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    • 3. 发明申请
    • RADIAL COUNTERFLOW REACTOR WITH APPLIED RADIANT ENERGY
    • 具有应用辐射能的径向反流反应器
    • US20140325866A1
    • 2014-11-06
    • US14333276
    • 2014-07-16
    • McCutchen Co.
    • David J. McCutchenWilmot H. McCutchen
    • F26B3/28
    • F26B3/283A01K61/59C12M21/02C12M27/02C12M27/10C12M31/10C12M31/12C12N1/066C12N1/12C12N13/00C12P7/64Y02A40/824Y10T137/206
    • An improvement is described for the processing of biological material in a continuous stream by the application of radiant energy taken from the wavelengths from infrared to ultraviolet, and its absorption by a feedstock in a workspace of featuring controlled turbulence created by one or more counter-rotating disk impellers. The absorbed energy and the controlled turbulence patterns create a continuous process of productive change in a feed into the reactor, with separated light and heavy product output streams flowing both inward and outward from the axis in radial counterflow. The basic mechanism of processing can be applied to a wide range of feedstocks, from the promotion of the growth of algae to make biofuel or other forms of aquaculture, to a use in the controlled combustion of organic material to make biochar.
    • 描述了通过施加从红外线到紫外线的波长的辐射能来处理连续流中的生物材料的改进,以及其在工作空间中被原料吸收的特征,其特征在于由一个或多个反向旋转产生的受控湍流 磁盘叶轮 吸收的能量和受控的湍流模式产生了进入反应器的进料的生产性变化的连续过程,分离的轻质和重质产物输出流径向逆流从轴线向内和向外流动。 加工的基本机制可以应用于广泛的原料,从促进藻类的生长,使生物燃料或其他形式的水产养殖,到有机材料的受控燃烧中用于生物炭的用途。
    • 6. 发明申请
    • RADIAL COUNTERFLOW SEPARATION FILTER WITH FOCUSED EXHAUST
    • US20190030474A1
    • 2019-01-31
    • US15664855
    • 2017-07-31
    • MCCUTCHEN CO.
    • DAVID J. MCCUTCHEN
    • B01D45/14B01D19/00B01D21/26
    • An improved apparatus for filtration has a fluid mixture feed comprising light and heavy fractions fed into the workspace between counter-rotating disk impellers within a tank, thereby forming vortices in the workspace. A static radial exhaust array is located axially in the workspace, comprising exhaust channels, each of which has a peripheral end facing the workspace and an inner end communicating with an axial exhaust drain. An axial pump produces low pressure in the axial exhaust drain, thereby drawing in and anchoring the vortices to the peripheral ends of the exhaust channels so that the exhaust channels can extract the contents of the vortex cores. Vanes can be incorporated into the workspace surface of each disk impeller so that the opposed vanes pass in close proximity, forming vortices along a plurality of radial lanes of intersection, with the peripheral openings of each of the exhaust channels aligned with at least one of the lanes of intersection in the workspace. The feed can be a peripheral feed which enters the workspace radially inward through the periphery of the workspace, or the feed can enter the workspace radially outward through a static axial feed array.
    • 7. 发明申请
    • RADIAL COUNTERFLOW SHEAR ELECTROLYSIS
    • 径向逆流剪切电解
    • US20140346055A1
    • 2014-11-27
    • US14459153
    • 2014-08-13
    • McCutchen Co.
    • Wilmot H. McCutchenDavid J. McCutchen
    • C25B9/12C25B1/24C25B1/13C25B1/00C25B1/02
    • C25B9/125C25B1/00C25B1/02C25B1/13C25B1/24C25D11/024C25D17/00C25D17/10Y02E60/368
    • Coaxial disk armatures, counter-rotating through an axial magnetic field, act as electrolysis electrodes and high shear centrifugal impellers for an axial feed. The feed can be carbon dioxide, water, methane, or other substances requiring electrolysis. Carbon dioxide and water can be processed into syngas and ozone continuously, enabling carbon and oxygen recycling at power plants. Within the space between the counter-rotating disk electrodes, a shear layer comprising a fractal tree network of radial vortices provides sink flow conduits for light fractions, such as syngas, radially inward while the heavy fractions, such as ozone and elemental carbon flow radially outward in boundary layers against the disks and beyond the disk periphery, where they are recovered as valuable products, such as carbon nanotubes.
    • 通过轴向磁场反向旋转的同轴圆盘电枢用作轴向进给的电解电极和高剪切离心叶轮。 饲料可以是二氧化碳,水,甲烷或需要电解的其他物质。 二氧化碳和水可以连续加工成合成气和臭氧,使发电厂能够回收碳和氧。 在反向旋转盘电极之间的空间内,包括径向涡旋分形树网络的剪切层为径向向内的轻馏分例如合成气提供沉流流动管道,而重馏分如臭氧和元素碳径向向外流动 在与磁盘的边界层中并且超过磁盘周边,在那里它们作为有价值的产物如碳纳米管被回收。