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    • 5. 发明申请
    • Preparation method for sample for analysis of dioxins and preparation apparatus for the same
    • 用于分析二恶英样品的制备方法及其制备装置
    • US20050287037A1
    • 2005-12-29
    • US11167505
    • 2005-06-28
    • Katsuhisa HondaNoriaki Hamada
    • Katsuhisa HondaNoriaki Hamada
    • G01N1/34G01N30/06G01N31/00
    • G01N30/06G01N1/405G01N2030/062G01N2030/8845G01N2030/8854
    • A highly reliable hydrophilic sample for analysis of dioxins suitable for analysis through a bioassay method is prepared from a hydrophilic solution of dioxins simply and in a short period of time. A preparation method for a sample for analysis of dioxins includes: supplying a hydrophobic solution of dioxins to a latter column (22) filled with a silica gel-based filler (22a); supplying to and passing through the latter column (22) supplied with the hydrophobic solution a hydrophobic solvent; supplying to and passing through a solvent substitution column (30) filled with an alumina-based filler (30a) the hydrophobic solvent passed through the latter column (22); supplying to and passing through the solvent substitution column (30) a hydrophilic solvent capable of dissolving dioxins from a second solvent supply part (70) in a direction opposite to the direction of the hydrophobic solvent passed through the solvent substitution column (30); and acquiring the hydrophilic solvent passed through the solvent substitution column (30).
    • 通过生物测定方法分析适用于分析二恶英的高度可靠的亲水性样品由简单且短时间内的二恶英的亲水溶液制备。 用于分析二恶英的样品的制备方法包括:将二恶英的疏水性溶液供给到填充有硅胶基填料(22 a)的后一柱(22); 供应并通过供给疏水性溶液的后一柱(22)疏水溶剂; 供给并通过填充有氧化铝基填料(30A)的溶剂置换柱(30a),所述疏水性溶剂通过后一柱(22); 向所述溶剂置换柱(30)供给和通过能够以与通过所述溶剂置换塔(30)的疏水性溶剂的方向相反的方向从第二溶剂供给部(70)溶解二恶英的亲水性溶剂。 并获得通过溶剂置换柱(30)的亲水性溶剂。
    • 8. 发明授权
    • Optical molding apparatus and optical molding method
    • 光学成型设备和光学成型方法
    • US08226394B2
    • 2012-07-24
    • US12354396
    • 2009-01-15
    • Katsuhisa HondaNobuhiro KiharaJunichi Kuzusako
    • Katsuhisa HondaNobuhiro KiharaJunichi Kuzusako
    • B29C35/08
    • B29C64/135B33Y30/00B33Y40/00
    • An optical molding apparatus molds a three-dimensional model by stacking cured layers. Each cured layer is formed by emitting light according to cross-sectional-shape data of the three-dimensional model onto a surface of photo-curable resin. The optical molding apparatus includes a container that contains the photo-curable resin, a movable stage that is movable in a direction orthogonal to the surface of the photo-curable resin, an optical system that emits the light onto the surface of the photo-curable resin contained in the container so as to form each cured layer on the movable stage, and a discharging mechanism that performs a discharging operation for discharging new photo-curable resin onto a surface of each cured layer formed on the movable stage before stacking a subsequent cured layer.
    • 光学成型装置通过堆叠固化层来模制三维模型。 通过根据三维模型的横截面形状的数据将光照射到光固化树脂的表面上,形成各固化层。 光学成型装置包括容纳有光固化树脂的容器,可在与光固化树脂的表面正交的方向上移动的活动台,将光照射到光固化树脂的表面上的光学系统 包含在容器中的树脂,以便在可移动台上形成每个固化层;以及排出机构,其在堆叠后续固化后执行将新的光固化树脂排出到形成在可移动台上的每个固化层的表面上的排出操作 层。
    • 9. 发明授权
    • Method for deaerating liquid products
    • 脱水液体产品的方法
    • US5522917A
    • 1996-06-04
    • US298619
    • 1994-08-31
    • Katsuhisa HondaMasazumi Yamashita
    • Katsuhisa HondaMasazumi Yamashita
    • B01D19/00B01D61/00B01D63/02B01D63/08
    • B01D61/00B01D19/0005
    • A deaeration method for eliminating dissolved gases from a liquid product, which method involves low initial cost and running cost, compact equipment, and simple arrangement to accomplish the deaeration. For the method to eliminate dissolved gases from a liquid product, a deaeration module which is divided by a gas-pervious membrane into a liquid phase side and a vapor phase side is used. A deaeration-use gas composed of one or more kinds of inactive gases is previously dissolved in a liquid product to be deaerated, whereby a deaeration-target liquid is prepared. The deaeration-target liquid is distributed on the liquid phase side, in which distribution process the deaeration-use gas moves to the vapor phase side via the gas-pervious membrane, while the dissolved gases move to the vapor phase side along with the movement of the deaeration-use gas. This movement of the gases is carried out during passage through the deaeration module under ambient pressure.
    • 用于消除液体产物中溶解气体的脱气方法,该方法涉及低的初始成本和运行成本,紧凑的设备以及完成脱气的简单布置。 为了从液体产物中除去溶解气体的方法,使用由气体透过膜分成液相侧和气相侧的脱气组件。 预先将由一种或多种惰性气体组成的除气用气体溶解在要脱气的液体产物中,由此制备脱气目标液体。 脱气靶液体分布在液相侧,其中脱气用气体通过气体透过膜移动到气相侧,其中分解过程中溶解的气体随着气相侧移动到气相侧 脱气用气体。 气体的这种移动在环境压力下通过脱气模块时进行。
    • 10. 发明申请
    • OPTICAL MOLDING APPARATUS AND OPTICAL MOLDING METHOD
    • 光学成型设备和光学成型方法
    • US20120205826A1
    • 2012-08-16
    • US13453570
    • 2012-04-23
    • Katsuhisa HondaNobuhiro KiharaJunichi Kuzusako
    • Katsuhisa HondaNobuhiro KiharaJunichi Kuzusako
    • G02B1/12
    • B29C64/135B33Y30/00B33Y40/00
    • An optical molding apparatus that molds a three-dimensional model by stacking cured layers. Each cured layer is formed by emitting light according to cross-sectional-shape data of the three-dimensional model onto a surface of photo-curable resin. The optical molding apparatus includes a container that contains the photo-curable resin, a movable stage that is movable in a direction orthogonal to the surface of the photo-curable resin, an optical system that emits the light onto the surface of the photo-curable resin contained in the container so as to form each cured layer on the movable stage, and a discharging mechanism that performs a discharging operation for discharging new photo-curable resin onto a surface of each cured layer formed on the movable stage before stacking a subsequent cured layer.
    • 一种通过堆叠固化层来模制三维模型的光学模制装置。 通过根据三维模型的横截面形状的数据将光照射到光固化树脂的表面上,形成各固化层。 光学成型装置包括容纳有光固化树脂的容器,可在与光固化树脂的表面正交的方向上移动的活动台,将光照射到光固化树脂的表面上的光学系统 包含在容器中的树脂,以便在可移动台上形成每个固化层;以及排出机构,其在堆叠后续固化后执行将新的可光固化树脂排出到形成在可移动台上的每个固化层的表面上的排放操作 层。