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    • 5. 发明授权
    • Production of aminoalkylsulfonic acids
    • 生产氨基烷基磺酸
    • US4657704A
    • 1987-04-14
    • US824947
    • 1986-02-03
    • Isamu YamamotoYoshiaki NoguchiKouzou IwasakiKenichi Arai
    • Isamu YamamotoYoshiaki NoguchiKouzou IwasakiKenichi Arai
    • C07C309/14C07C143/02
    • C07C303/02
    • Disclosed herein is a process for preparing with a high yield an aminoalkylsulfonic acid represented by the following general formula: ##STR1## wherein R.sub.1, R.sub.2 and R.sub.3 are each a hydrogen atom, an alkyl group having 1-3 carbon atoms or a hydroxyl-containing alkyl group having 1-3 carbon atoms and n stands for an integer of 2 or 3, which process comprises reacting a sulfite with a halogenated alkylamine represented by the following general formula: ##STR2## wherein X means a chlorine, bromine or iodine atom, and R.sub.1, R.sub.2, R.sub.3 and n have the same meanings as defined above by adding the halogenated alkylamine little by little either continuously or intermittently over a certain period of time to a heated aqueous solution of the sulfite.The yield may be increased further when, after the addition of the halogenated alkylamine, the reaction is carried out by raising the reaction temperature stepwise in 2-5 stages while limiting the reaction time and temperature-raising range in each stage to 0.5-4 hours and 10.degree.-20.degree. C.
    • PCT No.PCT / JP83 / 00301 Sec。 371日期:1984年5月2日 102(e)日期1984年5月2日PCT提交1982年9月8日PCT公布。 出版物WO84 / 00958 日本公报1984年3月15日。本文公开了一种以高产率制备由以下通式表示的氨基烷基磺酸的方法:其中R1,R2和R3各自为氢原子,烷基为1-3 碳原子或具有1-3个碳原子的含羟基的烷基,n表示2或3的整数,该方法包括使亚硫酸盐与由以下通式表示的卤代烷基胺反应:其中X表示 氯,溴或碘原子,R1,R2,R3和n具有与上述相同的含义,将卤代烷基胺在一段时间内连续或间歇地逐渐加入到加热的亚硫酸盐水溶液中。 当加入卤代烷基胺时,可以进一步提高产率,反应是通过将反应温度逐步提高2-5个阶段进行的,同时将反应时间和各阶段的升温范围限制在0.5-4小时 和10-20℃
    • 6. 发明授权
    • Storage system
    • 存储系统
    • US08612717B2
    • 2013-12-17
    • US13202290
    • 2009-08-20
    • Yoshiaki Noguchi
    • Yoshiaki Noguchi
    • G06F12/00
    • G06F17/30067
    • A storage system includes: a data storing means configured to store storage target data and also store address data so as to be tree-structured, the address data being based on a content and storing position of data to be referred to, and the address data referring to the storage target data or other address data; an operation log generating means configured to generate an operation log that represents a content of an operation of storing the storage target data into the data storing means and a content of an operation of storing the tree-structured address data referring to the storage target data into the data storing means; and a file system committing means configured to store the storage target data and the tree-structured address data into the data storing means based on the operation log.
    • 存储系统包括:数据存储装置,被配置为存储存储目标数据,并且还存储地址数据以便进行树结构,所述地址数据基于内容并存储要参考的数据的位置,以及地址数据 参考存储目标数据或其他地址数据; 操作日志生成装置,被配置为生成表示将存储目标数据存储到数据存储装置中的操作的内容的操作日志,以及参考存储目标数据将树结构地址数据存储的操作的内容 数据存储装置; 以及文件系统提交装置,被配置为基于所述操作日志将所述存储目标数据和所述树结构化地址数据存储到所述数据存储装置中。
    • 7. 发明申请
    • STORAGE DEVICE
    • 储存设备
    • US20120311294A1
    • 2012-12-06
    • US13577862
    • 2010-10-19
    • Yoshiaki Noguchi
    • Yoshiaki Noguchi
    • G06F12/02
    • G06F3/0608G06F3/0659G06F3/0689
    • A storage device includes: a temporary buffer for sequentially storing data configuring a file requested to be written for every reception from outside; a data writing means for immediately separating the data in the temporary buffer into mutually corresponding data portion and marker portion classified by preset criteria and storing into a data storing means in an associated state, and deleting from the temporary buffer; an unseparated data writing means for storing the data that cannot be separated into the data portion and the marker portion among the data in the temporary buffer, into an unseparated data storing means; and a re-separation processing means for separating the data in the unseparated data storing means into the data portion and the marker portion by preset criteria and storing into the data storing means with the data portion and the marker portion associated, and deleting from the unseparated data storing means.
    • 存储装置包括:临时缓冲器,用于顺序地存储配置从外部每次接收请求写入的文件的数据; 数据写入装置,用于立即将临时缓冲器中的数据分离为相互对应的数据部分和按预设标准分类的标记部分,并将其存储到相关状态的数据存储装置中,并从临时缓冲器中删除; 用于将暂时缓冲器中的数据中的数据部分和标记部分中不能分离的数据存储到未分离数据存储装置中的未分离数据写入装置; 以及重新分离处理装置,用于通过预设标准将未分离数据存储装置中的数据分离成数据部分和标记部分,并将数据部分和标记部分相关联并存储到数据存储装置中,并从未分离的 数据存储装置。
    • 10. 发明申请
    • ELECTRIC DEVICE WITH AIR CLEANING FUNCTION
    • 具有空气清洁功能的电气设备
    • US20110179951A1
    • 2011-07-28
    • US13003617
    • 2009-07-15
    • Daisuke SuzukiMasahiro IsekiKeiko KurokawaMineo IkematsuHiroyuki UmezawaYoshiaki Noguchi
    • Daisuke SuzukiMasahiro IsekiKeiko KurokawaMineo IkematsuHiroyuki UmezawaYoshiaki Noguchi
    • B03C3/00F25B21/02
    • F24F3/16A61L9/145A61L9/22A61L2209/213B01D53/323B01D53/77C02F1/4672F24F2001/0096F24F2003/1692F24F2006/006
    • An electric device 1 includes: an air inlet 3 through which air is taken in; a gas-liquid contact portion 5 for making gas-liquid contact between the air taken in and electrolyzed water 4 to purify the air; a water collecting portion 6 for collecting moisture in the air after the gas-liquid contact; an air outlet 7 through which the air the moisture in which was collected is ejected, wherein the air inlet 3, the gas-liquid contact portion 5, the water collecting portion 6, and the air outlet 7 are arranged in sequential order from upstream of an air duct 2; a water storage portion 8 in which the gas-liquid contact portion 5 is dipped and in which the water collected by the water collecting portion 6 is stored; and an electrolyzing portion 9 for generating the electrolyzed water 4 containing an active oxygen species by electrolyzing the water stored in the water storage portion 8. As a result, a compact electric device with an air cleaning function is provided at low cost that is capable of generating water containing an active oxygen species without requiring additional water feed and without generating a by-product.
    • 电气设备1包括:空气入口3,通过空气入口3吸入空气; 用于使吸入的空气与电解水4之间的气液接触以净化空气的气液接触部分5; 用于在气液接触之后收集空气中的水分的集水部分6; 空气出口7,通过该空气排出空气中收集的水分,其中空气入口3,气液接触部分5,集水部分6和空气出口7按照顺序从第 风道2; 其中储存有气液接触部分5并储存由集水部分6收集的水的储水部分8; 以及电解部分9,用于通过电解储存在储水部分8中的水来产生含有活性氧的电解水4.结果,提供了一种具有空气净化功能的紧凑型电气装置,其成本低廉, 产生含有活性氧的水,而不需要额外的进水并且不产生副产物。