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    • 1. 发明授权
    • Halide reduction in dihydrocarbylmagnesium mixtures
    • 二烃基镁混合物中的卤化物还原
    • US07871547B2
    • 2011-01-18
    • US11718380
    • 2004-11-12
    • Milind M. PradhanChi Hung ChengRajeev S. MathurRichard A. HolubDonald W. Imhoff
    • Milind M. PradhanChi Hung ChengRajeev S. MathurRichard A. HolubDonald W. Imhoff
    • C07F1/02
    • C07F3/02
    • This invention provides a process for reducing the amount of soluble halide in a solution comprising a liquid organic medium, at least one viscosity reducing agent, at least one dihydrocarbylmagnesium compound, and an initial amount of soluble halide. The process comprises mixing at least one alkali metal with the solution at a mole ratio of alkali metal to magnesium of less than about 1:2.5, thereby forming precipitated soluble halides. Also provided by this invention is a process for reducing the amount of soluble halide in a slurry comprising a liquid organic medium, at least one viscosity reducing agent, at least one dihydrocarbylmagnesium compound, solids from the formation of said dihydrocarbylmagnesium compound, and an initial amount of soluble halide. This process comprises mixing at least one alkali metal with the slurry at a mole ratio of alkali metal to magnesium of less than about 1:1.25, thereby forming precipitated soluble halides.
    • 本发明提供一种减少包含液体有机介质,至少一种降粘剂,至少一种二烃基镁化合物和初始量的可溶性卤化物的溶液中的可溶性卤化物的量的方法。 该方法包括将碱金属与镁的摩尔比以小于约1:2.5的比例混合至少一种碱金属与溶液,由此形成沉淀的可溶性卤化物。 本发明还提供一种减少包含液体有机介质,至少一种粘度降低剂,至少一种二烃基镁化合物,形成所述二烃基镁化合物的固体和初始量的浆料中的可溶性卤化物的量的方法 的可溶性卤化物。 该方法包括将碱金属与镁的摩尔比以小于约1:1.25的比例混合至少一种碱金属,从而形成沉淀的可溶性卤化物。
    • 7. 发明授权
    • System for distributing and controlling color reproduction at multiple
sites
    • US6043909A
    • 2000-03-28
    • US606883
    • 1996-02-26
    • Richard A. Holub
    • Richard A. Holub
    • B41J2/525G01J3/50G06F3/023G06F3/048G06F3/12H04N1/46H04N1/60H04N17/02H04N1/23
    • G06F3/1203G01J3/50G01J3/524G06F3/04897G06F3/1267H04N1/32523H04N1/32545H04N1/46H04N1/60H04N1/6052H04N1/6058H04N1/6066G01J3/462G01J3/465H04N17/02
    • The system provides for controlling color reproduction of input color image data representing one or more pages or page constituents in a network having nodes (or sites). Each one of the nodes comprises at least one rendering device. The system distributes the input color image data from one of the nodes to other nodes, and provides a data structure (virtual proof) in the network. This data structure has components shared by the nodes and other components present only at each node. Next, the system has means for providing color calibration data at each node characterizing output colors (colorants) of the rendering device of the node, and means for producing at each node, responsive to the color calibration data of the rendering device of the node, information for transforming the input color image data into output color image data at the rendering device of the node. The information is then stored in the data structure in different ones of the shared and other components. Means are provided in the system for transforming at each node the input color image data into output color image data for the rendering device of the node responsive to the information in the data structure. The rendering device of each node renders a color reproduction of the page constituents responsive to the output color image data, wherein colors displayed in the reproduction at the rendering device of each node appear substantially the same within the output colors attainable by the rendering devices. The system further has means for verifying at each node that the information for the rendering device of the node properly transformed the input color image data into the output color image data, and means for revising the information stored in the data structure at the node responsive to results of the verifying means. Shared components of the data structure may also store color preferences selected by a user. The information producing means of the system may further operate responsive to both the color calibration data and the color preferences. The rendering devices in the system can provide color reproductions having three or four colorants, and may provide more than four output colors (color inks).
    • 10. 发明申请
    • System for distributing and controlling color reproduction at multiple sites
    • US20100245874A1
    • 2010-09-30
    • US12802609
    • 2010-06-10
    • Richard A. Holub
    • Richard A. Holub
    • H04N1/60G06K15/00
    • G06F3/1203G01J3/462G01J3/465G01J3/50G01J3/524G06F3/04897G06F3/1267H04N1/32523H04N1/32545H04N1/46H04N1/60H04N1/6052H04N1/6058H04N1/6066H04N17/02
    • The system provides for controlling color reproduction of input color image data representing one or more pages or page constituents in a network having nodes (or sites). Each one of the nodes comprises at least one rendering device. The system distributes the input color image data from one of the nodes to other nodes, and provides a data structure (virtual proof) in the network. This data structure has components shared by the nodes and other components present only at each node. Next, the system has means for providing color calibration data at each node characterizing output colors (colorants) of the rendering device of the node, and means for producing at each node, responsive to the color calibration data of the rendering device of the node, information for transforming the input color image data into output color image data at the rendering device of the node. The information is then stored in the data structure in different ones of the shared and other components. Means are provided in the system for transforming at each node the input color image data into output color image data for the rendering device of the node responsive to the information in the data structure. The rendering device of each node renders a color reproduction of the page constituents responsive to the output color image data, wherein colors displayed in the reproduction at the rendering device of each node appear substantially the same within the output colors attainable by the rendering devices. The system further has means for verifying at each node that the information for the rendering device of the node properly transformed the input color image data into the output color image data, and means for revising the information stored in the data structure at the node responsive to results of the verifying means. Shared components of the data structure may also store color preferences selected by a user. The information producing means of the system may further operate responsive to both the color calibration data and the color preferences. The rendering devices in the system can provide color reproductions having three or four colorants, and may provide more than four output colors (color inks).