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    • 41. 发明申请
    • Method for suppressing fading of tar colorant, and fading-suppressed tar colorant-containing composition
    • 用于抑制焦油着色剂褪色的方法和含有褪色抑制焦油着色剂的组合物
    • US20060051472A1
    • 2006-03-09
    • US11123048
    • 2005-05-06
    • Takatoshi KodaMasamitsu MoriwakiHisashi TanakaKouji Utida
    • Takatoshi KodaMasamitsu MoriwakiHisashi TanakaKouji Utida
    • A23B7/157
    • A23L3/26A23L3/3463A23L3/3472
    • The present invention provides a method of suppressing fading of a tar colorant. More specifically, the present invention provides a method of suppressing a tar colorant fading phenomenon that occurs specifically in compositions containing (a) the tar colorant, and (b) at least one of reducing sugars, ascorbic acid compounds, or metals. This method can be attained by mixing (c) at least one selected from the group consisting of isoquercitrin, enzymatically modified isoquercitrin, rutin, enzymatically modified rutin, Chinese bayberry extract, and rosemary extract into such a composition, thus making the component (a), the component (b) and the component (c) coexist. The present invention further provides a composition for which fading of a tar colorant is suppressed using the above method, more specifically a composition containing at least one of reducing sugars, ascorbic acid compounds, or metals in addition to the tar colorant.
    • 本发明提供抑制焦油着色剂褪色的方法。 更具体地说,本发明提供一种抑制在含有(a)焦油着色剂的组合物中具体发生的焦油着色剂褪色现象的方法,和(b)还原糖,抗坏血酸化合物或金属中的至少一种。 该方法可以通过将(c)选自异槲皮素,酶促改性的异槲皮苷,芦丁,酶促改性芦丁,中国杨梅提取物和迷迭香提取物中的至少一种混合到这样的组合物中,从而使组分(a) ,组分(b)和组分(c)共存。 本发明还提供一种组合物,其中使用上述方法抑制焦油着色剂的褪色,更具体地说,除了焦油着色剂之外还包含含有还原糖,抗坏血酸化合物或金属中的至少一种的组合物。
    • 42. 发明授权
    • Cooling structure for cooling vehicle electronic unit
    • 冷却车辆电子单元的冷却结构
    • US06912863B2
    • 2005-07-05
    • US10652447
    • 2003-08-29
    • Hisashi TanakaHaruki IkutaKoichi Ito
    • Hisashi TanakaHaruki IkutaKoichi Ito
    • B60H1/00B60H1/32
    • B60H1/00514B60H2001/00614
    • A vehicle air conditioner includes an air conditioning case, a blower fan for blowing conditioned air into a passenger compartment, and an evaporator disposed in the air conditioning case. The air conditioning case has a cooling opening upstream from the evaporator, so that at least inside air is blown by the blower fan to vehicle electronic units through the cooling opening. Thus, heat radiation of the electronic units can be facilitated by air blown from the blower fan. Further, because at least inside air, without being cooled by the evaporator, is blown to the electronic units, the electronic units can be prevented from being excessively cooled. Accordingly, it can restrict the surface temperature of the electronic units from reducing less than a dew point, thereby effectively reducing condensed water on the electronic units.
    • 车辆空调包括空调箱,用于将调节空气吹入客舱的送风风扇和设置在空调箱中的蒸发器。 空调壳体具有从蒸发器上游的冷却开口,使得至少内部的空气被鼓风机风扇通过冷却开口吹送到车辆电子单元。 因此,可以通过从鼓风机吹送的空气来促进电子单元的散热。 此外,由于至少内部空气未被蒸发器冷却,而被吹送到电子单元,所以可以防止电子单元过度冷却。 因此,能够将电子单元的表面温度抑制在露点以下,从而有效地减少电子单元上的冷凝水。
    • 44. 发明授权
    • Forced oscillatory flow type heat pipe and designing method for the same
    • 强制振荡式热管及其设计方法
    • US06655450B2
    • 2003-12-02
    • US10160969
    • 2002-05-31
    • Shigefumi NishioHisashi TanakaKouji Kubo
    • Shigefumi NishioHisashi TanakaKouji Kubo
    • F28D1500
    • F28D15/0266F28F13/10
    • A forced oscillatory flow type heat pipe of which a ratio (motion coefficient) of the heat transport capacity to the oscillating energy is maintained within an appropriate range is provided. A heat pipe body (1) has a closed loop flow path (2). Operation of the vibrator (3), which is provided at a connecting portion (2a) between the ends of the flow path (2), causes an oscillatory flow of the charged liquid sealed in the flow path (2). The phases of the oscillatory flows of the charged liquid in the adjacent tube portions of the flow path are inverted. From a viewpoint that the dimensionless effective thermal diffusivity kef* of the COSMOS type heat pipe has a larger range in the modified Womersley number &agr; than that of the dream type heat pipe, the modified Womersley number &agr; is 0.4 to 7.
    • 提供将热传输能力与振荡能量的比(运动系数)保持在适当范围内的强制振荡流型热管。 热管体(1)具有闭环流路(2)。 设置在流路(2)的端部之间的连接部分(2a)处的振动器(3)的操作引起密封在流路(2)中的带电液体的振荡。 在流路的相邻管部中的带电液体的振荡流的相位反转。 从改进的Womersley数α的COSMOS型热管的无量纲有效热扩散率kef *比梦幻式热管的范围更大的观点出发,修改后的Womersley数α为0.4〜7。
    • 48. 发明授权
    • Method for manufacturing α-glycosylisoquercitrin, intermediate product and by-product thereof
    • α-糖基异槲皮素的制备方法,其中间产物及其副产物
    • US07691425B2
    • 2010-04-06
    • US10740607
    • 2003-12-22
    • Masamitsu MoriwakiKazuhiro EmuraHisashi Tanaka
    • Masamitsu MoriwakiKazuhiro EmuraHisashi Tanaka
    • A23L1/00
    • C12P19/60A23L5/41A23L33/105A61K31/352A61K31/7048C12P17/06
    • The present invention provides a method for producing isoquercitrin, α-glycosylisoquercitrin, and rhamnose, the method comprising a step of naringin-degrading enzyme treatment during the isoquercitrin production from rutin in the presence of an edible component, such as gelatin, wheat gluten, chitosan, lecithin, a glycerol fatty acid ester, xanthan gum, carrageenan, sodium chondroitin sulfate, casein, enzymatically decomposed gelatin, sodium alginate, konjac extract, gellan gum, guar gum, soybean protein, agar, pectin, yeast extract, egg-white peptide, cluster dextrin, gum arabic, arginine, sodium metaphosphate, karaya gum, locust bean gum, sodium pyrophosphate, glucosamine, chitin, sodium glutamate, dextrin, trehalose, or a grain-based food ingredients. According to the present invention, isoquercitrin and α-glycosylisoquercitrin, which are of use as antioxidants, anti-fading agents, flavor change inhibitors, etc., can be produced in enhanced yields.
    • 本发明提供异槲皮素,α-糖基异槲皮素和鼠李糖的制造方法,其特征在于,在可食用成分如明胶,小麦面筋,壳聚糖等存在下,由芦丁生产异槲皮素期间柚皮苷降解酶处理步骤 ,卵磷脂,甘油脂肪酸酯,黄原胶,角叉菜胶,硫酸软骨素钠,酪蛋白,酶分解明胶,藻酸钠,魔芋提取物,结冷胶,瓜尔胶,大豆蛋白,琼脂,果胶,酵母提取物,蛋白肽 ,糊精,阿拉伯树胶,精氨酸,偏磷酸钠,刺槐豆胶,刺槐豆胶,焦磷酸钠,葡糖胺,甲壳素,谷氨酸钠,糊精,海藻糖或谷物类食品成分。 根据本发明,可以以增加的产率生产用作抗氧化剂的异槲皮素和α-糖基异槲皮素,抗褪色剂,风味变化抑制剂等。