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    • 3. 发明申请
    • Underground treatment of biowaste
    • US20060074269A1
    • 2006-04-06
    • US11295775
    • 2005-12-08
    • W. Hughes
    • W. Hughes
    • A62D3/00
    • B09B3/00B09B1/008
    • A method of disposal of biowaste material which comprises drilling a first section of an injection well from the ground into a porous layer, drilling a second section of the injection well from a lower terminus of the first section of the injection well into the porous layer while drilling the same using underbalanced drilling techniques, drilling a first section of a production well from the ground to and into the porous layer, drilling a second section of the production well from the lower end of the first section thereof into the porous layer using underbalanced drilling conditions, making a geological measurement of the pore throat size and/or fracture aperture in the porous layer and treating the biowaste material introduced into the second section of the injection well by comminuting the same in a device such as a shear pump to an average particle size of approximately one-tenth to one-half, preferably one-seventh, of the average pore throat size in the porous layer, the measurement of the pore throat size and/or fracture aperture of the porous layer and the comminuting of the biowaste material being completed prior to the introduction of the biowaste material into the injection well.
    • 4. 发明申请
    • Underground treatment of biowaste
    • 生物废物的地下处理
    • US20060036123A1
    • 2006-02-16
    • US10917282
    • 2004-08-13
    • W. Hughes
    • W. Hughes
    • B09B1/00
    • B09B3/00B09B1/008
    • A method of treatment of biowaste material which comprises drilling a first section of an injection well from the ground into a porous layer, drilling a second portion of the injection well from the lower terminus of the first section of the injection well into the porous layer while drilling the same using underbalanced drilling conditions, drilling a first section of a production well from the ground to and into the porous layer, drilling a second portion of the production well from the terminus of the first section thereof into the porous layer, making a geological measurement of the pore throat size in the porous layer and treating the biowaste materials introduced into the second section of the injection well by comminuting the same in a device such as a shear pump to an average particle size of approximately ½ of the average pore throat size in the porous layer.
    • 一种生物废料的处理方法,包括将注入井的第一部分从地面钻入多孔层,将注入井的第二部分从注入井的第一段的下端钻入多孔层,同时 使用欠平衡钻井条件钻孔相同的钻孔,将生产井的第一部分从地面钻孔到多孔层中,将生产井的第二部分从其第一部分的末端钻入多孔层,从而形成地质 测量多孔层中的孔喉尺寸,并通过在诸如剪切泵的装置中粉碎注入井的第二部分中的生物废物材料,将其平均粒径约为平均孔喉尺寸的1/2的平均粒度 在多孔层中。
    • 5. 发明申请
    • Measuring cup with volume markings visible while pouring
    • 量杯在倾倒时可见
    • US20050029297A1
    • 2005-02-10
    • US10891669
    • 2004-07-15
    • W. Hughes
    • W. Hughes
    • B67D7/56G01F19/00B67D5/38
    • G01F19/00
    • An improved measuring cup is disclosed with volumetric indicia disposed on the inside of the cup that are viewable from above the cup, while the cup is disposed on a horizontal countertop or work surface. The horizontally upward facing volume indicia eliminate the need to raise the measuring cup to eye level to check the amount of material that has been added to the cup or the need to stoop down and view a side of the cup while the cup is disposed on a horizontal countertop or work surface. An improved handle is also disclosed which makes the cup more stable and less prone to being tipped over and spilled during use on a horizontal work surface.
    • 公开了一种改进的量杯,体积标记设置在杯的内部,其可从杯上方观看,同时杯设置在水平的台面或工作表面上。 水平向上的体积标记消除了将量杯提高到眼睛水平以检查已经添加到杯子中的材料的量或者当杯子被放置在杯子上时需要向下弯曲并观察杯子的一侧的需要 水平台面或工作面。 还公开了一种改进的手柄,其使杯更加稳定,并且在使用期间不易倾倒并溢出在水平工作表面上。