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    • 3. 发明公开
    • System for trapping flying insects and a method for making the same
    • Vorrichtung zum Fangen von Fluginsekten und Verfahren zu dessen Herstellung
    • EP1537780A1
    • 2005-06-08
    • EP05003821.5
    • 2002-10-03
    • American Biophysics Corporation
    • Durand, Emma A.Palombo, Michael J.
    • A01M1/02A01M1/06F01N3/28
    • F23C13/00A01M1/02A01M1/023A01M1/06A01M5/00A01M2200/012
    • A flying insect trapping device configured to be used with a fuel supply containing combustible fuel. The device may include a supporting frame (14); an insect trap chamber (40) carried on the supporting frame; and a combustion device which may also be carried on the supporting frame. The combustion device comprises an inlet port (102) for connection with the fuel supply, an exhaust port (136), and a combustion chamber (96) communicating the inlet port with the exhaust port. The inlet port enables the fuel from the fuel supply to flow into the combustion chamber for continuous combustion therein to create an exhaust gas within the combustion chamber. An insect inlet is communicated with the insect trap chamber to enable flying insects to enter the trap chamber through the insect inlet. A vacuum device (54) communicated to the insect inlet is constructed and arranged to draw insects attracted to the exhaust outlet through the insect inlet and into the insect trap chamber.
    • 飞虫捕获装置,其构造成与含有可燃燃料的燃料供应一起使用。 该装置可以包括支撑框架(14); 携带在支撑框架上的昆虫捕获室(40); 以及也可以承载在支撑框架上的燃烧装置。 燃烧装置包括用于与燃料供应连接的入口(102),排气口(136)和将入口与排气口连通的燃烧室(96)。 入口端口使得来自燃料供应的燃料能够流入燃烧室以在其中持续燃烧,从而在燃烧室内产生废气。 昆虫入口与昆虫捕获室连通,以使昆虫能够通过昆虫入口进入捕集室。 传送到昆虫入口的真空装置(54)被构造和布置成将通过昆虫入口吸引到排气出口的昆虫吸入昆虫捕获室。
    • 4. 发明授权
    • SYSTEM FOR TRAPPING FLYING INSECTS
    • SYSTEM FOR启动飞虫
    • EP1432304B1
    • 2006-05-17
    • EP02800460.4
    • 2002-10-03
    • American Biophysics Corporation
    • DURAND, Emma, A.PALOMBO, Michael, J.
    • A01M1/02A01M1/06F01N3/28
    • F23C99/00A01M1/02A01M1/023A01M1/06A01M5/00A01M2200/012F23D91/02
    • A flying insect trapping device (10) configured to be used with a fuel supply (12) containing combustible fuel. The device may include a supporting frame (14), an insect trap chamber (40) carried on the supporting frame (14); and a combustion device (50) which may also be carried on the supporting frame (14). The combustion device (50) comprises an inlet port (102) for connection with the fuel supply (12), an exhaust port, and a combustion chamber (96) communicating the inlet port (102) with the exhaust port. The inlet port (102) enables the fuel from the fuel supply (12) to flow into the combustion chamber (96) for continuous combustion therein to create an exhaust gas within the combustion chamber (96). The combustion device further includes a catalyst element (124) disposed within the combustion chamber (96). The catalyst element (124) has a catalyst body with a plurality of essentially linear elongated conduits for enabling the exhaust gas created in the combustion chamber (96) to flow therethrough towards the exhaust port. The catalyst body includes a catalytically active material that, during operation, converts carbon monoxide in the exhaust gas to carbon dioxide as the exhaust gas flows through the elongated conduits. An insect inlet (26) is communicated with the insect trap chamber (40) to enable flying insects to enter the trap chamber (40) through the insect inlet (26). A vacuum device (54) communicated to the insect inlet (26) is constructed and arranged to draw insects attracted to the exhaust outlet through the insect inlet and into the insect trap chamber.
    • 5. 发明公开
    • SYSTEM FOR TRAPPING FLYING INSECTS AND A METHOD FOR MAKING THE SAME
    • SYSTEM FOR启动飞虫
    • EP1432304A2
    • 2004-06-30
    • EP02800460.4
    • 2002-10-03
    • American Biophysics Corporation
    • DURAND, Emma, A.PALOMBO, Michael, J.
    • A01M1/02A01M1/06F01N3/28
    • F23C99/00A01M1/02A01M1/023A01M1/06A01M5/00A01M2200/012F23D91/02
    • A flying insect trapping device (10) configured to be used with a fuel supply (12) containing combustible fuel. The device may include a supporting frame (14), an insect trap chamber (40) carried on the supporting frame (14); and a combustion device (50) which may also be carried on the supporting frame (14). The combustion device (50) comprises an inlet port (102) for connection with the fuel supply (12), an exhaust port, and a combustion chamber (96) communicating the inlet port (102) with the exhaust port. The inlet port (102) enables the fuel from the fuel supply (12) to flow into the combustion chamber (96) for continuous combustion therein to create an exhaust gas within the combustion chamber (96). The combustion device further includes a catalyst element (124) disposed within the combustion chamber (96). The catalyst element (124) has a catalyst body with a plurality of essentially linear elongated conduits for enabling the exhaust gas created in the combustion chamber (96) to flow therethrough towards the exhaust port. The catalyst body includes a catalytically active material that, during operation, converts carbon monoxide in the exhaust gas to carbon dioxide as the exhaust gas flows through the elongated conduits. An insect inlet (26) is communicated with the insect trap chamber (40) to enable flying insects to enter the trap chamber (40) through the insect inlet (26). A vacuum device (54) communicated to the insect inlet (26) is constructed and arranged to draw insects attracted to the exhaust outlet through the insect inlet and into the insect trap chamber.