The Experts below are selected from a list of 9 Experts worldwide ranked by ideXlab platform

Xunliang Ding - One of the best experts on this subject based on the ideXlab platform.

  • spatially resolved in situ measurements of the ion distribution near the surface of electrode in a steady state diffusion in an Electrolytic tank with confocal micro x ray fluorescence
    Analytical Chemistry, 2014
    Co-Authors: Song Peng, Zhiguo Liu, Tianxi Sun, Xunliang Ding
    Abstract:

    Confocal micro-X-ray fluorescence (MXRF) technology based on a polycapillary focusing X-ray lens and a polycapillary parallel X-ray lens was used to carry out element-resolved and in situ analysis of ion distribution near the surface of the electrode in a steady-state diffusion in an Electrolytic tank. The standard curve of the Cu Kα fluorescence intensity corresponding to the concentration of CuCl2 was measured to quantitatively determine the ion distribution near the surface of the electrode in a steady-state diffusion. The distribution of the Electrolytic ions around the surface of the electrode in the Electrolytic tank was measured in situ, and the effects of the concentration of the electrolyte and the bath voltage on the shape of the layer with a nonuniform distribution of the Cu2+ ions near the cathode surface in a steady state were analyzed with the confocal MXRF. The confocal MXRF has potential applications in spatially resolved analysis of the liquid mass transfer in Electrolytic Tanks in situ.

Song Peng - One of the best experts on this subject based on the ideXlab platform.

  • spatially resolved in situ measurements of the ion distribution near the surface of electrode in a steady state diffusion in an Electrolytic tank with confocal micro x ray fluorescence
    Analytical Chemistry, 2014
    Co-Authors: Song Peng, Zhiguo Liu, Tianxi Sun, Xunliang Ding
    Abstract:

    Confocal micro-X-ray fluorescence (MXRF) technology based on a polycapillary focusing X-ray lens and a polycapillary parallel X-ray lens was used to carry out element-resolved and in situ analysis of ion distribution near the surface of the electrode in a steady-state diffusion in an Electrolytic tank. The standard curve of the Cu Kα fluorescence intensity corresponding to the concentration of CuCl2 was measured to quantitatively determine the ion distribution near the surface of the electrode in a steady-state diffusion. The distribution of the Electrolytic ions around the surface of the electrode in the Electrolytic tank was measured in situ, and the effects of the concentration of the electrolyte and the bath voltage on the shape of the layer with a nonuniform distribution of the Cu2+ ions near the cathode surface in a steady state were analyzed with the confocal MXRF. The confocal MXRF has potential applications in spatially resolved analysis of the liquid mass transfer in Electrolytic Tanks in situ.

Zhiguo Liu - One of the best experts on this subject based on the ideXlab platform.

  • spatially resolved in situ measurements of the ion distribution near the surface of electrode in a steady state diffusion in an Electrolytic tank with confocal micro x ray fluorescence
    Analytical Chemistry, 2014
    Co-Authors: Song Peng, Zhiguo Liu, Tianxi Sun, Xunliang Ding
    Abstract:

    Confocal micro-X-ray fluorescence (MXRF) technology based on a polycapillary focusing X-ray lens and a polycapillary parallel X-ray lens was used to carry out element-resolved and in situ analysis of ion distribution near the surface of the electrode in a steady-state diffusion in an Electrolytic tank. The standard curve of the Cu Kα fluorescence intensity corresponding to the concentration of CuCl2 was measured to quantitatively determine the ion distribution near the surface of the electrode in a steady-state diffusion. The distribution of the Electrolytic ions around the surface of the electrode in the Electrolytic tank was measured in situ, and the effects of the concentration of the electrolyte and the bath voltage on the shape of the layer with a nonuniform distribution of the Cu2+ ions near the cathode surface in a steady state were analyzed with the confocal MXRF. The confocal MXRF has potential applications in spatially resolved analysis of the liquid mass transfer in Electrolytic Tanks in situ.

Tianxi Sun - One of the best experts on this subject based on the ideXlab platform.

  • spatially resolved in situ measurements of the ion distribution near the surface of electrode in a steady state diffusion in an Electrolytic tank with confocal micro x ray fluorescence
    Analytical Chemistry, 2014
    Co-Authors: Song Peng, Zhiguo Liu, Tianxi Sun, Xunliang Ding
    Abstract:

    Confocal micro-X-ray fluorescence (MXRF) technology based on a polycapillary focusing X-ray lens and a polycapillary parallel X-ray lens was used to carry out element-resolved and in situ analysis of ion distribution near the surface of the electrode in a steady-state diffusion in an Electrolytic tank. The standard curve of the Cu Kα fluorescence intensity corresponding to the concentration of CuCl2 was measured to quantitatively determine the ion distribution near the surface of the electrode in a steady-state diffusion. The distribution of the Electrolytic ions around the surface of the electrode in the Electrolytic tank was measured in situ, and the effects of the concentration of the electrolyte and the bath voltage on the shape of the layer with a nonuniform distribution of the Cu2+ ions near the cathode surface in a steady state were analyzed with the confocal MXRF. The confocal MXRF has potential applications in spatially resolved analysis of the liquid mass transfer in Electrolytic Tanks in situ.

Hao Baoping - One of the best experts on this subject based on the ideXlab platform.

  • convey belt tension apparatus for Electrolytic tank
    2000
    Co-Authors: Wu Genxi, Hao Baoping
    Abstract:

    The utility model relates to a convey belt tension apparatus for an Electrolytic tank. The main structure of the convey belt tension apparatus for an Electrolytic tank is that both sides of the upper part of a tank body are respectively provided with an empty tank, and each empty tank is matched with a slide block. Tension screw rods arranged at the top end of the tank body penetrate into the slide blocks to control the slide blocks to slide up and down relatively to the tank body so as to drive and tension a convey belt. With the advantages of free action up and down, and convenient operation, the utility model can be matched with convey belts of various Electrolytic Tanks.