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Performance Characteristics and Ion Beam Measurement of Hall-Effect Plasma Accelerator for Space Propulsion 空间推进用霍尔效应等离子体加速器性能特征及离子束测量
Pub Date : 2005-03-28 DOI: 10.7791/JHTS.31.129
H. Tahara, Seiro Yuge, A. Shirasaki, T. Yoshikawa
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引用次数: 2
Formation of Hard Surfacing Layers of WC-Co with Electron Beam Cladding Method 用电子束熔覆法制备WC-Co硬质堆焊层
Pub Date : 2005-03-28 DOI: 10.7791/JHTS.31.137
N. Abe, J. Morimoto
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引用次数: 1
アナターゼ型TiO 2 ナノ粒子造粒粉末を適用した光触媒TiO 2 溶射皮膜の相変態挙動と粒子成長制御;アナターゼ型TiO 2 ナノ粒子造粒粉末を適用した光触媒TiO 2 溶射皮膜の相変態挙動と粒子成長制御;Control of Phase Transformation and Growth of Primary Particle in Photocatalytic Coating Sprayed Using Agglomerated Anatase TiO2 Nano Particles 采用酶型TiO 2纳米粒子造粒粉末的光触媒TiO 2喷涂皮膜的相变态行为和粒子生长控制;采用酶型TiO 2纳米粒子造粒粉末的光触媒TiO 2喷涂皮膜的相变态行为和粒子生长控制;Control of Phase Transformation and Growth of Primary Particle in Photocatalytic Coating SprayedUsing Agglomerated Anatase TiO2 Nano Particles
Pub Date : 2004-11-19 DOI: 10.7791/JHTS.30.322
Junichi Yasuoka, Akira Ohmori
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引用次数: 1
Microstructure of Aluminum/Copper Lap Joint by Friction Stir Welding and Its Performance 搅拌摩擦焊铝/铜搭接接头的组织及性能
Pub Date : 2004-09-30 DOI: 10.7791/JHTS.30.286
A. Elrefaey, M. Takahashi, K. Ikeuchi
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引用次数: 24
Power Generation Characteristics and Performance Improvement of a Bio-fuel Cell Using Yeast 酵母生物燃料电池的发电特性及性能改进
Pub Date : 1900-01-01 DOI: 10.7791/JHTS.35.283
T. Wakisaka, Y. Takada, M. Azuma
Nowadays, bio-fuel cells which utilize the enzymes of microbes are widely noticed. In this study, the authors made a bio-fuel cell which utilized dry yeast along with sucrose as fuel, and conducted experiments under various conditions in order to improve its power generation performance. The kinds and concentrations of the electron mediator and oxidizer solutions and the number of current collectors in the anode and cathode were optimized. As a result, the single bio-fuel cell with six sheets of current collectors (each area was 20 cm) in each of the anode and cathode was able to generate the maximum power of about 9 mW. Moreover, the authors measured the performance of the fuel cell using wild yeast and analyzed the variations in the concentrations of reaction substances, and further conducted experiments using reagents affecting the metabolism of yeast in order to examine the electricity generation mechanism in the bio-fuel cell.
目前,利用微生物酶的生物燃料电池受到广泛关注。本研究以干酵母和蔗糖为燃料制备了一种生物燃料电池,并在各种条件下进行了实验,以提高其发电性能。优化了阳极和阴极中电子介质和氧化剂溶液的种类和浓度以及集流器的数量。结果,在阳极和阴极各有六层集流板(每个面积为20厘米)的单个生物燃料电池能够产生约9兆瓦的最大功率。此外,作者还利用野生酵母对燃料电池的性能进行了测试,分析了反应物质浓度的变化,并利用影响酵母代谢的试剂进行了实验,以探讨生物燃料电池的发电机制。
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引用次数: 2
Application of YAG Laser TIG Arc Hybrid Welding to Thin AZ31B Magnesium Alloy Sheet YAG激光TIG电弧复合焊接在AZ31B镁合金薄板上的应用
Pub Date : 1900-01-01 DOI: 10.7791/JHTS.30.220
Taewon Kim, Jongcheol Kim, Yuta Hasegawa, Y. Suga
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引用次数: 1
Surface Modification of Sprayed Coating and Forming Hard Layer by Direct Diode Laser 直接二极管激光喷涂涂层表面改性及硬层形成
Pub Date : 1900-01-01 DOI: 10.7791/jhts.33.287
J. Morimoto, N. Abe
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引用次数: 1
Development of Photocatalytic Coating Sprayed Using Agglomerated TiO 2 Nano Particles 聚团二氧化钛纳米颗粒喷涂光催化涂层的研制
Pub Date : 1900-01-01 DOI: 10.7791/JHTS.30.316
J. Yasuoka, K. Nakade, A. Ohmori
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引用次数: 1
The Current Status and the Future Prospects of Phosphoric Acid Fuel Cell 磷酸燃料电池的现状与展望
Pub Date : 1900-01-01 DOI: 10.7791/jhts.35.250
Kazuaki Koshi
近年、地球温暖化防止や環境保護に関し、世界的な関心 が非常に高まっている。気候変動に関する政府間パネル (IPCC第 4 次評価報告書)において、「観測結果から気候シ ステムの温暖化には疑う余地がなく、世界平均気温の上昇 のほとんどは、人為起源の温室効果ガスの増加によっても たらされた可能性がかなり高いこと、また既存技術及び今 後数十年で実用化される技術により温室効果ガス濃度の安 定化は可能であり、今後 20~ 30 年間の緩和努力と投資が 鍵となる。」という評価が公表された。 これらの温室効果ガス削減の重要なツールとして、高効 率でクリーンな発電装置である燃料電池の実用化、普及に 向けた開発が行われている。 燃料電池には、使用される電解質の種類によって、ア ルカリ形(AFC)、固体高分子形(PEFC)、りん酸形 (PAFC:Phosphoric Acid Fuel Cell)、溶融炭酸塩形(MCFC)、 固体酸化物形(SOFC)があり、動作温度、規模、用途など が異なる。それらの中で、200°C付近で作動するりん酸形燃 料電池は、普及型の燃料電池としては、最も早く実用化さ れている。 本稿では、燃料電池の開発経緯の紹介、りん酸形燃料電 池の具体的な導入事例とその運転実績について報告すると 共に、今後の展開について述べる。
近年来,关于防止全球变暖和环境保护,世界范围内的关注度越来越高。政府间气候变化专门委员会(IPCC第4次评估报告书)指出:“从观测结果来看,气候系统的温室效应是毋庸置疑的,世界平均气温的上升几乎都是由于人为温室气体的增加。很有可能已经被搁置,而且根据现有技术和今后几十年将投入使用的技术,温室气体浓度稳定是可能的,关键是今后20~ 30年的缓和努力和投资。”的评价。作为减少温室气体排放的重要工具,正在进行高效率、无污染的发电装置——燃料电池的实用化和普及化开发。燃料电池中,根据所使用电解质的种类,有铝箔形(AFC)、固体高分子形(PEFC)、磷酸形(PAFC:Phosphoric Acid Fuel Cell)、熔融碳酸盐形(MCFC)、有固体氧化物(SOFC),工作温度、规模、用途等不同。其中,在200°C附近工作的磷酸型燃料电池作为普及型燃料电池最早投入实际应用。本文介绍了燃料电池的开发经过,报告了磷酸燃料电池的具体导入事例及其运行实绩,同时阐述了今后的发展。
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引用次数: 0
Current Status and Future Prospects for Large-Scale SOFC Combined Cycle System 大型SOFC联合循环系统的现状与展望
Pub Date : 1900-01-01 DOI: 10.7791/JHTS.35.256
Yoshinori Kobayashi, T. Gengo, Yoshimasa Ando
2050年に CO2排出量を半減させるための実効ある技術開 発と普及が急務となっている。温室効果ガスの一種である CO2の排出量の大幅な削減には、長期的には再生可能エネ ルギーや水素燃料等の新エネルギーを合理的に組み合せた 新発電システムの実用化が必要であるが、中短期的には超 高効率発電システムの普及による化石燃料の有効活用が大 いに期待されている。 このため三菱重工業では、コンバインドサイクルで高効 率発電を実現しているガスタービンの更なる高温化を進め ると同時に、化石燃料の持つ化学エネルギーを直接電気エ ネルギーに変換し、発電効率を飛躍的に高めることができ る燃料電池に早くから注目し、着実な開発の積み重ねによ り、燃料電池はいよいよ実用化の段階に近づいている。 中でも 900~ 1000°Cの高温で作動する固体酸化物形燃料 電池(SOFC:Solid Oxide Fuel Cell)は、石炭を含む多様な 燃料を使っての高効率発電が可能なだけでなく、作動温度 が高いことからガスタービンとの複合発電が可能であり、 現状熱機関としては最高の効率向上が見込まれている。
为了在2050年使CO2排放量减半,开发和普及有效的技术是当务之急。CO2是温室气体的一种,要大幅度削减排放量,从长远来看,合理组合可再生能源和氢燃料等新能源的新发电系统的实用化是必要的,但从中短期来看,超随着高效发电系统的普及,化石燃料的有效利用被寄予厚望。为此,三菱重工业在推进通过联合循环实现高效率发电的燃气轮机的高温化的同时,将化石燃料的化学能源直接电力化。燃料电池可以转换为能源,大幅提高发电效率,日本很早就开始关注燃料电池,通过扎实的积累开发,燃料电池已接近实用化阶段。其中,固态氧化物燃料电池(SOFC:Solid Oxide Fuel Cell)可以在900~ 1000°C的高温下工作,不仅可以使用包括煤炭在内的多种燃料进行高效发电,而且其工作温度因为价格高,所以可以与燃气轮机综合发电,作为目前的热机,效率有望得到最高的提高。
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引用次数: 5
期刊
Journal of High Temperature Society
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