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Biofuel Cell - Converting Organic Wastes to Electric Power Resouces - 生物燃料电池-将有机废物转化为电力资源-
Pub Date : 2009-09-20 DOI: 10.7791/jhts.35.263
T. Kakizono
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引用次数: 0
家庭用・小型 固体酸化物形燃料電池(SOFC)システムの開発進展 家用小型固体氧化物燃料电池(SOFC)系统开发进展
Pub Date : 2009-09-20 DOI: 10.7791/JHTS.35.239
稔 鈴木
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引用次数: 0
平衡法と渦消散コンセプトモデルを組み合わせた燃焼モデルによるCO-H2-air乱流拡散火炎の数値解析 结合平衡法和涡旋消散概念模型的燃烧模型对CO-H2-air乱流扩散火焰进行数值分析
Pub Date : 2009-07-20 DOI: 10.7791/JHTS.35.205
一生 福本, 芳文 大上
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引用次数: 3
レーザ外面照射応力改善法(L-SIP)の開発と適用 激光器外部照射应力改善法(L-SIP)的开发与应用
Pub Date : 2009-07-20 DOI: 10.7791/JHTS.35.199
秀峰 坪田, 和彦 鴨, 高裕 太田, 孝 石出, 康夫 中村, 剛史 上田, 博徳 鬼塚, 崇 赤羽
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引用次数: 1
Specialty Fiber Technologies Enhance Fiber Laser Performances 特种光纤技术提高光纤激光器性能
Pub Date : 2009-07-20 DOI: 10.7791/JHTS.35.157
T. Ohtsuki
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引用次数: 0
Antibacterial Effect of Metal Materials 金属材料的抗菌作用
Pub Date : 2009-05-20 DOI: 10.7791/JHTS.35.121
Yoshihiro Sato
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引用次数: 3
1.2mass%N高窒素ステンレス鋼の摩擦圧接 1.2mass%N高氮不锈钢摩擦压力
Pub Date : 2009-05-20 DOI: 10.7791/JHTS.35.137
健一 高木, 洋司 川上, 哲也 清水, 靖志 菊地, 嘉洋 佐藤
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引用次数: 1
茶滓等を180°C-20MPa条件で高密度固形燃料化する技術開発 180°C-20MPa条件下将茶渣等转化为高密度固体燃料的技术开发
Pub Date : 2009-03-18 DOI: 10.7791/JHTS.35.97
佳正 川見, 一徳 桑名, 民男 井田, 諭 水野, 明弘 森田
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引用次数: 5
Development of High Strength Fly Ash Glass-ceramics by Concrete Sludge Addition 掺加混凝土污泥制备高强度粉煤灰微晶玻璃
Pub Date : 2009-01-21 DOI: 10.7791/JHTS.35.45
K. Ikeda, A. Yoshikawa, A. Hiratsuka, R. Tsujino, H. Kinoshita, Ryusuke Kawamura, Y. Nakayama, M. Iguchi
A large amount of fly ash is exhausted from the thermal powder plant and it is a poisonous substance including the heavy metals and dioxin. The glass solidification is an effective method as one of the waste solidification technologies. Further, producing new materials by mixing together more than two kinds of raw materials is a more useful method. However, a number of trials are required in this method. We selected glass-ceramics with the crystal structure of an Anorthite (CaO·Al 2 O 3 ・ 2SiO 2 ), fly ash as inorganic wastes and concrete sludge for construction materials. It is necessary to clarify the optimum production method. Batches were prepared by mixing these raw materials with various weight ratios. Glass samples were produced by melting the batches at 1450 ℃ and quenching. They were reheated in the region of 950-1100 ℃ to make into glass-ceramic. The properties of obtained glass-ceramics were examined by XRD analysis, SEM observation, and some material tests for the strength, hardness, toughness, and so on. The XRD analysis and SEM observation showed that the crystallized phase of the produced glass-ceramics were identified as an Anorthite. The material tests showed that the Vickers hardness was very high, while the chemical resistance was relatively low.
热粉厂排放的大量粉煤灰是含重金属和二恶英的有毒物质。玻璃固化是一种有效的废弃物固化技术。此外,通过混合两种以上的原材料来生产新材料是一种更有用的方法。然而,这种方法需要进行大量的试验。我们选择了具有钙长石(CaO·al2o3·2sio2)晶体结构的微晶玻璃,粉煤灰作为无机废物,混凝土污泥作为建筑材料。有必要明确最佳生产方法。将这些原料以不同的重量比混合制备成批。采用1450℃熔融淬火法制备玻璃样品。在950-1100℃范围内再加热制成玻璃陶瓷。通过XRD分析、SEM观察和材料强度、硬度、韧性等测试对所得微晶玻璃的性能进行了表征。XRD分析和SEM观察表明,所制微晶玻璃的结晶相为钙长石。材料试验表明,其维氏硬度很高,耐化学性较低。
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引用次数: 1
低・中・高揮発分炭の石炭乾留ガスによる酸化鉄の予備還元に及ぼす石炭中化合水分の影響 低、中、高挥发分煤的煤干馏气对氧化铁的预备还原产生的煤中化合水分的影响
Pub Date : 2009-01-21 DOI: 10.7791/JHTS.35.26
智喜 井上, 建夫 碓井
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引用次数: 1
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Journal of High Temperature Society
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