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    • 3. 发明专利
    • Evaporating fuel gas adsorbent and evaporating fuel gas collecting device
    • 燃料燃气吸附和蒸发燃料气体收集装置
    • JP2006063859A
    • 2006-03-09
    • JP2004246442
    • 2004-08-26
    • Kuraray Chem Corpクラレケミカル株式会社
    • ABE SUSUMUISHIMURA SHIZUOKITAMURA TAKANORIEGAWA YOSHIFUMI
    • F02M25/08
    • PROBLEM TO BE SOLVED: To provide an evaporating fuel gas adsorbent capable of improving adsorption and desorption performance by surely preventing temperature rise and temperature drop due to heat generated with adsorption and desorption of evaporating fuel gas, allowing downsizing of a device and easy to manufacture, and to provide the evaporating fuel gas collecting device using it.
      SOLUTION: As shown in Figure 1, the evaporating fuel gas adsorbent consists of a latent heat storage material 4 and the adsorbent 5. The latent heat storage material comprises material causing absorption and release of heat through a phase change and filled in a container formed of a flexible film. The adsorption and desorption performance is improved by the evaporating fuel gas absorbent and by the evaporating fuel gas collecting device using it.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能够提高吸附和解吸性能的蒸发燃料气体吸附剂,其可靠地防止由于蒸发燃料气体的吸附和解吸而产生的热量引起的温度升高和温度下降,从而使装置尺寸减小 制造和提供使用它的蒸发燃料气体收集装置。 解决方案:如图1所示,蒸发燃料气体吸附剂由潜热蓄热材料4和吸附剂5组成。潜热储存材料包括通过相变而吸收和释放热量的材料,并填充在 容器由柔性膜形成。 通过蒸发的燃料气体吸收剂和使用它的蒸发燃料气体收集装置来改善吸附和解吸性能。 版权所有(C)2006,JPO&NCIPI
    • 4. 发明专利
    • Latent heat storage material and method for producing the same
    • 专利热存储材料及其生产方法
    • JP2007031685A
    • 2007-02-08
    • JP2006021850
    • 2006-01-31
    • Kuraray Chem CorpSumika Color Kkクラレケミカル株式会社住化カラー株式会社
    • EGAWA YOSHIFUMIKITAMURA TAKANORIMORI HIROYUKIYOSHIDA YASUHIRO
    • C09K5/06F28D20/02
    • F28D20/02Y02E60/145
    • PROBLEM TO BE SOLVED: To provide a latent heat storage material which can be used over a wide range of fields such as a heat insulator, a cold insulator, a heat storage building material and a latent heat storage material for a gas adsorbent and has the strength required, to provide gas adsorbent including the latent heat storage material, and to provide a method for producing the latent heat storage material.
      SOLUTION: The latent heat storage material comprises a long shaped product having a sheath core structure, in which a component consisting of a core of the sheath core structure comprises an organic compound causing absorption and release of heat through a phase change and a thermoplastic elastomer as a main component and a component consisting of a sheath of the sheath core structure substantially comprises a thermoplastic resin. The latent heat storage material is produced by co-extruding. The gas adsorbent including the latent heat storage material and an activated charcoal is used for a gas adsorbent for a canister or the like.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供可用于各种领域的潜热蓄热材料,例如隔热材料,冷绝缘体,蓄热建筑材料和用于气体吸附剂的潜热蓄热材料 并且具有所需的强度,以提供包括潜热蓄热材料的气体吸附剂,并提供潜热蓄热材料的制造方法。 解吸方案:潜热储存材料包括具有皮芯结构的长形产品,其中由芯芯结构的芯组成的组分包括通过相变引起吸收和释放热量的有机化合物, 作为主要成分的热塑性弹性体和由鞘芯结构的护套构成的部件基本上包含热塑性树脂。 潜热蓄热材料是通过共挤出生产的。 包括潜热蓄热材料和活性炭的气体吸附剂用于罐等的气体吸附剂。 版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Granular active carbon and its manufacturing method
    • 颗粒活性炭及其制造方法
    • JP2006213544A
    • 2006-08-17
    • JP2005025887
    • 2005-02-02
    • Kuraray Chem Corpクラレケミカル株式会社
    • EGAWA YOSHIFUMIMIYAKE AKIRAKITAMURA TAKANORIABE SUSUMUYAMADA TAKAYUKI
    • C01B31/10B01J20/20C01B31/14F02M25/08
    • PROBLEM TO BE SOLVED: To provide a granular activated carbon having mechanical strength and abrasive resistance, having many narrow pores suitable for adsorbing an organic solvent, particularly a vaporized fuel gas, and also having a high filling density and to provide an industrially advantageous manufacturing method of the granular activated carbon.
      SOLUTION: The granular activated carbon wherein a specific surface area calculated by a BET method (multipoint method) in a nitrogen adsorption isotherm determined from a nitrogen adsorption amount at a liquid nitrogen temperature is 1,000-2,500 m
      2 /g and also a half width of a D band peak in the vicinity of 1,360 cm
      -1 in a Raman spectral analysis is ≤120 cm
      -1 and a half width of a G band peak in the vicinity of 1,580 cm
      -1 is ≤100 cm
      -1 is provided, and its manufacturing method is provided.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供具有机械强度和耐磨性的颗粒状活性炭,具有适用于吸附有机溶剂,特别是汽化燃料气体的许多窄孔,并且还具有高填充密度并提供工业上的颗粒活性炭 粒状活性炭的有利制造方法。 解决方案:其中在氮气吸附等温线下通过BET法(多点法)计算的比表面积在液氮温度下的氮吸附量确定的粒状活性炭为1000-2,500m 2 / 在拉曼光谱分析中,SP> / g以及1360cm -1附近的D带峰的半值宽度为≤120cm -1 ,半 提供了在1580cm -1附近的G带峰的宽度 -1 ,并且提供了其制造方法。 版权所有(C)2006,JPO&NCIPI
    • 7. 发明专利
    • Fuel transpiration gas adsorbent
    • 燃料转移气体吸附剂
    • JP2005290990A
    • 2005-10-20
    • JP2004102547
    • 2004-03-31
    • Kuraray Chem Corpクラレケミカル株式会社
    • EGAWA YOSHIFUMIKITAMURA TAKANORIABE SUSUMUISHIMURA SHIZUOFUKUNISHI YOSHIHARU
    • F02M25/08
    • PROBLEM TO BE SOLVED: To provide a fuel transpiration gas adsorbent which restricts temperature rise and temperature fall due to heat generated in accordance with adsorption/desorption of fuel transpiration gas to maintain adsorption/desorption performance, which is easily manufactured, and which is of low cost and high performance.
      SOLUTION: This fuel transpiration gas adsorbent comprises a porous body carrying a heat accumulating component comprising organic compound that absorbs and generates heat by phase change and/or water, and porous adsorbent. At this time, on the porous body with pores of a thin diameter on average, and a relatively large pore volume of thin pores, the heat accumulating component with small temperature difference between a fusing point and a temperature fall crystallization point is carried to form a heat accumulating component carrying porous body. For the porous adsorbent, activated carbon is used, so that especially favorable fuel transpiration gas adsorbent is provided. By integrating the heat accumulating component carrying porous body with the adsorbent by binder, risk of separation due to vibration or the like is eliminated.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种燃料蒸发气体吸附剂,其限制由于根据燃料蒸发气体的吸附/解吸而产生的热量的温度升高和温度下降,以保持容易制造的吸附/解吸性能,以及哪些 成本低,性能高。 该燃料蒸发气体吸附剂包括多孔体,其携带包含通过相变和/或水吸收和产生热量的有机化合物和多孔吸附剂的蓄热组分。 此时,在具有平均直径小的孔的多孔体和较小的细孔容积的情况下,在熔点和温度下降结晶点之间的温度差较小的积聚部件被进行形成 承载多孔体的蓄热部件。 对于多孔吸附剂,使用活性炭,从而提供特别有利的燃料蒸发气体吸附剂。 通过用粘合剂将携带多孔体的蓄热部件与吸附剂结合,消除了由振动等引起的分离风险。 版权所有(C)2006,JPO&NCIPI