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    • 11. 发明授权
    • Method in a pulsed accelerator for accelerating a magnetized rotating
plasma
    • 用于加速磁化旋转等离子体的脉冲加速器中的方法
    • US5300861A
    • 1994-04-05
    • US32721
    • 1993-03-16
    • Herman HelgesenSonja R. HelgesenAlfred SillesenJan BergstromVladimir M. Kouznetsov
    • Herman HelgesenSonja R. HelgesenAlfred SillesenJan BergstromVladimir M. Kouznetsov
    • H05H1/54H05H1/24H01J7/24
    • H05H1/52
    • The invention provides in an accelerator for accelerating a magnetized rotating plasma comprising a magnetic system arrange symmetrically around an axis, two electrodes (10, 11) extending symmetrically along said axis inside the magnetic system, said electrodes being spaced from each other in the transverse direction of said axis, two pulsed power sources connected to the magnetic system and the electrodes, respectively, and openings (18) in the inner electrode in a cross-section perpendicular to said axis for the supply of a neutral gas to the space defined by said electrodes, a method for controlling the operation of the accelerator wherein the magnetic field is confined to form a layer which comprises a first cylindrical portion (12) with a minor diameter and a second cylindrical portion (14) with a major diameter and a transition portion (13) interconnecting said first and second cylindrical portions being arranged axis-symmetrically around a common axis.
    • 本发明提供一种用于加速磁化旋转等离子体的加速器,该磁化旋转等离子体包括围绕轴线对称布置的磁体系统,在磁性系统内部沿所述轴对称延伸的两个电极(10,11),所述电极在横向彼此间隔开 的两个脉冲电源分别连接到磁系统和电极,以及垂直于所述轴线的横截面中的内电极中的开口(18),用于向由所述轴线限定的空间供应中性气体 电极,用于控制加速器的操作的方法,其中磁场被限制以形成包括具有小直径的第一圆柱形部分(12)和具有大直径和过渡部分的第二圆柱形部分(14)的层 将所述第一和第二圆柱形部分互相连接的连接件(13)围绕公共轴线对称布置。
    • 13. 发明授权
    • Method for ion-exchange chromatography and media used thereof
    • 离子交换色谱法及其使用的介质
    • US09278297B2
    • 2016-03-08
    • US13809179
    • 2011-06-28
    • Jan BergstromBo-Lennart Johansson
    • Jan BergstromBo-Lennart Johansson
    • G01N30/02B01D15/36C07K1/18
    • B01D15/361C07K1/18
    • The present invention relates to a method for running ion exchange chromatography on a media comprising shell beads having an inner porous core and an outer shell, wherein the inner core is provided with ligands whose charge changes with pH and the shell is provided with charged ion exchange ligands, the method comprising the following steps: a) adsorbing sample molecules on the shell ligands at a first pH; b) causing a discharge of the inner core ligands at a second pH by addition of a buffer substance that is able to increase its charge having the same sign/type as that of the core ligands, which at the same time causes release of ions from the inner core ligands and thereby an increase in ionic strength that displaces the sample molecules from the shell ligands i.e. causes an elution.
    • 本发明涉及一种用于在包含具有内多孔芯和外壳的壳珠的介质上运行离子交换色谱的方法,其中内核具有其电荷随pH变化并且壳被带有带电离子交换的配体 配体,该方法包括以下步骤:a)在第一pH下将样品分子吸附在壳配体上; b)通过添加能够增加其与核配体相同符号/类型的电荷的缓冲物质,在第二pH下引起内核配体的排出,同时使离子从 内部核心配体,从而使离子强度的增加从壳体配体取代样品分子即引起洗脱。
    • 19. 发明申请
    • CHROMATOGRAPHY METHOD AND MEDIA USED THEREFORE
    • 使用的色谱方法和介质
    • US20130115709A1
    • 2013-05-09
    • US13809179
    • 2011-06-28
    • Jan BergstromBo-Lennart Johansson
    • Jan BergstromBo-Lennart Johansson
    • G01N30/02
    • B01D15/361C07K1/18
    • The present invention relates to a method for running ion exchange chromatography on a media comprising shell beads having an inner porous core and an outer shell, wherein the inner core is provided with ligands whose charge changes with pH and the shell is provided with charged ion exchange ligands, the method comprising the following steps: a) adsorbing sample molecules on the shell ligands at a first pH; b) causing a discharge of the inner core ligands at a second pH by addition of a buffer substance that is able to increase its charge having the same sign/type as that of the core ligands, which at the same time causes release of ions from the inner core ligands and thereby an increase in ionic strength that displaces the sample molecules from the shell ligands i.e. causes an elution.
    • 本发明涉及一种用于在包含具有内多孔芯和外壳的壳珠的介质上运行离子交换色谱的方法,其中内核具有其电荷随pH变化并且壳被带有带电离子交换的配体 配体,该方法包括以下步骤:a)在第一pH下将样品分子吸附在壳配体上; b)通过添加能够增加其与核配体相同符号/类型的电荷的缓冲物质,在第二pH下引起内核配体的排出,同时使离子从 内部核心配体,从而使离子强度的增加从壳体配体取代样品分子即引起洗脱。