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    • 151. 发明授权
    • Method of separating globin
    • 分离珠蛋白的方法
    • US4376727A
    • 1983-03-15
    • US225182
    • 1981-01-13
    • Yasushi SatoShigeru Hayakawa
    • Yasushi SatoShigeru Hayakawa
    • A23J1/06C07C103/52
    • A23J1/06Y10S530/829
    • This invention relates to a method of separating globin comprising separating hemoglobin from blood of an edible animal, forming an aqueous solution containing 0.5 to 5% of hemoglobin, adding an acid to the aqueous solution to adjust the pH value to 2.0 to 2.2 and the ionic strength to 0.005 to 0.015, bringing the aqueous solution into contact with carboxymethyl cellulose equilibrated with an acidic liquid having a pH value of 2.0 to 2.2 and an ionic strength of 0.005 to 0.015 and then dissolving out globin from the carboxymethyl cellulose with an acidic liquid. The so-obtained dry product of globin is substantially free of haem and it has been found that this dry product is suitable as a protein material for use in processing of foods.
    • 本发明涉及一种分离珠蛋白的方法,包括将血红蛋白与可食用动物的血液分离,形成含有0.5-5%血红蛋白的水溶液,向该水溶液中加入酸以将pH值调节至2.0至2.2,并将离子 强度为0.005〜0.015,使水溶液与羧酸纤维素接触,该羧甲基纤维素用pH值为2.0〜2.2,离子强度为0.005〜0.015的酸性液体平衡,然后用酸性液体从羧甲基纤维素中溶出珠蛋白。 如此获得的珠蛋白干燥产品基本上没有血红素,并且已经发现该干燥产品适合作为用于食品加工的蛋白质材料。
    • 153. 发明授权
    • Basic circuit for electronic timepieces
    • 电子钟表基本电路
    • US4264968A
    • 1981-04-28
    • US864714
    • 1977-12-27
    • Yasoji SuzukiFuminari TanakaYasushi Sato
    • Yasoji SuzukiFuminari TanakaYasushi Sato
    • G01R19/00G04G3/02G04G9/00G04G99/00G04C3/00
    • G04G99/00G04G3/022
    • There is provided an electronic timepiece basic circuit comprising a pulse generating circuit for generating 1 Hz pulses, a first terminal group having a plurality of terminals including a terminal connected to the output terminal of the pulse generating circuit, a second terminal group having terminals to be connected to the terminals of the first terminal group, respectively, 10 scale counters coupled with the second terminal group, 6 scale counters connected to the 10 scale counters, a display unit, and a decoder which is coupled with the 10 scale counters and the 6 scale counters and decodes the contents of the 10 and 6 scale counters and delivers the decoded contents to the display unit. The first and second terminal groups are properly coupled to each other. The combination of the 10 scale counters and the 6 scale counters is properly modified so as to form a 12, 24, or 60 scale counter, as necessary.
    • 提供了一种电子钟表基本电路,包括用于产生1Hz脉冲的脉冲发生电路,具有包括连接到脉冲发生电路的输出端的端子的多个端子的第一端子组,具有端子的第二端子组 分别连接到第一终端组的终端,与第二终端组耦合的10个比例计数器,连接到10个比例计数器的6个比例计数器,显示单元和与10个比例计数器耦合的解码器,6 缩放计数器并解码10和6比例计数器的内容,并将解码的内容传送到显示单元。 第一和第二端子组彼此适当地联接。 10个刻度计数器和6个刻度计数器的组合被适当修改,以便根据需要形成12个,24个或60个刻度计数器。
    • 154. 发明授权
    • Process for producing mixture of block copolymers
    • 制备嵌段共聚物混合物的方法
    • US4208356A
    • 1980-06-17
    • US609684
    • 1975-09-02
    • Isaburo FukawaKunio SatakeTsuyoshi YamadaKiyoshi HayakawaYasushi Sato
    • Isaburo FukawaKunio SatakeTsuyoshi YamadaKiyoshi HayakawaYasushi Sato
    • C08F297/04
    • C08F297/044
    • A novel block copolymer mixture of conjugated diene (C.D.) and vinylaromatic hydrocarbon (V.H.) having a superior transparency and impact-resistance is produced by the following two step polymerizations using an organolithium compound as a catalyst and a solvent consisting mainly of an aliphatic hydrocarbon:a first step (A) of preparing a living (co)polymer of C.D. or C.D. and V.H., by polymerizing the monomer(s) in a ratio by weight of V.H. to C.D. of 0/100 to 60/40 and in an amount of 1 to 80% by weight of total monomers to be used, in the presence of said catalyst and solvent, anda second step (B) of preparing V.H. polymer or block copolymer of V.H. and C.D., by adding to said living (co)polymer, remaining monomer(s), in a ratio by weight of V.H. to C.D. of 100/0 to 65/35 and in an amount of 99 to 20% by weight of total monomers to be used, and said catalyst and solvent, and polymerizing the remaining monomer(s) to obtain a block copolymer mixture,this block copolymer mixture having a ratio of V.H. content of ultimate block copolymers to that of the (co)polymers obtained only in step (B), of at least 1/1.8, and a ratio of V.H. portion to C.D. portion of 60/40 to 95/5.
    • 通过使用有机锂化合物作为催化剂和主要由脂肪族烃组成的溶剂进行以下两步聚合,制备具有优异的透明性和耐冲击性的共轭二烯(CD)和乙烯基芳烃(VH)的新型嵌段共聚物混合物: 制备CD的活性(共)聚合物的第一步(A) 或C.D. 和V.H.通过以V.H.至C.D.的重量比将聚合单体进行聚合。 在所述催化剂和溶剂的存在下,使用的总单体重量为0/100至60/40且为1至80重量%,以及制备VH聚合物或嵌段共聚物的第二步骤(B) VH和CD,通过以VH与CD的重量比加入所述活性(共)聚合物,剩余单体 为100/0至65/35,并且使用的总单体的重量为99至20重量%,所述催化剂和溶剂,并使剩余的单体聚合以获得嵌段共聚物混合物,该嵌段共聚物 最终嵌段共聚物的VH含量与仅在步骤(B)中获得的(共)聚合物的VH含量的比率为至少1 / 1.8,VH部分与CD的比例 部分为60/40至95/5。
    • 156. 发明授权
    • Hydrogen production apparatus and fuel cell system using the same
    • 氢气生产设备和使用燃料电池系统的燃料电池系统
    • US08945784B2
    • 2015-02-03
    • US12935823
    • 2009-03-09
    • Yasushi SatoEmi KatoTakaya MatsumotoMasataka KadowakiRyuji YukawaTakuya Kajita
    • Yasushi SatoEmi KatoTakaya MatsumotoMasataka KadowakiRyuji YukawaTakuya Kajita
    • H01M8/06H01M8/04C01B3/58C01B3/38C01B3/48
    • C01B3/583C01B3/38C01B3/48C01B2203/0233C01B2203/0283C01B2203/044C01B2203/047C01B2203/066C01B2203/1047C01B2203/1052C01B2203/1058C01B2203/107C01B2203/1247C01B2203/127H01M8/0612H01M8/0668Y02E60/50
    • There are provided a hydrogen production apparatus and a hydrogen producing method that can easily bring the temperature of a gas to be supplied to a preferential oxidation catalyst bed to a proper range without the necessity of flow rate control of a cooling medium, and a fuel cell system which is relatively inexpensive and can easily realize stable operation. The hydrogen producing method includes a reforming step of obtaining a hydrogen-containing gas from a raw material for hydrogen production by utilizing a reforming reaction, a shift reaction step of reducing the concentration of carbon monoxide in the gas obtained from the reforming step by a shift reaction, a cooling step of cooling the gas obtained from the shift reaction step, a heating step of heating the gas cooled in the cooling step and a preferential oxidation reaction step of reducing the concentration of carbon monoxide in the gas heated in the heating step, wherein in the heating step, the gas cooled in the cooling step is heated by heat exchange with the use of heat generated by the preferential oxidation reaction. A hydrogen production apparatus suitable for implementing this method. A fuel cell system provided with the hydrogen production apparatus.
    • 提供一种氢制造装置和氢制造方法,其能够容易地将要供给到优先氧化催化剂床的气体的温度提高到适当的范围,而不需要冷却介质的流量控制,并且燃料电池 系统相对便宜并且可以容易地实现稳定的操作。 制氢方法包括:通过利用重整反应从用于制氢的原料获得含氢气体的转化步骤,通过转移将从重整步骤得到的气体中的一氧化碳浓度降低的变换反应步骤 反应,冷却从所述变换反应工序得到的气体的冷却工序,对在所述冷却工序中冷却的气体进行加热的加热工序和减少所述加热工序中加热的气体中的一氧化碳浓度的优选氧化反应工序, 其中在加热步骤中,通过利用优先氧化反应产生的热量进行热交换来加热在冷却步骤中冷却的气体。 适用于实施该方法的氢气制备装置。 一种设置有氢气制备装置的燃料电池系统。