• Title/Summary/Keyword: 사염화티타늄

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A Study on the Thermochromic properties of Ti-doped Vanadium Dioxide (티타늄이 도핑된 이산화 바나듐의 열변색 특성에 관한 연구)

  • Park, Jin Wook;Park, Seong-Soo;Ahn, Byung Hyun;Hong, Seong-Soo;Lee, Gun Dae
    • Clean Technology
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    • v.21 no.4
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    • pp.235-240
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    • 2015
  • In this study, vanadium dioxide was doped with titanium (0~0.5 at %) to improve thermochromic properties. The titanium doped vanadium dioxide (Ti-VO2) particles were prepared via thermolysis process using vanadyl sulfate, ammonium bicarbonate and titianium chloride as precursors. The crystal structure, morphology, chemical bonding and thermochromic properties were investigated by using XRD, FE-SEM, XPS, DSC and UV-Vis-NIR spectroscopy. It was found that titanium was successfully doped into the crystal lattice of VO2 and the obtained Ti-VO2 particles have monoclinic structure. With increasing Ti concentration, the particle size and phase transition temperature of Ti-VO2 particles decreased and NIR switching efficiency increased.

Preparation and Characterization of Fine $TiO_2$ Powders by Vapor-Phase Hydrolysis of TiCl4 (사염화티타늄의 기상가수분해반응에 의한 $TiO_2$ 미분의 제조 및 입자특성)

  • 염선민;김광호;신동원;박찬경
    • Journal of the Korean Ceramic Society
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    • v.29 no.7
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    • pp.525-532
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    • 1992
  • TiO2 fine powder was synthesized in the gas phase by chemical vapor deposition using hydrolysis of TiCl4. Content of rutile phase in the powder was investigated. Powder characteristics such as size, crystallinity and morphology were also studied by means of TEM, SEM and XRD. Rutile phase in TiO2 powder started to be formed from 100$0^{\circ}C$ and the content increased with the reaction temperature and TiCl4 concentration. As the temperature increased from 80$0^{\circ}C$ to 140$0^{\circ}C$, the primary particle size increased while secondary particle size decreased. Spherical secondary particle with fine primary crystals agglomerated was produced at low temperature of 80$0^{\circ}C$ whereas the grown primary particle being final particle size was produced at higher temperature of 140$0^{\circ}C$. Other effects of TiCl4 and H2O partial pressures on particle size were also reported in this study.

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Effect of TiCl4 Concentration and Mixing Intensity on Phosphorus Removal in Synthetic Wastewater (TiCl4 농도와 교반강도가 수중 인 제거에 미치는 영향)

  • Seo, Wan-Woo;Lee, Bong-Hee;Park, Hwa-Soo;Kim, Jong-Ho;Ahn, Johng-Hwa
    • Journal of Korean Society of Environmental Engineers
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    • v.38 no.3
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    • pp.150-153
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    • 2016
  • This study evaluates the efficacy of titanium tetrachloride ($TiCl_4$) on phosphorus (P) removal in synthetic wastewater. Jar test experiments were performed at various $TiCl_4$ concentration (0.25-0.59 mM), and intensities of slow (30-60 rpm) and rapid (100-250 rpm) mixings to determine the conditions at which P removal was most efficient. The P-removal efficiency was highest (about 99%) at $TiCl_4$ concentration $([TiCl_4])=0.39mM$ with rapid-mixing intensity=100 rpm and slow-mixing intensity=30 rpm. The slow-mixing intensity was more sensitive than the rapid-mixing intensity to the P removal efficiency when [$TiCl_4$] was low ($0.25{\leq}[TiCl_4]{\leq}0.27mM$).

Effect of Calcium Ion and Initial pH on Phosphorus Removal using TiCl4 Coagulant (칼슘이온과 초기 pH가 TiCl4 응집제의 인 제거에 미치는 영향)

  • Kang, Seong Hyeon;Kang, Jang Hyeon;Kim, Han Gyul;Jeong, Hee Hoon;Kim, Jong Ho;Ahn, Johng-Hwa
    • Journal of Korean Society of Environmental Engineers
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    • v.39 no.3
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    • pp.164-168
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    • 2017
  • This study experimentally determined the effect of calcium ion ($Ca^{2+}$) (0-0.55 mM) and intial pH (4.0-10.0) on phosphorus (P) removal in synthetic wastewater (2 mg P/L) using titanium tetrachloride ($TiCl_4$) (0.12-0.18 mM). At TiCl4 concentration ([$TiCl_4$]) = 0.12 mM, the P removal efficiency was the highest (95.1%) at pH 7 but the efficiency decreased to 51.4% at pH 8. The P removal efficiency was 55.6% at $Ca^{2+}$ concentration ([$Ca^{2+}$]) = 0 mM but the efficiency increased to 90.5% at [$Ca^{2+}$] = 0.045 mM at [$TiCl_4$] = 0.12 mM. On the other hand, the P removal efficiency difference was not large (96.5-99.5%) with [$Ca^{2+}$] at [$TiCl_4$] = 0.15-0.18 mM. Within the design boundaries of $0.00{\leq}[Ca^{2+}]{\leq}0.18mM$ and $7.0{\leq}initial$ $pH{\leq}9.0$ at [$TiCl_4$] = 0.12 mM, the 90% P removal efficiency could be achieved at $[Ca2+]{\geq}0.10mM$ with pH 8.0 and $[Ca2+]{\geq}0.12mM$ with pH 9.0.