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    • 1. 发明授权
    • Combination sterilized hot-water producer and incineration system
    • 组合灭菌热水生产和焚烧系统
    • US5326544A
    • 1994-07-05
    • US789873
    • 1991-11-12
    • Yoshishige Takahashi
    • Yoshishige Takahashi
    • B09B3/00C02F1/02F23G5/00F23G5/44F23G5/46F23J15/04F24H1/20A61L2/04
    • F23G5/46F23G5/444F23J15/04F24H1/207F23G2206/203Y02E20/12Y02E50/30
    • The heat from garbage upon incineration and solar heat can be effectively used to make sterilized hot water economically. A sterilized hot-water generator is provided with upper, intermediate and lower tanks in communication with each other. The lower tank includes a combustion chamber which is in communication with heating chambers housed centrally within the upper and intermediate tanks. A solar heat hot-water maker is attached to the front side of the sterilized hot-water generator. A sterilizer is located through the heating chambers in the upper and intermediate tanks to introduce the hot water in the upper tank into an associated sterilizing chamber for sterilization by heating. A fume removing tank is provided to dissolve, in water, fumes generated during combustion. Exhaust gases leaving the fume removing tank are fed to a reducing tank where they are reduced to oxygen, by plants, for example. The oxygen is then released into the atmosphere.
    • 垃圾焚烧和太阳热的热量可以有效地用于消毒热水的经济性。 灭菌的热水发生器具有彼此连通的上,中,下罐。 下部箱体包括燃烧室,该燃烧室与容纳在上部和中间罐中央的加热室连通。 一个太阳能热水器附着在无菌热水发生器的正面。 灭菌器位于上部和中间罐中的加热室中,以将上部罐中的热水引入相关联的灭菌室中,通过加热进行灭菌。 提供烟雾消除罐以在水中溶解燃烧期间产生的烟雾。 离开烟气分离罐的废气例如通过植物进料到还原罐中,在那里它们被还原成氧。 然后将氧气释放到大气中。
    • 2. 发明公开
    • Combination sterilized hot-water and incineration system
    • Kombinationssystem zur Erzeugung von heissem sterilisierten Wasser und zurMüllverbrennung。
    • EP0491470A2
    • 1992-06-24
    • EP91310688.6
    • 1991-11-20
    • KABUSHIKI KAISHA OZE
    • Takahashi, Yoshishige
    • F23G5/46F23J15/00F24H1/22
    • F23G5/46F23G5/444F23G2206/203F23J15/04F24H1/207Y02E20/12Y02E50/30
    • The heat of garbage on incineration and solar heat can be effectively used to produce sterilized hot water economically. A sterilized hot-water generator (1) is built up of upper (2), intermediate (9) and lower tanks (12), which are in communication with each other. The lower tank includes a combustion chamber (13) which is in communication with heating chambers (3,10) housed centrally within the upper and intermediate tanks. A solar waterheater (32) is attached to the front side of the sterilized hot-water generator. A sterilizer (33) is located inside the heating chambers of the upper and intermediate tanks to sterilize the hot water from the upper tank by heat. A fume removing tank (43) is provided to dissolve in water fumes generated during combustion, and gases leaving the fume removing tank are fed to a tank (47) where they are reduced to oxygen by plants, which is then released into the atmosphere.
    • 垃圾焚烧和太阳热的热量可以有效地用于消毒热水的经济性。 一个灭菌的热水发生器由上,中,下两个储罐构成,并相互连通。 下部箱体包括燃烧室,其与容纳在上部和中间罐的中央的加热室连通。 一台太阳能热水器附着在无菌热水发生器的正面。 灭菌器位于上,中间罐的加热室内,将上部水箱中的热水引入相关的灭菌室,通过加热灭菌。 提供烟雾消除罐以溶解在燃烧期间产生的水中的烟雾,并且离开烟气去除罐的排出气体被供给到还原罐,在那里它们被植物等还原成氧,并且当氧气释放到大气中时。
    • 4. 发明授权
    • Water piping system
    • 水管系统
    • US5287876A
    • 1994-02-22
    • US812040
    • 1991-12-23
    • Yoshishige Takahashi
    • Yoshishige Takahashi
    • E03B7/10E03B7/12F16L55/00
    • E03B7/10Y10T137/1353Y10T137/1987Y10T137/6606Y10T137/6969Y10T137/7737Y10T137/7759Y10T137/7761
    • The present invention provides a water piping system wherein when a predetermined time elapses after the flow of the water in a hose has stopped, the water is drawn out of the hose, thereby preventing proliferation of various bacteria in the water standing stagnant in the hose and when the temperature of the water drops, the water is completely drawn out of the hose, thereby preventing a water pipe from rupturing or cracking in the wintertime. The water pipe including a reducing valve which is at a position higher than a waterstop valve is connected with a hose through a first electromagnetic valve. The required number of second electromagnetic valves are located intermediate on the hose. When a predetermined time elapses after the flow of the water through the hose has stopped, the first valve is temporalily closed while the second valves are opened. When a water-temperature sensor incorporated into one of the second valve senses that the temperature of the water has dropped to a predetermined lever, the first valve is closed while the second valves are put open.
    • 本发明提供了一种水管系统,其中当在软管中的水流已经停止之后经过预定时间时,水被从软管中抽出,从而防止在水中静止的水中各种细菌的增殖,以及 当水的温度下降时,水完全从软管中抽出,从而防止水管在冬季发生破裂或开裂。 包括位于高于止回阀的位置的减压阀的水管通过第一电磁阀与软管连接。 所需数量的第二电磁阀位于软管的中间。 当通过软管的水流已经停止之后经过预定时间时,第二阀在第二阀打开时被暂时关闭。 当结合到第二阀中的一个的水温传感器感测到水的温度已经下降到预定的杆时,第一阀关闭,而第二阀被打开。
    • 6. 发明公开
    • Water piping system
    • Wasserleitungssystem。
    • EP0597554A1
    • 1994-05-18
    • EP93203225.3
    • 1992-01-07
    • KABUSHIKI KAISHA OZE
    • Takahashi, Yoshishige
    • E03B7/10
    • E03B7/10Y10T137/1353Y10T137/1987Y10T137/6606Y10T137/6969Y10T137/7737Y10T137/7759Y10T137/7761
    • The present invention provides a water piping system wherein when the temperature of the water drops, the water is completely drawn out of the hose, thereby preventing a water pipe from rupturing or cracking in the wintertime.
      The water pipe including a reducing valve (3) which is at a position higher than a waterstop valve (2) is connected with a hose (5) through a first electromagnetic valve (4). The required number of second electromagnetic valves (7) are located intermediate on the hose. When the ambient temperature has dropped to a predetermined temperature, a heater means associated with said second electromagnetic valves (7) is actuated, and when the ambient temperature rises, said heating means stop heating.
    • 本发明提供了一种水管系统,其中当水的温度下降时,水完全从软管中抽出,从而防止水管在冬季发生破裂或破裂。 在比止回阀(2)高的位置的包括减压阀(3)的水管通过第一电磁阀(4)与软管(5)连接。 所需数量的第二电磁阀(7)位于软管的中间。 当环境温度下降到预定温度时,与所述第二电磁阀(7)相关联的加热器装置被致动,并且当环境温度升高时,所述加热装置停止加热。
    • 7. 发明公开
    • Water piping system
    • Wasserleitungssystem。
    • EP0527545A2
    • 1993-02-17
    • EP92300118.4
    • 1992-01-07
    • KABUSHIKI KAISHA OZE
    • Takahashi, Yoshishige
    • E03B7/10
    • E03B7/10Y10T137/1353Y10T137/1987Y10T137/6606Y10T137/6969Y10T137/7737Y10T137/7759Y10T137/7761
    • The present invention provides a water piping system wherein when a predetermined time elapses after the flow of the water in a hose (5) has stopped, the water is drawn out of the hose, thereby preventing proliferation of various bacteria in the water standing stagnant in the hose and when the temperature of the water drops, the water is completely drawn out of the hose, thereby preventing a water pipe from rupturing or cracking in the wintertime.
      The water pipe (1) including a reducing valve (3) which is at a position higher than a waterstop valve (2) is connected with a hose (5) through a first electromagnetic valve (4). The required number of second electromagnetic valves (7) are located intermediate on the hose. When a predetermined time elapses after the flow of the water through the hose has stopped, the first valve is temporalily closed while the second valves are opened. When a water-temperature sensor incorporated into one of the second valves senses that the temperature of the water has dropped to a predetermined lever, the first valve is closed while the second valves are put open.
    • 本发明提供一种水管系统,其中当在软管(5)中的水流已经停止之后经过预定时间时,水被从软管中抽出,从而防止水中停滞的水中各种细菌的增殖 软管,当水温下降时,水完全从软管中抽出,从而防止水管在冬季发生破裂或开裂。 包括位于高于止水阀(2)的位置的减压阀(3)的水管(1)通过第一电磁阀(4)与软管(5)连接。 所需数量的第二电磁阀(7)位于软管的中间。 当在通过软管的水流动已经停止之后经过预定时间时,第一阀在第二阀打开的同时被暂时关闭。 当结合到第二阀中的一个的水温传感器感测到水的温度已经下降到预定的杆时,第一阀关闭,而第二阀打开。