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    • 2. 发明申请
    • ELECTROLYSIS CELL FOR GAS-EMITTING OR GAS-DISSIPATING ELECTROLYTIC PROCESSES AND PROCESS FOR RUNNING THE ELECTROLYSIS CELL
    • 用于气体发生或气体分解电解工艺的电解槽和运行电解槽的方法
    • WO1992022681A1
    • 1992-12-23
    • PCT/DE1992000499
    • 1992-06-12
    • GALLIEN, Arnold
    • C25B11/02
    • H01M4/8626C25B9/06C25B11/02
    • The invention relates to an electrolysis cell for gas-emitting or gas dissipating electrolytic processes using at least one electrode having a capillary structure in its edge region (51, 52) on the reaction side such that the gas (6) and electrolyte (L) are substantially conveyed there transversely to the electrode and in which three is a capillary slit adjoining this edge region which offers substantially less resistance to the conveyance of the gas and electrolyte along the vertical electrode plane than the edge region. The preferred embodiment of the invention is a plurality of foil-like (44), mutually supported, shaped electrode components. The process of the invention for running the electrolysis cell makes full use of its ejector effet, i.e. it supplies itself with electrolyte when the level of electrolyte in the cell is greatly reduced.
    • 本发明涉及一种用于气体发射或气体消散电解方法的电解槽,该电解方法使用在反应侧的边缘区域(51,52)中具有毛细结构的至少一个电极,使得气体(6)和电解质(L) 基本上被传送到电极横向,其中三个是毗邻该边缘区域的毛细管狭缝,其沿着垂直电极平面比边缘区域提供对输送气体和电解质的抵抗力更小的阻力。 本发明的优选实施例是多个箔状(44)相互支撑的成形电极部件。 用于运行电解池的本发明的方法充分利用其喷射器效果,即当电池中的电解质水平大大降低时,其向电池供应电解质。
    • 7. 发明专利
    • AT143420T
    • 1996-10-15
    • AT92912099
    • 1992-06-12
    • GALLIEN ARNOLD
    • GALLIEN ARNOLD
    • C25B9/17C25B15/08H01M4/86C25B11/02C25B9/00
    • PCT No. PCT/DE92/00499 Sec. 371 Date Feb. 18, 1994 Sec. 102(e) Date Feb. 18, 1994 PCT Filed Jun. 12, 1992 PCT Pub. No. WO92/22681 PCT Pub. Date Dec. 23, 1992.An electrolysis cell for gas-emitting or gas dissipating electrolytic processes using at least one electrode having a capillary structure in its edge region (51, 52) on the reaction side such that the gas (6) and electrolyte (L) are substantially conveyed there transversely to the electrode and in which there is a capillary slit adjoining this edge region which offers substantially less resistance to the conveyance of the gas and electrolyte along the vertical electrode plane than the edge region. The preferred embodiment are a plurality of foil-like (44), mutually supported, shaped electrode components. The process of the invention for running the electrolysis cell makes full use of its ejector effect, i.e. it supplies itself with electrolyte when the level of electrolyte in the cell is greatly reduced.
    • 8. 发明专利
    • DE4119836A1
    • 1992-12-17
    • DE4119836
    • 1991-06-12
    • GALLIEN ARNOLD
    • GALLIEN ARNOLD
    • C25B9/17C25B15/08H01M4/86
    • PCT No. PCT/DE92/00499 Sec. 371 Date Feb. 18, 1994 Sec. 102(e) Date Feb. 18, 1994 PCT Filed Jun. 12, 1992 PCT Pub. No. WO92/22681 PCT Pub. Date Dec. 23, 1992.An electrolysis cell for gas-emitting or gas dissipating electrolytic processes using at least one electrode having a capillary structure in its edge region (51, 52) on the reaction side such that the gas (6) and electrolyte (L) are substantially conveyed there transversely to the electrode and in which there is a capillary slit adjoining this edge region which offers substantially less resistance to the conveyance of the gas and electrolyte along the vertical electrode plane than the edge region. The preferred embodiment are a plurality of foil-like (44), mutually supported, shaped electrode components. The process of the invention for running the electrolysis cell makes full use of its ejector effect, i.e. it supplies itself with electrolyte when the level of electrolyte in the cell is greatly reduced.
    • 10. 发明专利
    • DE59207265D1
    • 1996-10-31
    • DE59207265
    • 1992-06-12
    • GALLIEN ARNOLD
    • GALLIEN ARNOLD
    • C25B9/17C25B15/08H01M4/86C25B11/02C25B9/00
    • PCT No. PCT/DE92/00499 Sec. 371 Date Feb. 18, 1994 Sec. 102(e) Date Feb. 18, 1994 PCT Filed Jun. 12, 1992 PCT Pub. No. WO92/22681 PCT Pub. Date Dec. 23, 1992.An electrolysis cell for gas-emitting or gas dissipating electrolytic processes using at least one electrode having a capillary structure in its edge region (51, 52) on the reaction side such that the gas (6) and electrolyte (L) are substantially conveyed there transversely to the electrode and in which there is a capillary slit adjoining this edge region which offers substantially less resistance to the conveyance of the gas and electrolyte along the vertical electrode plane than the edge region. The preferred embodiment are a plurality of foil-like (44), mutually supported, shaped electrode components. The process of the invention for running the electrolysis cell makes full use of its ejector effect, i.e. it supplies itself with electrolyte when the level of electrolyte in the cell is greatly reduced.