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    • 22. 发明授权
    • Process for production compost
    • 生产堆肥过程
    • US06648940B2
    • 2003-11-18
    • US10315098
    • 2002-12-10
    • Shinji YagihashiToshio KuriharaShinji YamashitaFujio KobayashiYasukazu Nakakita
    • Shinji YagihashiToshio KuriharaShinji YamashitaFujio KobayashiYasukazu Nakakita
    • C05F1102
    • C05F17/00C05F17/0036C05F17/0072C05F17/02Y02P20/145Y02W30/43
    • The present invention relates to a process for producing compost, characterized in that when the compost is produced by inoculating aerobic composting seed bacteria to an organic waste material, the process comprises: supplying oxygen while the waste material is stirred, and supplying water so that the water content of the waste material is 60±5%, and to a process for producing compost, characterized in that when the compost is produced by inoculating aerobic composting seed bacteria to an organic waste material, the process comprises, after begining of the fermentation, adding sugars to the waste material in a divisional manner before a main fermentation is transferred to the amine/ammonium metabolic system. Further, according to the present invention, an apparatus for producing compost is provided. The apparatus comprises: a fermentation vessel having an oxygen supplying means, a water distributing means, and a stirring means; and a control means for detecting or determining the moisture content of an organic waste material contained in the fermentation vessel to control, on the basis of the detected or determined result, the amount of water to be distributed by the water distributing means. According to the present invention, when organic waste materials disposed from food processing factories and the like is processed to produce compost of high quality, formation of ammonium and amines mainly causing unpleasant odors or generation of lower fatty acid which is a factor for a growth inhibition of plants can be suppressed, and the compost can be produced in stable, and within a short period of time.
    • 本发明涉及一种生产堆肥的方法,其特征在于,当通过将有氧堆肥种子细菌接种到有机废料来生产堆肥时,该方法包括:在废料搅拌的同时供氧,并供水 废弃物的含水量为60±5%,生产堆肥的方法,其特征在于,当通过将有氧堆肥种子细菌接种到有机废料中生产堆肥时,该方法包括在发酵开始后, 在主发酵转移到胺/铵代谢系统之前,以分开方式向废料中加入糖。 此外,根据本发明,提供了一种生产堆肥的设备。 该装置包括:发酵容器,其具有供氧装置,水分配装置和搅拌装置; 以及控制装置,用于检测或确定包含在发酵容器中的有机废物的水分含量,以根据检测到的或确定的结果来控制由水分配装置分配的水量。根据 本发明当处理从食品加工厂等处理的有机废弃材料生产高品质的堆肥时,主要产生令人不快的气味或产生作为植物生长抑制因素的低级脂肪酸的铵和胺的形成 被抑制,堆肥可以稳定生产,并在短时间内生产。
    • 23. 发明授权
    • Horizontal synchronizing signal generating circuit
    • 水平同步信号发生电路
    • US5539343A
    • 1996-07-23
    • US416212
    • 1995-04-04
    • Shinji YamashitaYoshihiro InadaMiki Nishimoto
    • Shinji YamashitaYoshihiro InadaMiki Nishimoto
    • H04N5/06H03L7/06
    • H04N5/06
    • There is disclosed a horizontal synchronizing signal generating circuit for generating a horizontal synchronizing signal which has no frequency variations and which is in phase with an entered composite synchronizing signal if the entered composite synchronizing signal is a nonstandard signal having a varying horizontal frequency. A horizontal counter circuit (5) counts a reference clock (V.sub.CL), and a window pulse generating circuit (4) outputs a window pulse signal (V.sub.W) which is low for a fixed time period when a counter output (V.sub.CT) equals a counter value (878) indicative of a standard output timing. A horizontal synchronizing signal separating circuit (1) outputs a horizontal synchronizing signal (V.sub.2) only when the composite synchronizing signal (V.sub.1) falls within the fixed time period. Then a horizontal phase judging circuit (2) outputs a standard signal flag (V.sub.3) and a synchronizing signal generating circuit (3) outputs the horizontal synchronizing signal (V.sub.2) in synchronism with the reference clock (V.sub.CL). When the composite synchronizing signal (V.sub.1) does not fall within the fixed time period, the horizontal phase judging circuit (2) outputs a nonstandard signal flag (V.sub.3), and the synchronizing signal generating circuit (3) outputs a horizontal synchronizing signal (V.sub.4) produced from the window pulse signal (V.sub.W).
    • 公开了一种水平同步信号发生电路,用于产生没有频率变化的水平同步信号,如果输入的复合同步信号是具有变化的水平频率的非标准信号,则与同步输入的复合同步信号相位。 水平计数器电路(5)对参考时钟(VCL)进行计数,并且窗口脉冲发生电路(4)在计数器输出(VCT)等于计数器时输出固定时间段内的低窗口脉冲信号(VW) 值(878)表示标准输出时序。 水平同步信号分离电路(1)仅在复合同步信号(V1)落入固定时间段内时输出水平同步信号(V2)。 然后,水平相位判断电路(2)输出标准信号标志(V3),并且同步信号发生电路(3)与参考时钟(VCL)同步地输出水平同步信号(V2)。 当复合同步信号(V1)不在固定时间段内时,水平相位判断电路(2)输出非标准信号标志(V3),同步信号发生电路(3)输出水平同步信号(V4 )由窗口脉冲信号(VW)产生。
    • 29. 发明授权
    • Charging control apparatus, charging control method
    • 充电控制装置,充电控制方式
    • US07692412B2
    • 2010-04-06
    • US11706369
    • 2007-02-15
    • Kazuhi YamaguchiKouji FukuokaShinji YamashitaShinji TakemotoShinichiro Takatomi
    • Kazuhi YamaguchiKouji FukuokaShinji YamashitaShinji TakemotoShinichiro Takatomi
    • H02P11/00H02P9/00
    • H02J7/1446Y02T10/92
    • A charging control apparatus is adapted to control an alternator which is operable to generate a voltage to charge a battery which is operable to supply the voltage to an electric component. An interface is connected to the alternator, the battery, and the electric component and operable to input and output a signal therebetween. A microcomputer is connected to the inter face and operable to execute a gradual change process in which a generating voltage of the alternator is gradually changed to a target generating voltage of the alternator and a sudden change process in which the generating voltage is suddenly changed to the target generating voltage. The microcomputer is operable to detect a using status of the electric component based on the signal. The microcomputer is operable to judge whether the gradual change process is required or the sudden change process is required based on the detected using status. The microcomputer executes the sudden change process when the microcomputer judges that the sudden change process is required. The microcomputer executes the gradual change process when the microcomputer judges that the gradual change process is required.
    • 充电控制装置适于控制交流发电机,该交流发电机可操作地产生电压以对可操作以将电压提供给电气部件的电池充电。 接口连接到交流发电机,电池和电气部件,并可操作以在它们之间输入和输出信号。 微型计算机连接到接口,并且可操作地执行逐渐改变过程,其中交流发电机的发电电压逐渐改变为交流发电机的目标发电电压,并且发电电压突然改变为 目标发电电压。 微型计算机可操作以基于该信号检测电气部件的使用状态。 微型计算机可操作以基于检测到的使用状态来判断是否需要逐渐改变处理或者需要突发变化处理。 当微型计算机判断需要突然变化处理时,微型计算机执行突然变化处理。 当微型计算机判断需要逐渐改变过程时,微型计算机执行逐渐变化处理。