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    • 36. 发明申请
    • NANOCARBON GENERATION EQUIPMENT
    • 南方发电设备
    • US20080260606A1
    • 2008-10-23
    • US12045212
    • 2008-03-10
    • Tsuyoshi NOMAHidetoshi IbeEiichi SugiyamaTadashi ImaiKazutaka KojoKiyoshi Imai
    • Tsuyoshi NOMAHidetoshi IbeEiichi SugiyamaTadashi ImaiKazutaka KojoKiyoshi Imai
    • B01J8/10
    • B82Y30/00B82Y40/00C01B32/15
    • A nanocarbon generation equipment designed such that organic processed materials can be quickly thermally decomposed therein and the decomposed materials are then quenched and liquefied to obtain liquefied materials is disclosed. This equipment comprises thermal reactor for quickly thermally decomposing the organic processed materials, apparatus for recovering the liquefied materials which are liquefied through quenching of thermally decomposed organic processed materials, a rotary furnace to be filled with a reducing atmosphere and loaded with hydrocarbons to be obtained through vaporization of liquefied materials after impurities contained in the liquefied materials are removed, and metal balls made of a metal selected from stainless steel, iron, nickel, chromium and an optional combination thereof, wherein the hydrocarbon introduced into the rotary furnace is decomposed into carbon and hydrogen, thus enabling nanocarbon to be produced through vapor-phase growth.
    • 一种纳米碳发生设备,其设计使得有机处理材料能够快速热分解,然后将分解的材料淬火和液化以获得液化材料。 该设备包括用于快速热分解有机处理材料的热反应器,用于回收通过淬火热分解的有机处理材料液化的液化材料的设备,填充有还原气体的旋转炉,并装载要通过 除去液化材料中含有的杂质之后的液化物质的蒸发,以及由不锈钢,铁,镍,铬及其任意组合的金属制成的金属球,其中引入旋转炉的烃分解成碳和 氢气,从而使得能够通过气相生长生产纳米碳。
    • 39. 发明授权
    • Deodorizer
    • 除臭剂
    • US5804174A
    • 1998-09-08
    • US777603
    • 1996-12-31
    • Sadami IshibashiTadao HamayaTadashi ImaiMasao Iijima
    • Sadami IshibashiTadao HamayaTadashi ImaiMasao Iijima
    • A61L9/01A23L1/28A61K8/00A61K8/34A61K8/35A61K8/365A61K8/60A61K8/67A61K8/97A61Q11/00A61Q15/00
    • A61L9/01A23L31/00A61K8/34A61K8/35A61K8/365A61K8/60A61K8/676A61K8/975A61Q11/00A61Q15/00Y10S514/901
    • A deodorizer comprises a hydrophilic solvent extract of fruit-bodies of champignon mushroom or powder of the extract as an effective component. The extract of champignon mushroom used as an effective component can be prepared by a method which comprises the step of immersing the mushroom in a hydrophilic solvent at a temperature ranging from 60.degree. to 1000.degree. C. for 15 minutes to 2 hours to perform extraction. The extract can further be treated to obtain the effective components in the form of powder. The extract and the powder thereof can be used as an effective component of a deodorizer capable of oral intake, which serves as a deodorizer for preventing bad smell of environment or an agent for preventing foul breath, which can also be used in foods for eating or drinking to prevent giving out of bad smell emitted from cookings such as those containing garlic and leek as well as cooked fish, which can prevents giving out of bad smell after taking such cookings, and which can be involved in metabolism to thus suppress the giving out of bad smell from urine and feces discharged after eating and drinking such foods.
    • 除臭剂包括香菇的果实的亲水性溶剂提取物或提取物的粉末作为有效成分。 用作有效成分的香菇菇的提取物可以通过包括以下步骤的方法制备:将蘑菇浸入亲水性溶剂中,温度为60〜1000℃,15分钟〜2小时,进行萃取。 可以进一步处理提取物以获得粉末形式的有效成分。 提取物及其粉末可以用作能够口服的除臭剂的有效成分,其作为用于防止恶臭气味的除臭剂或用于防止臭味的药剂,其也可用于食用食品或 饮用以防止排出的诸如含有大蒜和韭菜的烹饪物质以及煮熟的鱼类产生的不良气味,其可以防止在进行这种烹饪之后发出不良气味,并且可以参与新陈代谢从而抑制发出 食用和饮用这些食物后尿液和粪便排出的气味很差。
    • 40. 发明授权
    • Oscillation circuit and oscillation method
    • 振荡电路和振荡方法
    • US5717363A
    • 1998-02-10
    • US721231
    • 1996-09-26
    • Tadashi ImaiKozo Kobayashi
    • Tadashi ImaiKozo Kobayashi
    • H03F3/45H03B5/00H03B5/24H03B5/30H03B5/32H03K3/283
    • H03B5/326H03K3/283
    • An oscillation circuit and an oscillation method for generating a high-frequency signal in which NPN transistors are differentially connected to each other. The signal output from the collector of a first NPN transistor is positively fed back to the base of a second NPN transistor via a first capacitor, and the signal output from the collector of the second NPN transistor is positively fed back to the base of the first NPN transistor via a second capacitor. A one-port-type SAW resonator is connected to the collectors of the NPN transistors via the capacitors for blocking the flow of direct current. Thus, it becomes possible to generate a high-frequency signal with a high degree of accuracy.
    • 用于产生其中NPN晶体管彼此差分连接的高频信号的振荡电路和振荡方法。 从第一NPN晶体管的集电极输出的信号通过第一电容器被正反馈回到第二NPN晶体管的基极,并且从第二NPN晶体管的集电极输出的信号被正反馈到第一NPN晶体管的基极 NPN晶体管通过第二电容器。 通过用于阻断直流电流的电容器将单端口型SAW谐振器连接到NPN晶体管的集电极。 因此,可以以高精度产生高频信号。