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Hydrogen Fuel Production from Methane Gas Using Plasma Reforming under Atmospheric Pressure 常压等离子体重整甲烷制氢
Pub Date : 2016-04-01 DOI: 10.3131/jvsj2.59.105
M. Tada, A. Nagata
Hydrogen fuel production from methane gas is studied by using the plasma reforming technology using dielectric barrier discharge (DBD) which is eco-friendly method without generating harmful gas of carbon monoxide or carbon dioxide. Hydrogen production properties were evaluated in velocity control of gas ‰ow due to the reactor gaps and gas convection time during DBD plasma reforming. High hydrogen production was attainable by using the plasma reactor having wide gap at higher input power region. Moreover, it was found that hydrogen production was highly reformed at lower input power by making use of the convection eŠect of induced gas ‰ow by the DBD plasma generated in airtight reactor ˆlled up with the gas.
采用介质阻挡放电(DBD)等离子体重整技术,研究了不产生一氧化碳和二氧化碳等有害气体的甲烷气体制氢技术。对DBD等离子体重整过程中由于反应器间隙和气体对流时间影响的气体流速控制进行了产氢性能评价。采用宽间隙等离子体反应器,在较高的输入功率范围内实现了高产氢。此外,还发现在较低的输入功率下,利用密闭反应器中产生的DBD等离子体对诱导气体的对流eŠect与气体相结合,制氢效率较高。
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引用次数: 0
有機 EL 素子作製のための低ダメージスパッタ堆積法の開発 低伤害溅射物沉积法的开发用于有机EL元件的制备
Pub Date : 2016-01-01 DOI: 10.3131/JVSJ2.59.59
陽一 星, 信一 小林, 孝之 内田, 豊明 澤田
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引用次数: 2
Construction of a Simple Metal Evaporator Mounted on a Conflat Flange with an Outer Diameter of 70 mm 一个简单的金属蒸发器的结构安装在一个平面法兰与外径70毫米
Pub Date : 2016-01-01 DOI: 10.3131/jvsj2.59.138
Masato Tanaka, H. Kodama, Kenta Hiraga, Nariaki Shohata, Yusaku Takano, Kotaro Yanase, T. Kikuchi, K. Mase
Construction of a Simple Metal Evaporator Mounted on a Con‰at Flange with an Outer Diameter of 70 mm Masato TANAKA1, Hiraku KODAMA2, Kenta HIRAGA2, Nariaki SHOHATA3, Yusaku TAKANO4, Kotaro YANASE4, Takashi KIKUCHI5 and Kazuhiko MASE5,6,a) 1Department of Electronics and Mechanical Engineering, Faculty of Engineering, Chiba University, 133 Yayoi-cho, Inage-ku, Chiba-shi, Chiba 2638522, Japan 2Department of Physics, Faculty of Engineering, Yokohama National University, 795 Tokiwadai, Hodogaya-ku, Yokohama-shi, Kanagawa 2408501, Japan 3College of Engineering Sciences, Third Cluster of Colleges, University of Tsukuba, 111 Tennodai Tsukuba-shi, Ibaraki 3058573, Japan 4Faculty of Education, Gunma University, 42 Aramaki, Maebashi-shi, Gunma 3718510, Japan 5Institute of Materials Structure Science, KEK, 11 Oho, Tsukuba-shi, Ibaraki 3050801, Japan 6SOKENDAI (The Graduate University for Advanced Studies), 11 Oho, Tsukuba-shi, Ibaraki 3050801, Japan
构建一个简单的金属蒸发器安装在法兰Con‰的外径70毫米Masato田中Hiraku2 KODAMA Kenta HIRAGA2,Nariaki SHOHATA3 Yusaku TAKANO4,Kotaro濑进4,隆菊池5和Kazuhiko激射微波56 a)1电子和机械工程系,工程学院,千叶大学,133 Yayoi-cho Inage-ku, Chiba-shi,千叶263年至8522年,日本2物理系,工学院,795 Tokiwadai,横滨国立大学Hodogaya-ku Yokohama-shi,神奈川2408501、日本3工程科学学院,第三批大学,筑波大学,111 Tennodai Tsukuba-shi,茨城县305年至8573年,日本4教师教育、群马县大学42 Aramaki, Maebashi-shi,群马县371年至8510年,日本5材料结构科学研究所、钥匙、11嗳哟,Tsukuba-shi,茨城县305年至0801年,日本6 sokendai(高级研究研究生院),11嗳哟,Tsukuba-shi、茨城3050801,日本
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引用次数: 0
化学気相成長(Chemical Vapor Deposition: CVD)法の基礎 化学气相生长(Chemical Vapor Deposition, CVD)法的基础
Pub Date : 2016-01-01 DOI: 10.3131/JVSJ2.59.171
敦 関口
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引用次数: 3
小学生のための真空実験講座の開催報告—横浜市立大学エクステンション講座第5回親子実験教室—;小学生のための真空実験講座の開催報告—横浜市立大学エクステンション講座第5回親子実験教室—;Report on Vacuum Experiments for Elementary School Students —5 th Science Summer School of Yokohama City University Extension— 为小学生的真空实验讲座的举办报告-横滨市立大学延伸讲座第5回亲子实验教室-;为小学生的真空实验讲座的举办报告-横滨市立大学延伸讲座第5回亲子实验教室-;Elementary School Students for Elementary Report on Vacuum Experiments—5th科学Summer School of YokohamaCity University Extension -
Pub Date : 2016-01-01 DOI: 10.3131/jvsj2.59.364
Kazufusa Takahashi, Aki Tosaka
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引用次数: 0
M-342DG キャパシタンスゲージ M-342DG电容规
Pub Date : 2016-01-01 DOI: 10.3131/JVSJ2.59.255
治三 宮下, 永幸 大沼, 陽介 井出, 勲 望月, 典行 斉藤
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引用次数: 1
表面 X 線回折法の新展開 表面X射线衍射法的新展开
Pub Date : 2016-01-01 DOI: 10.3131/JVSJ2.59.26
徹郎 白澤
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引用次数: 0
Crystal Surface Studies by Reflection High-Energy Electron Diffraction 反射高能电子衍射法研究晶体表面
Pub Date : 2016-01-01 DOI: 10.3131/JVSJ2.59.19
A. Ichimiya
December 14, 2015 ) The re‰ection high-energy electron diŠraction ( RHEED ) is a powerful tool for surface studies and widely used for surface structural analysis in monitoring epitaxial growth. In this article, it is described that RHEED is developed as a tool in surface studies such as structure determination of crystal surfaces, evolution of surface structures by epitaxial growth and monitoring thin ˆlm growth processes. Recent novel RHEED techniques for surface structural
re‰高能电子diŠraction (RHEED)是一种强大的表面研究工具,广泛用于监测外延生长的表面结构分析。在本文中,描述了RHEED是作为表面研究的工具而发展起来的,例如晶体表面的结构测定,通过外延生长和监测薄膜生长过程的表面结构演变。表面结构的新型RHEED技术
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引用次数: 0
ガスシートを用いた電子ビームの検出;ガスシートを用いた電子ビームの検出;Detection of Electron Beam with a Gas Sheet 使用气体薄片的电子束检测;使用气体薄片的电子束检测;Gas Sheet Detection of Electron Beam with a Gas Sheet
Pub Date : 2016-01-01 DOI: 10.3131/JVSJ2.59.79
Norio Ogiwara, Yusuke Hikichi, Junichiro Kamiya, Michikazu Kinsho
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引用次数: 0
第55回真空夏季大学開催報告;第55回真空夏季大学開催報告;Report on the 55 th Vacuum Summer School 第55回真空夏季大学開催報告;第55回真空夏季大学開催報告;Report on the 55 th Vacuum Summer School
Pub Date : 2016-01-01 DOI: 10.3131/jvsj2.59.16
Junichiro Kamiya
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引用次数: 1
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Journal of The Vacuum Society of Japan
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