Exchange Characterization of Titanium and [Titanium+Alkali Metals] Substituted-11Å Tobermorites

  • El-Korashy, S.A.
    • 대한화학회지
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    • 제48권2호
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    • pp.129-136
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    • 2004
  • 타이테늄과 [타이테늄 + 나트륨 (칼륨)]으로 치환된 11${\AA}$의 토버모라이트 고체가 180 $^{\circ}C$의 수열반응 조건하에서 합성되었고, 이 화합물은 Fe$^{2+},\;Zn^{2+},\;Cd^{2+},\;Pb^{2+}$과 같은 중금속 양이온에 대해서 양이온 교환 성질을 보였다. 이 고체에 흡착된 중금속 양이온은 Fe$^{2+}>Zn^{2+}>Cd^{2+}>Pb^{2+}$의 순서로 그 양이 감소하였고, 10% [타이테늄 + 칼륨]으로 치환된 토버모라이트가 최대값을 보였다. 총 양이온 교환능은 10% [타이테늄 + 칼륨]으로 치환된 토버모라이트와 타이테늄으로만 치환된 토버모라이트에 대해서 각각 71에서 89 meq/100 g와 50에서 56 meq/100 g로 측정되었다. 이 결과는 10% [타이테늄 + 칼륨]치환이 비치환 토버모라이이트 보다 2.4배 이상의 양이온 교환능이 있음을 보여준다. 이는 교환체의 활성자리 수의 증가에 의한 것이다. 합성된 토버모라이트의 격자구조로의 타이테늄과 [타이테늄 + 나트륨 (칼륨)]의 포함은 각각 Ti$^{4+}\;{\Leftrightarrow}\;2Ca^{2+}$와 Ti$^{4+}+2Na^+(K^+)\;{\Leftrightarrow}\;3Ca^{2+}$의 치환에 의한 것이다. 합성과정 중 고체의 결정 격자로의 타이테늄과 [타이테늄 + 나트륨 (칼륨)]의 포함에 관한 메커니즘과 이들 고체에 의한 중금속 양이온 흡수가 연구되었다.