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all-tetrafluoro H-type exchangeable membrane photoelectrochemical cell
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  • Model:C027-2
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Introduction

The electrolytic cell is upgraded on the basis of C13378FD

The electrolytic cell realizes atmosphere protection by adding valves and aeration devices.

The valve connected to the aeration device is the direction of air intake

The electrolytic cell is an absolutely sealed system and can be evacuated through a valve (less than -0.5Mpa).

The electrolytic cell can be slightly pressurized.

For safety reasons, the pressure should not be greater than 0.5MPa.

The working electrode, auxiliary electrode and reference electrode of electrolytic cell must be customized to make it compatible with this electrolytic cell.

The electrode part of electrolytic cell realizes internal insertion and extraction of electrode through the earphone jack on the cover, so that the electrode system is absolutely sealed.

The cell body material of electrolytic cell is PTFE

The electrolytic cell is often used in the three-electrode system.

The volume of the electrolytic cell ranges from 30ml to 500ml, and can also be customized according to requirements. Please note that the minimum volume is 30ml

The electrolytic cell is an absolutely sealed electrolytic cell system.

The cathode chamber (working electrode) and anode chamber (comparative electrode) are separated by an ionic membrane (user-supplied). The two chambers are sealed with nails to facilitate the replacement of the diaphragm and reference electrode. It is in the same room as the working electrode to effectively reduce the R drop.

The sealing part of cell body adopts an external screw port design, and the inner core part adopts 360 degree rotating polytetrafluoroethylene, so that the electrode accurately corresponds to the light window and is sealed by tightening the outer cover.

The electrolytic cell is equipped with an aeration device that can be ventilated under the liquid surface, and different shapes of aeration devices are selected for the atmosphere according to different experiments. For example, straight type aeration for carbon reduction and L type aeration for nitrogen reduction.

The electrolytic cell can add a sampling port on the cell body, in which case additional costs are required.

The quartz plate of the electrolytic cell can be quickly disassembled and replaced, and the ion membrane can be quickly replaced


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