• Title/Summary/Keyword: 헥사알루미네이트

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Effect of Water Wash and Dry Temperature in Homogeneous Precipitation Method on the Manufacture of Mn-added Barium Hexaaluminates (균일용액침전법에서 수세여부와 건조온도가 망간이 첨가된 바륨헥사알루미네이트의 제조에 미치는 영향)

  • Park, Ji Yun;Kim, Seo Young;Rhee, Young Woo
    • Korean Chemical Engineering Research
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    • v.59 no.3
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    • pp.435-442
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    • 2021
  • Mn-added Barium hexaaluminates were manufactured by homogeneous precipitation method using Urea. The effects of water wash and dry temperature were analyzed by thermal weight analysis, X-ray diffraction analysis, and scanning electron microscopy. Catalysts that went through the filtration step only produced pure hexaaluminate images compared to those that went through the water wash step. During the drying process, it seems that the remaining urea helps dehydration of the precursor and affects the phase shift of gibbsite to boehmite, which is easy to convert to pure hexaaluminate. The catalyst WO200 gave the best performance in the methane combustion reaction, and NOx was not emitted in the reaction for all catalysts. Hexaaluminates were found to affect reducing the highest CO emissions.

Decomposition of Eco-friendly Liquid Propellants over Platinum/Hexaaluminate Pellet Catalysts (백금/헥사알루미네이트 펠렛 촉매를 이용한 친환경 액체 추진제 분해)

  • Jo, Hyeonmin;You, Dalsan;Kim, Munjeong;Woo, Jaegyu;Jung, Kyeong Youl;Jo, Young Min;Jeon, Jong-Ki
    • Clean Technology
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    • v.24 no.4
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    • pp.371-379
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    • 2018
  • The objective of this study is to develop a platinum/hexaaluminate pellet catalyst for the decomposition of eco-friendly liquid propellant. Pellet catalysts using hexaaluminate prepared by ultrasonic spray pyrolysis as a support and platinum as an active metal were prepared by two methods. In the case of the pellet catalyst formed by loading the platinum precursor onto the hexaaluminate powder and then adding the binder (M1 method catalyst), the mesopores were well developed in the catalyst after calcination at $550^{\circ}C$. However, when this catalyst was calcined at $1,200^{\circ}C$, the mesopores almost collapsed and only a few macropores existed. On the other hand, in the case of a catalyst in which platinum was supported on pellets after the pellet was produced by extrusion of hexaaluminate (M2 method catalyst), the surface area and the mesopores were well maintained even after calcination at $1,200^{\circ}C$. Also, the catalyst prepared by the M2 method showed better heat resistance in terms of platinum dispersion. The effects of preparation method and calcination temperature of Pt/hexaaluminate pellet catalysts on the decomposition of liquid propellant composed mainly of ammonium dinitramide (ADN) or hydroxyl ammonium nitrate (HAN) were investigated. It was confirmed that the decomposition onset temperature during the decomposition of ADN- or HAN- based liquid propellant could be reduced significantly by using Pt/hexaaluminate pellet catalysts. Especially, in the case of the catalyst prepared by the M2 method, the decomposition onset temperature did not show a large change even when the calcination temperature was raised at $1,200^{\circ}C$. Therefore, it was confirmed that Pt/ hexaaluminate pellet catalyst prepared by M2 method has heat resistance and potential as a catalyst for the decomposition of the eco-friendly liquid propellants.

Preparation of Hexaaluminate Phosphor Particles with Spherical Shape by Gas Phase Reaction Process (기상 공정에 의한 구형 형상의 헥사알루미네이트계 형광체 제조)

  • Jung, Dae Soo;Hong, Seung Kwon;Koo, Hye Young;Ju, Seo Hee;Kang, Yun Chan
    • Korean Chemical Engineering Research
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    • v.43 no.5
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    • pp.616-620
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    • 2005
  • The morphology and photoluminescence characteristics of green light emitting hexaaluminate phosphor particles prepared by high temperature spray pyrolysis from spray solution with and without ammonium dihydrogen phosphate flux were investigated. The particles prepared from spray solution without flux material had hollow morphology at preparation temperatures between $900^{\circ}C$ and $1,650^{\circ}C$. Ammonium dihydrogen phosphate flux added into spray solution enabled the formation of particles with spherical shape and filled morphology at preparation temperatures between $900^{\circ}C$ and $1,650^{\circ}C$. The hexaaluminate phosphor particles with magnetoplumbite structure were directly prepared by spray pyrolysis from spray solution with ammonium dihydrogen phosphate flux above $1,600^{\circ}C$. Ammonium dihydrogen phosphate flux was effective in improving the photoluminescence intensity of the phosphor particles at low preparation temperatures. The phosphor particles prepared from spray solution with and without flux material by spray pyrolysis under reducing atmosphere at $1,650^{\circ}C$ had comparable photoluminescence intensities with that of the phosphor particles optimized by post-treatment.

Effects of Hexaaluminate Manufacturing on the Synthetic Time of Hydrothermal Synthesis Using Urea (요소를 이용한 수열합성의 합성시간에 따른 Hexaaluminate 제조의 영향)

  • Kim, Seo Young;Park, Ji Yun;Rhee, Young Woo
    • Clean Technology
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    • v.25 no.4
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    • pp.331-335
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    • 2019
  • Interest in environmental pollution is increasing all over the world, and technology development to solve it is actively carried out. In areas where heat is used, especially, combustion is causing countless pollutants in the air environment. Combustion catalyst is a technology that reduces NOx and CO by lowering combustion temperature and enabling complete combustion. Traditional combustion catalysts are expensive and complex in the synthesis process using precious metal catalyst. In this study, hexaaluminate, a high-temperature combustion catalyst, was manufactured using urea, and the properties were investigated according to the synthesis time. The combustion performance and characteristics were evaluated using this catalyst. As the temperature increased, the changing methane conversion rate was shown in two patterns. The conversion rates for 1 hour, 9 hours, and 12 hours were similar, while the conversion rates for 3 hours and 6 hours showed similar patterns. Methane combustion performance increased rapidly as the synthesis time increased from 6 hours to 9 hours, whereas the temperature at T50 was approximately 745 ℃. The performance of the synthesized combustion catalyst for 9 hours was optimum as the NOx emission of this combustion catalyst was not present and the maximum emission of CO was 72 ppm.

Synthesis of (${Ba_{1.3}}{Al_{12}}{O_{19}}$:$Mn^{2+}$) by Ultrasonic Spray Pyrolysis and Effect of Precursor Type on Morphology and Photoluminescence (초음파 분무 열분해법에 의한 바륨 헥사알루미네이트(${Ba_{1.3}}{Al_{12}}{O_{19}}$:$Mn^{2+}$) 제조 및 전구체 종류에 따른 형성과 발광 특성)

  • 김경화;강윤찬;김창해;박희동;최세영
    • Journal of the Korean Ceramic Society
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    • v.38 no.2
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    • pp.173-178
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    • 2001
  • 본 연구에서는 PDP용 녹색 형광체의 대안인 $Ba_{1.3}$A $l_{12}$ $O_{19}$:$Mn^{2+}$ 분말을 초음파 분무 열분해법으로 합성하였으며 활성제인 $Mn^{2+}$의 첨가량과 모체를 구성하는 바륨 및 알루미늄의 전구체 물질들의 조합을 변화시킴으로써 형광체 분말의 형태 및 발광특성을 조절하였다. 최적의 발광 휘도를 나타내는 $Mn^{2+}$의 농도는 0.25몰을 첨가하였을 때이며 녹색 발광 영역인 517nm에서 최대 발광 효율을 나타내었다. 바륨의 전구체 물질로는 초산염, 질산염, 염화물 및 수산화물을 사용하였으며 알루미늄 전구체 물질로는 질산염 및 염화물을 사용하였다. 전구체는 합성된 분말의 형상에 영향을 미치는데 구형을 유지하거나 혹은 뭉치거나 구형이 깨지는 등 전구체 조합에 따라 얻어지는 분말의 형태가 달라졌다. 합성된 형광체 분말들은 일반적인 고상 반응의 온도보다 낮은 열처리 온도인 140$0^{\circ}C$, 5시간 유지에서는 좋은 VUV 발광 특성을 가졌다. 또한 전구체의 조합은 형광체 발광 효율에도 영향을 미치는데 바륨과 알루미늄은 염화물을, 망간은 질산염을 사용하였을 때 가장 좋은 발광 휘도를 나타내었다.다.다.다.

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5 N Scale Preliminary Thruster Test with an ADN-based Monopropellant (5 N 급 ADN 기반 단일추진제 추력기 예비 연소 시험)

  • Monette, Maxime;Baek, Seungkwan;Kim, Juwon;Jung, Yeon Soo;Kim, Wooram;Jo, Youngmin;Lee, Jaewan;Kwon, Sejin
    • Journal of the Korean Society of Propulsion Engineers
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    • v.22 no.2
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    • pp.29-37
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    • 2018
  • This paper reports the preliminary firing test performed with an ADN-based monopropellant using a 5 N scale thruster. ADN-based propellant and catalyst was fabricated and catalytic combustion of propellant was characterized by DSC-TG analysis. Although an explosion in the catalyst bed was occurred, high temperature in the catalyst bed obtained and demonstrated catalytic combustion of the propellant. Preliminary test results motivates the research for catalysts with better thermal stability.

Catalytic Combustion of Methane over $AMnAl_{11}O_{19}$(A=La, Sr, Ba) and $CeO_2/LaAMnAl_{11}O_{19}$ ($AMnAl_{11}O_{19}$(A=La, Sr, Ba) 및 $CeO_2/LaAMnAl_{11}O_{19}$를 이용한 메탄의 촉매 연소)

  • Kim, Seongmin;Lee, Joon Yeob;Cho, In-Ho;Lee, Dae-Won;Lee, Kwan-Young
    • Korean Chemical Engineering Research
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    • v.49 no.5
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    • pp.633-638
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    • 2011
  • Mn substituted La, Sr or Ba-hexaaluminate were prepared by $(NH_4)_2CO_3$ co-precipitate method and calcined at $1,200^{\circ}C$ for 5 h. Catalysts were characterized by X-ray diffraction and $N_2$ physisorption and scanning electron microscope (SEM). Compared to $SrMnAl_{11}O_{19}$ and $BaMnAl_{11}O_{19}$, $LaMnAl_{11}O_{19}$ in which La located at mirror plane showed better crystallinity and high surface area, 13 $m^2/g$. $LaMnAl_{11}O_{19}$ revealed well developed plate-like structure which is characteristic structure of hexaaluminate. The catalytic activity of methane combustion increased in the following order: $LaMnAl_{11}O_{19}$ > $SrMnAl_{11}O_{19}$ > $BaMnAl_{11}O_{19}$ and was dependent on surface area of catalysts. 60 wt% $CeO_2/LaMnAl_{11}O_{19}$ calcined at $700^{\circ}C$ showed enhanced methane activity and methane was oxidized completely at low temperature ($700^{\circ}C$). It was confirmed that addition of ceria seems to be effective for the low and middle temperature combustion of methane. But, after calcination at high temperature of $1,200^{\circ}C$, it lost the promoting effect of ceria due to increase of ceria particle size and it had a limit to applying to the high temperature catalytic combustion.

Effects of Concentration of Precipitants and Aging Time on Synthesis of Mn-Substituted Barium Hexaaluminates by Homogeneous Precipitation (균일용액침전법을 이용한 침전제의 농도와 합성 시간에 따른 Mn이 대체된 바륨 헥사알루미네이트의 합성의 영향)

  • Park, Ji Yun;Jung, You Shick;Rhee, Young Woo
    • Korean Chemical Engineering Research
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    • v.56 no.3
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    • pp.349-355
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    • 2018
  • $BaMnAl_{11}O_{19}$ was prepared by urea-induced homogeneous precipitation and characterized by X-ray diffraction and scanning electron microscopy. At increased precipitant concentrations, AlOOH replaced $Al(OH)_3$ as an Al precursor. $BaMnAl_{11}O_{19}$ exhibited enhanced catalytic combustion performance and inhibited CO generation. Catalytic performance was also enhanced by the presence of $BaAl_2O_4$ and $BaMnAl_{11}O_{19}$. Compared to $BaAl_2O_4$, $BaMnAl_{11}O_{19}$ exhibited superior catalytic combustion activity.

Effect of Promoter on the Decomposition of Eco-Frendly Liquid Monopropellant on Cu/hexaaluminate Pellet Catalyst (Cu/hexaaluminate 펠렛 촉매를 이용한 친환경 액체 추진제 분해 반응에 미치는 조촉매의 영향)

  • Kim, Munjeong;Kim, Wooram;Jo, Young Min;Jeon, Jong Ki
    • Clean Technology
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    • v.26 no.3
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    • pp.196-203
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    • 2020
  • In this study, a Cu/hexaaluminate catalyst was prepared by a co-precipitation method, and then a binder was added to form a pellet. A catalyst in which Ni and Ru promoters were added to a Cu/hexaaluminate pellet catalyst was prepared. This study focused on examining the effect of the addition of Ni and Ru promoters on the properties of Cu/hexaaluminate catalysts and the decomposition reaction of ADN-based liquid monopropellants. Cu/hexaaluminate catalysts had few micropores and well-developed mesopores. When Ru was added as a promoter to the Cu/hexaaluminate pellet catalyst, the pore volume and pore size increased significantly. In the thermal decomposition reaction of ADN-based liquid monopropellant, the decomposition onset temperature was 170.2 ℃. Meanwhile, the decomposition onset temperature was significantly reduced to 93.5 ℃ when the Cu/hexaaluminate pellet catalyst was employed. When 1% or 3% of Ru were added as a promoter, the decomposition onset temperatures of ADN-based liquid monopropellant were lowered to 91.0 ℃ and 83.3 ℃, respectively. This means that the Ru promoter is effective in lowering the decomposition onset temperature of the ADN-based liquid monopropellant because the Ru metal has excellent activity in the decomposition reaction of ADN-based liquid monopropellant, simultaneously contributing to the increase of the pore volume and pore size. After the thermal treatment at 1,200 ℃ and decomposition of ADN-based liquid monopropellant were repeatedly performed, it was confirmed that the addition of Ru could enhance the heat resistance of the Cu/hexaaluminate pellet catalyst.