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    • 1. 发明申请
    • Method and apparatus for solar collector with integral stagnation temperature control
    • 具有整体停滞温度控制的太阳能集热器的方法和装置
    • US20070272233A1
    • 2007-11-29
    • US11511493
    • 2006-08-29
    • Stephen HarrisonQin LinLucio MesquitaDavid Valletta
    • Stephen HarrisonQin LinLucio MesquitaDavid Valletta
    • F24J2/40
    • F24S10/50F24S40/53F24S50/40Y02E10/44
    • This invention relates to a method and apparatus for a solar collector having intergral control of the maximum temperature that it can reach, thereby avoiding excessive stagnation temperatures in the collector. In one embodiment, a solar collector comprises a top portion comprising glazing, a bottom portion; an absorber disposed between said top portion and said bottom portion for absorbing solar energy received through said glazing, said absorber in a spaced relationship above said bottom portion such that a channel is defined between a lower surface of said absorber and an upper surface of said bottom portion; an inlet and an outlet associated with and at substantially opposite ends of said channel between said absorber and said bottom portion, for ventilating said channel; and a damper for opening said outlet at a temperature equal to or above a first selected temperature and for closing said outlet at a temperature equal to or below a second selected temperature; wherein said first and second selected temperatures are below a stagnation temperature of the solar collector.
    • 本发明涉及一种用于太阳能集热器的方法和装置,其具有可达到的最高温度的整体控制,从而避免了集电器中的过度停滞温度。 在一个实施例中,太阳能收集器包括顶部,其包括玻璃窗,底部; 吸收器,设置在所述顶部和所述底部之间,用于吸收通过所述窗玻璃收到的太阳能,所述吸收体在所述底部部分之上以间隔开的关系形成,使得通道限定在所述吸收体的下表面和所述底部的上表面之间 一部分; 与所述吸收器和所述底部之间的所述通道相关联的入口和出口,用于使所述通道通风; 以及用于在等于或高于第一选定温度的温度下打开所述出口并在等于或低于第二选定温度的温度下关闭所述出口的阻尼器; 其中所述第一和第二选定温度低于所述太阳能收集器的停滞温度。
    • 9. 发明授权
    • Indirect cerium mediated electrosynthesis
    • 间接铈介导的电合成
    • US5516407A
    • 1996-05-14
    • US390236
    • 1995-02-17
    • Stephen Harrison
    • Stephen Harrison
    • C07C45/28C07C46/04C25B1/00C25B3/02C25B9/00C25B9/08
    • C25B1/00B82Y30/00C07C45/28C07C46/04Y02P20/125
    • An integrated process for oxidizing aromatic and alkyl aromatic compounds to form carbonyl containing reaction products comprising the reaction of quadravalent cerium with a reactant stream containing an aromatic or alkyl aromatic compound and using a high degree of mixing, followed by the electrolytic regeneration of the reduced cerium ion in a cell under near turbulent or turbulent flow conditions at high solution velocities relative to the anode. The preferred cell structure for accomplishing the electrolysis utilizes an turbulence promoting anode arrangement which allows for the anolyte to flow past the anode under the conditions mentioned, and a reduced area cathode whereby the anode and cathode compartments need not be separated by an ion exchange membrane.
    • 一种用于氧化芳族和烷基芳族化合物以形成含羰基反应产物的综合方法,其包括四价铈与含芳族或烷基芳族化合物的反应物流的反应,并使用高度混合,随后还原铈的电解再生 在相对于阳极的高溶液速度下在接近湍流或湍流条件下的电池中离子。 用于完成电解的优选的电池结构利用湍流促进阳极装置,其允许阳极电解液在所述条件下流过阳极,并且还原面积阴极,由此阳极和阴极室不需要被离子交换膜分离。
    • 10. 发明授权
    • Indirect cerium medicated electrosynthesis
    • 间接铈药物电合成
    • US5296107A
    • 1994-03-22
    • US846538
    • 1992-03-04
    • Stephen Harrison
    • Stephen Harrison
    • C07C45/28C07C46/04C25B1/00C25B3/02C25B9/00C25B9/08
    • C25B1/00B82Y30/00C07C45/28C07C46/04Y02P20/125
    • An integrated process for oxidizing aromatic and alkyl aromatic compounds to form carbonyl containing reaction products comprising the reaction of quadravalent cerium with a reactant stream containing an aromatic or alkyl aromatic compound and using a high degree of mixing, followed by the electrolytic regeneration of the reduced cerium ion in a cell under near turbulent or turbulent flow conditions at high solution velocities relative to the anode. The preferred cell structure for accomplishing the electrolysis utilizes an turbulence promoting anode arrangement which allows for the anolyte to flow past the anode under the conditions mentioned, and a reduced area cathode whereby the anode and cathode compartments need not be separated by an ion exchange membrane.
    • 一种用于氧化芳族和烷基芳族化合物以形成含羰基反应产物的综合方法,其包括四价铈与含芳族或烷基芳族化合物的反应物流的反应,并使用高度混合,随后还原铈的电解再生 在相对于阳极的高溶液速度下在接近湍流或湍流条件下的电池中离子。 用于完成电解的优选的电池结构利用湍流促进阳极装置,其允许阳极电解液在所述条件下流过阳极,并且还原面积阴极,由此阳极和阴极室不需要被离子交换膜分离。