• Title/Summary/Keyword: desorption-resistance

검색결과 70건 처리시간 0.032초

The Effect of K Promoter on Ni-Co (Bimetallic) Catalyst for Dry Methane Reforming

  • Dharmasaroja, Nichthima;Phongaksorn, Monrudee;Tungkamani, Sabaithip;Ratana, Tanakorn;Sornchammi, Thana
    • International Journal of Advanced Culture Technology
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    • 제3권2호
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    • pp.110-117
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    • 2015
  • 10 wt% (Ni-Co) catalysts with different Ni and Co content : 10%Ni, 9%Ni1%Co, 7%Ni3%Co, 5%Ni5%Co, 3%Ni7%Co, and 10%Co; were prepared using sol-gel method followed by incipient wetness impregnation method. To investigate the catalytic activity including the stability, dry methane reforming were demonstrated over the pelletized catalysts at $620^{\circ}C$ under atmospheric pressure in a $CH_4:CO_2:N_2$ feedstock for 360 min. The results showed that bimetallic catalysts with the Co content equal to or greater than 3% were more stable than monometallic catalysts (10%Ni and 10%Co). The temperature programmed hydrogenation interpreted that the additional of Co into Ni catalyst improved the carbon resistance from methane cracking. Promoted this type of bimetallic catalyst using 1wt% K (trimetallic catalyst) prevented the carbon formation on the catalyst. The temperature programmed desorption of $CO_2$ indicated that this trimetallic catalyst has a greater number of strong basic sites. Moreover, the appearance of K lowered the number of weak basic sites and decreased the conversion of methane by 12 %.

Electrical properties and thermal stability of oxygen incorporated GeSbTe films

  • 장문형;박승종;임동혁;박성진;조만호;조윤호;이종흔
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2009년도 제38회 동계학술대회 초록집
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    • pp.155-155
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    • 2010
  • Oxygen incorporated $Ge_2Sb_2Te_5$ (GST) films were prepared by an ion beam sputtering deposition (IBSD) method. From the I-V curves, the $V_{th}$ value varies with the oxygen content. Ge-deficient hexagonal phases are responsible for the observed unstability and decrease in $V_h$ values. In the case of a GST film with an elevated oxygen content of 30.8 %, the GST layer melted at 9.02 V due to the instability conferred by the high oxygen content. The formation of Ge-deficient hexagonal phases such as $GeSb_2Te_4$ and $Sb_2Te_3$ appear to be responsible for the $V_{th}$ variation. Impedance analyses indicated that the resistance in GST films with oxygen contentsof 16.7 % and 21.7 % had different origins. Thermal desorption spectroscopy (TDS)data indicate that moisture and hydrocarbons were more readily desorbed at higher oxygen content because the oxygen incorporated GST films are more hydrophilic than undoped GST films.

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Essential oil impregnation into graphene sponges with electric desorption control

  • Mendez, Jose Antonio Cabello;Bueno, Jose de Jesus Perez;Valencia, Jorge Ivan Mendoza;Soto, Jonathan Soto;Lopez, Maria Luisa Mendoza;Guerrero, Mizraim Uriel Flores
    • Advances in nano research
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    • 제12권6호
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    • pp.629-638
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    • 2022
  • This work shows the impregnation of scents using a graphene sponge (GS). This was functionalized by the modified Hummers method, pursuing to add different functional groups. It is proposed to achieve the release and seek to control it through electrical potential applied to the graphene sponge with essential oils. The graphene sponge was functionalized and steeped with two kinds of oil. The electrochemical study demonstrates the variation in the electrochemical behaviour of the functionalized graphene sponge without and impregnated with oil. The release of the oil and its aromatic scents was carried out by applying an electrical potential of 30 V, with a release rate of 1.86 mg/min. The heating of the sample that causes the release of oil, associated with the electrical resistance of the system, reaches temperatures of about 150℃. The essential oils, graphene sponge, surfactant, graphene sponge with essential oils, graphene sponge recuperated after applying electric potential, graphene sponge recovered by temperature and dipropylene glycol (DPG) were characterized using Fourier transformed infrared spectroscopy (FTIR), digital microscopy, and x-ray photoelectron spectroscopy (XPS).

Advancements in Photoactivated Gas Sensors: A Review

  • Kichul Lee;Inkyu Park
    • 센서학회지
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    • 제33권5호
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    • pp.359-365
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    • 2024
  • Chemiresistive semiconductor metal oxide (SMO) gas sensors detect gases based on resistance changes caused by gas adsorption/desorption on SMOs. These sensors have witnessed significant advancements with the development of microelectromechanical systems (MEMS) and nanotechnology. MEMS technology has facilitated mass production, miniaturization, and uniformity across sensors. Whereas, nanotechnology has contributed to the development of high-sensitivity gas sensing materials with large surface areas, catalytic coatings, and hybrid SMO junctions. However, SMOs require activation via external energy to overcome their bandgap energy and generate hot electron carriers, which are essential for high sensitivity and fast response/recovery times. Traditionally, embedded heaters have been used for this purpose; however, micro-and nano-heaters are plagued by high power consumption and low durability, which limit their use in mobile applications. Consequently, photoactivated gas sensing using light sources (e.g., lamps and LEDs) has garnered attention as an alternative approach. This study reviewed the progress from early lamp and LED-based research to recent studies on monolithic micro-LED (µLED) based gas sensors. µLED gas sensors facilitate room-temperature operation and ultra-low power consumption within the microwatt range. Consequently, they are highly suitable for integration into consumer electronics, smart farms, smart factories, and mobile gas sensors.

Mini-review on VO2-based Sensors Utilizing Metal-insulator Transition

  • Hyeongyu Gim;Minho Lee;Woojin Hong;Kootak Hong
    • 센서학회지
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    • 제33권5호
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    • pp.265-273
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    • 2024
  • With the advent of artificial intelligence and Internet of Things, demands for high-performance sensors with high sensitivity and ultrafast response for big data acquisition and processing have increased. VO2, a strongly correlated material, has been shown to exhibit a reversible and abrupt resistance change in the sub-nanosecond scale through a phase transition from an insulating to a metallic state at 68℃. The metal-insulator transition (MIT) of VO2 provides the potential for the development of highly sensitive and ultrafast high-performance sensors. This is because it can be triggered by various external stimuli, such as heat, light, gas adsorption/desorption, and strain. Therefore, attempts have been made to develop high-performance sensors by controlling the MIT of VO2 in response to external stimuli. This study reviewed recent progress in various VO2-based sensors that utilize MIT, including photodetectors, gas sensors, and strain sensors. This review is expected to serve as an overview of the approaches for controlling the MIT behavior of VO2 and provide insights into the design of high-performance sensors that exploit MIT.

NH4+Y-zeolite의 개질을 통한 벤젠 흡·탈착 성능 증진 연구 (A Study on the Modification of NH4+Y-zeolite for Improving Adsorption/Desorption Performance of Benzene)

  • 장영희;노영일;이상문;김성수
    • 청정기술
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    • 제25권1호
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    • pp.33-39
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    • 2019
  • 활성탄(activated carbon, A.C)은 휘발성 유기화합물(volatile organic compounds, VOCs) 제거를 위해 가장 많이 사용되고 있지만 흡/탈착 시 열화현상으로 인한 화재위험성, 잦은 교체 주기로 인한 비용 부담, 수분에 의한 성능 저하 등의 문제점을 가지고 있다. 이러한 문제들을 해결하기 위하여 소수성 제올라이트 흡착제가 연구되고 있다. 본 연구에서는 소수성 개질법 중 하나인 수증기처리 및 산 처리를 통해 $NH_4{^+}Y$-zeolite를 소수성 Y-zeolite로 합성하여 높은 표면적, 열적 안정성과 습도저항성을 확보하고자 하였다. Y-zeolite와 개질된 Y-550-HN, Y-600-HN, Y-650-HN의 흡착성능은 23, 38, 77, $61mg\;g^{-1}$으로 나타났으며, 소수성 개질 정도를 확인할 수 있는 지표인 Si/Al ratio 변화를 XRF 분석으로 확인하였다. 그 결과, Y-zeolite를 개질하였을 때 흡착성능이 증진되었고, Si/Al 비는 Y, Y-550-HN, Y-600-HN, Y-650-HN 순으로 각각 3.1765, 6.6706, 7.3079, 7.4635 임을 확인하였다. 반면에 높은 열처리 온도에 의한 구조적 결정화가 성능 저하에 영향을 미칠 수 있음을 확인하였다. 반면에 Y-zeolite의 최적 열처리 온도가 존재하며, 이와 같은 최적 개질 조건 연구는 높은 내구성과 안정성을 갖는 흡착제를 제조할 수 있는 조건으로써 향후 활성탄을 대체할 수 있을 것으로 판단하였다.

축전식 탈염에서 전극반응에 의한 스케일 생성과 탈염성능에 미치는 영향 (Scale Formation by Electrode Reactions in Capacitive Deionization and its Effects on Desalination Performance)

  • 최재환;강현수
    • 공업화학
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    • 제27권1호
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    • pp.74-79
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    • 2016
  • 막결합 축전식 탈염(MCDI)의 운전과정에서 전극반응에 의한 경도물질의 스케일 생성이 탈염성능에 미치는 영향을 연구하였다. $Ca^{2+}$ 이온을 함유한 유입수에 대해 흡착 및 탈착과정을 반복하면서 사이클에 따른 유출수의 농도와 셀 전위의 변화를 분석하였다. 셀 전위가 약 0.8 V 이상에서 음극에서 수산화이온 생성반응이 시작되는 것을 알 수 있었다. 또한 전극반응으로 생성된 $OH^-$ 이온이 흡착된 $Ca^{2+}$ 이온과 결합하여 음극 탄소전극 표면에서 $Ca(OH)_2$ 스케일이 생성되었다. 스케일이 생성되면서 탄소전극의 전기저항이 증가하여 흡착량은 크게 감소하였다. 셀 전위를 1.5 V에서 운전한 경우 스케일의 영향으로 흡착량은 초기 흡착량의 58%까지 감소하였다.

편성물의 섬유의 종류, 실의 굵기 및 니트타입에 따른 투습완충능력 (Effect of Fiber Content, Yarn Size and Construction of Knit Fabrics on the Buffering Capacity against Water Vapor)

  • 유화숙;허윤숙;김은애
    • 한국의류학회지
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    • 제20권1호
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    • pp.228-238
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    • 1996
  • The purpose of this study was to evaluate the effect of chacteristics of knit fabrics on the microclimate of the skin simulating system. To determine the effect of characteristics of knit fabrics, vapor state of sweat pulse was simulated in the closed system. Different contents of fibers such as cotton, wool and polyester with different yarn size and knit types were chosen for specimens. The changes of humidity and temperature of air layer in the simulated systems were measured. Buffering indices, $K_d$ and $\beta_r$, were determined by considering $\alpha_p, \DeltaP_{max}, t_{max}, and tan\beta$. Physical properties of knit fabrics such as thickness, porosity, air resistance and moisture vapor transport were measured. Results showed that vapor pressure of wool was lower than cotton or polyester This was attributed to the hydrophilicity of wool which absorbed moisture rather quickly and retained in the knit fabric. The time to decrease vapor pressure was faster for polyester than cotton or wool. As a result, $K_d$ was in the order of wool> polye, item> cotton. $\beta_r$ of wool was rower than cotton or polyester due to its lowers porosity and slower desorption rate. For the yarn size, $K_d$ was in the order of 80's> 60's> 30's; thinner and lighter yarn showed better water vapor transport property. For knit type, buffering capacity of single jersey was better than interlock knit fabric. Statistical analysis showed that the air permeability was the most influential factor far the water vapor transport properties.

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SOFC용 LSCF/CGO 공기극의 제조 및 특성연구 (Synthesis and Characterization of LSCF/CGO Composite Cathode for SOFC)

  • 박재량;임탁형;이승복;박석주;신동렬;한규승;송락현
    • 한국수소및신에너지학회논문집
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    • 제21권1호
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    • pp.19-25
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    • 2010
  • Composites of LSCF($La_{0.6}Sr_{0.4}Co_{0.2}Fe_{0.8}O_{3-\delta}$) and CGO (gadolinium doped ceria)-based ceramics are logical candidate cathode materials with CGO electrolytes. LSCF with perovskite structure was synthesized and investigated by Solid State Reaction (SSR) method used as cathode materials for SOFC (solid oxide fuel cell). The optimized temperature was $1100^{\circ}C$ to synthesize $La_{0.6}Sr_{0.4}Co_{0.2}Fe_{0.8}O_{3-\delta}$ with rhombohedral structure. The polarization resistance of the LSCF/CGO (50:50 wt.%) was smaller than that of other composite cathodes. The analysis of the EIS data of LSCF/CGO suggests that the diffusion and adsorption-desorption of oxygen can be the key process in the cathodic reaction.

Stress Tolerance of Bifidobacterium infantis ATCC 27920 to Mild-heat Adaptation

  • Kang, Seok-U;Kim, Young-Hoon;Cho, In-Shick;Kang, Ja-Heon;Chun, Il-Byung;Kim, Kwang-Hyun;Oh, Se-Jong
    • Food Science and Biotechnology
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    • 제18권1호
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    • pp.249-252
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    • 2009
  • Two-dimensional gel electrophoresis (2-DE) was employed to assess the thermo-tolerance characteristics of Bifrdobacterium infantis ATCC 27920 to mild heat adaptation. When exposed to various heat levels, pH, and hydrogen peroxide ($H_2O_2$) stress conditions, B. infantis ATCC 27920 exhibited high level of stress resistance. Under mild-heat treatment ($46^{\circ}C$), no significant change in viability level was observed after 2 hr. Interestingly, improved viability was observed in mild-heat adapted ($46^{\circ}C$ for 1 hr) cultures exposed to $55^{\circ}C$, in comparison to control experiments. Viability was not affected by pH, bile, and $H_2O_2$ stress conditions. 2-DE analysis revealed those mild-heat adaptation up-regulated 4 proteins and down-regulated 3 proteins. Among these protein spots, isopropyhnalate dehydratase (leuD), glycosyltransferase (glgA), and ribosomal protein L5 (rp1E) were identified by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALD1-TOF/MS).