Method for integrated power generation and organic fertiliser production
    1.
    发明授权
    Method for integrated power generation and organic fertiliser production 有权
    综合发电和有机肥生产方法

    公开(公告)号:US08216336B2

    公开(公告)日:2012-07-10

    申请号:US12227332

    申请日:2007-05-17

    IPC分类号: C05F11/08 F02C6/04

    摘要: The invention relates to an integrated power generation and organic fertilizer production system and method including: a biomass combustion-fuelled power station (12); a facility (14) for producing pelletized organic fertilizer (46); and means for capturing and redirecting waste heat from the power station (12) to the facility (14), to be used in producing pelletized organic fertilizer (46).

    摘要翻译: 本发明涉及一种综合发电和有机肥料生产系统和方法,包括:生物质燃料燃料发电站(12); 用于生产颗粒状有机肥料的设备(14)(46); 以及用于捕获并将来自所述发电站(12)的废热重定向到所述设备(14)的装置,用于生产颗粒状有机肥料(46)。

    Heat accumulator
    5.
    发明授权
    Heat accumulator 失效
    蓄热器

    公开(公告)号:US5315938A

    公开(公告)日:1994-05-31

    申请号:US969114

    申请日:1992-10-30

    申请人: Walter Freller

    发明人: Walter Freller

    摘要: Liquid accumulators which substantially include several or at least one type of energy generation, such as heatable to almost the temperature of fresh air by solar irradiation with the thermal supply of circulation heat, by refuse combustion with the recovery of waste heat, by recovery of waste heat from exhaust gases in the case of heating boilers and generators, and also usable in a continuous process for the production of biogas from small refuse in the sewage.

    摘要翻译: 液体蓄能器,其基本上包括几种或至少一种类型的能量产生,例如通过循环热供应的太阳辐射几乎可以加热到新鲜空气的温度,通过废物燃烧回收废热,通过回收废物 在加热锅炉和发电机的情况下,来自废气的热量,也可用于从污水中的小垃圾生产沼气的连续过程。

    Method and means of exchanging heat between fluid bodies
    8.
    发明授权
    Method and means of exchanging heat between fluid bodies 失效
    在流体之间交换热量的方法和手段

    公开(公告)号:US4474226A

    公开(公告)日:1984-10-02

    申请号:US305388

    申请日:1981-09-25

    IPC分类号: A01C3/02 F28F9/24

    CPC分类号: A01C3/025 Y10S165/908

    摘要: A method and means of exchanging heat in fluids is described herein. The heat exchanger device is comprised of a primary compartment which is separated into at least two longitudinal compartments by a vertically disposed heat exchanger plate. Each longitudinal compartment is divided into a plurality of sub-compartments by walls that extend outwardly from the heat exchanger plate to the sidewalls of the primary compartment. Fluid inlet means are provided at the lower portion and at opposite ends of each longitudinal compartment. Fluid outlet means are provided at the upper portion and at opposite ends of each longitudinal compartment. The sidewalls of each sub-compartment are shorter than the height of the heat exchanger plate to provide a common fluid flow way in each longitudinal compartment over the sub-compartments. The sidewalls of the sub-compartments are progressively lowered at their upper ends in the direction of fluid flow through the flow ways.The method of this invention comprises introducing cold fluid into one of said longitudinal compartments wherein the cold fluid is moved generally in one direction past the heat exchanger plate as the fluid moves into the various sub-compartments and through the flow way to the fluid outlet means. Simultaneously, warmer fluid is introduced into the other of said longitudinal compartments and is similarly moving past the opposite side of the heat exchanger plate but in an opposite direction. Air is introduced into the bottom of the sub-compartments to agitate the fluid that is moving through the longitudinal compartments. Heat is transferred from the warm fluid in one longitudinal compartment to the cooler fluid in the other longitudinal compartment through the heat exchanger plate.

    摘要翻译: 本文描述了在流体中交换热量的方法和装置。 热交换器装置包括一个初级隔室,该隔室通过垂直设置的热交换器板分隔成至少两个纵向舱室。 每个纵向隔室通过壁从热交换器板向外延伸到主隔室的侧壁分成多个子隔间。 流体入口装置设置在每个纵向隔室的下部和相对端。 流体出口装置设置在每个纵向隔室的上部和相对端。 每个子隔室的侧壁比热交换器板的高度短,以在子隔室上的每个纵向间隔中提供公共的流体流动方式。 副隔室的侧壁在其上端沿流体流动方向逐渐降低。 本发明的方法包括将冷流体引入一个所述纵向隔室中,其中当流体移动到各个子隔间中时,冷流体通常沿一个方向移动通过热交换器板,并且通过流体流动到流体出口装置 。 同时,将较暖的流体引入所述纵向隔室中的另一个,并且类似地移动经过热交换器板的相对侧,但是沿相反的方向移动。 空气被引入子舱的底部以搅动正在通过纵向隔室的流体。 热量通过热交换器板从一个纵向隔室中的暖流体转移到另一纵向室中的较冷流体。