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    • 23. 发明授权
    • Arrangement for pneumatically regulating the introduction of substances
into chambers
    • US4058230A
    • 1977-11-15
    • US662017
    • 1976-02-27
    • Heinz BellenbergWerner KucharzykWolfgang RohdeWerner Siebert
    • Heinz BellenbergWerner KucharzykWolfgang RohdeWerner Siebert
    • G01F17/00C10B31/00F23K3/00
    • C10B31/00C10B41/005
    • An arrangement for regulating the introduction of substances into chambers is disclosed and is particularly well-suited for the feeding of coal into coke ovens. The arrangement includes a chamber which is to be filled to a predetermined level and a feeding device is provided for feeding material into the chamber. The feeding device has a switch which stops the introduction of the material to the chamber when the level of the material reaches the predetermined level. The switch for the feeding device is electrically connected with a differential pressure switch which is actuated upon the generating of a predetermined pressure differential across it. The requisite pressure differential is generated by introducing pressurized gas into the chamber and an air compressor may be provided for this purpose. A sensing conduit, which is connected with one terminal of the differential pressure switch, extends into the chamber and has an end positioned at the predetermined level to which the chamber is to be filled. The pressurized gas admitted into the chamber sets up certain pressure characteristics in the sensing conduit which are changed when the level of material in the chamber reaches the predetermined level so that the gas no longer has free access to the open end of the sensing conduit. The change in the pressure characteristics causes a pressure differential to be established across the differential pressure switch which, in turn, activates the feeding device switch to stop the introduction of material into the chamber. In order to compensate for shock waves which may be generated in the chamber by the feeding of the material and which may cause a false signal to be transmitted to the switch of the feeding device, a compensating conduit is provided which has an end in the chamber and is connected with the terminal of the differential pressure switch opposite that to which the sensing conduit is connected. A supply conduit for the pressurized gas is also provided and introduces the pressurized gas into the chamber in the vicinity of the end of the sensing conduit.
    • 28. 发明公开
    • WASTE PROCESSING APPARATUS AND METHOD OF FEEDING WASTE
    • 废物处理装置和废物处理方法
    • EP3164469A1
    • 2017-05-10
    • EP15747506.2
    • 2015-07-02
    • DPS Bristol (Holdings) Limited
    • PARKINSON, David John
    • C10J3/66C10B47/30C10B53/00B65G43/02F27D3/08
    • C10B41/005B65G33/14B65G33/34B65G65/463C10B5/00C10B31/10C10B47/30C10B53/00C10J3/66F27D3/08
    • There is disclosed waste processing apparatus (100) comprising: a pyrolyser (300); and a feed assembly (200) comprising: a feed duct (204, 206) and a variable pitch feed screw (232) disposed within the feed duct for conveying waste from a waste inlet (210, 224) to a waste outlet (210, 224) of the feed duct (204, 206); wherein the pitch of the feed screw (232) reduces along its length in a direction from the waste inlet to the waste outlet so that in use waste received in the feed duct (204, 206) is compacted as it is conveyed from the waste inlet to the waste outlet. There is also disclosed waste processing apparatus (100) comprising a pyrolyser (300); and a feed assembly (200) comprising: a feed duct (204, 206); a feed screw (212, 232) disposed within the feed duct (204, 206) for conveying waste from a waste inlet to a waste outlet of the feed duct (204, 206);a rotary drive (240) for causing the feed screw (212, 232) to convey waste from the waste inlet to the waste outlet; a rotational resistance sensor (244) for monitoring a parameter relating to resistance to rotation; and a rotary drive controller (242) configured to cause the rotary-output-speed of the rotary drive (240) to reduce when the monitored parameter indicates excessive resistance to rotation.
    • 公开的废物处理装置100包括:热解器300; 以及进料组件200,其包括:进料管道204,206和布置在进料管道内的可变节距进料螺杆232,用于将来自废物入口210,224的废物传送到进料管道204,206的废物出口210,224; 其中进料螺杆232的螺距沿其长度沿从废物入口到废物出口的方向减小,使得在使用中,在进料管道204,206中接收的废物在从废物入口传送到废物出口时被压实 。 还公开了包括热解器300的废物处理装置100; 以及馈送组件200,其包括:馈送管道204,206; 设置在进料管道204,206内的进料螺杆212,232,用于将来自进料管道204,206的废物进口的废物传送到废料出口; 旋转驱动器240,用于使进给螺杆212,232将来自废物入口的废物传送到废物出口; 用于监测与旋转阻力有关的参数的旋转阻力传感器244; 以及旋转驱动控制器242,该旋转驱动控制器242构造成当监测到的参数指示旋转阻力过大时使旋转驱动器240的旋转输出速度减小。