Gas reservoir for O2/H2

LD 6674045
Gas reservoir for O2/H2
  8  Gas reservoir for O2/H2

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Description

Reservoir for hydrogen and oxygen produced via electrolysis in reversible PEM fuel cells (667 4044). Gases are collected in graduated cylinders to examine the stoichiometry of the electrolysis. Gases can directly be transmitted to another reversible PEM fuel cell to produce electrical energy. Allows experimentation without any splashing of water. Part of the fuel cell workstation (667 4048) and the advanced science kit - set EN 2 (588 837S).

Technical data

  • Dimensions: 90 mm x 70 mm diameter
  • Weight: 0.2 kg
  • Hose connection: 0.2 mm internal diameter

Scope of delivery

1 Graduated gas reservoir for O2/H2
1 Beaker for the gas reservoir

Related Documents

PDF (students' version) PDF (students' version) CS4.3.2.1 Examining an electrolysis unit
PDF (students' version) PDF (students' version) CS4.3.2.2 Faraday's 1st law of electrolysis
PDF (students' version) PDF (students' version) CS4.3.2.3 Faraday's 2nd law of electrolysis
PDF (students' version) PDF (students' version) CS4.3.2.4 Determining an electrolysis unit's Faraday efficiency
PDF (students' version) PDF (students' version) CS4.3.3.1 Using a fuel cell
PDF (students' version) PDF (students' version) CS4.3.3.2 Examining a fuel cell
PDF (students' version) PDF (students' version) CS4.3.3.3 Hydrogen consumption of a fuel cell
PDF (students' version) PDF (students' version) CS4.3.3.4 Recording a fuel cell's characteristic curves
PDF (students' version) PDF (students' version) CS4.3.3.5 Determining a fuel cell's efficiencies
PDF (students' version) PDF (students' version) CS4.3.3.6 Series and parallel connections of two fuel cells
PDF (students' version) PDF (students' version) CS4.3.4.1 Combination of solar module, electrolysis unit and fuel cell
PDF (students' version) PDF (students' version) CS4.3.4.2 Total efficiency of a system with electrolysis unit and fuel cell
PDF (teacher's version) PDF (teacher's version) CS4.3.2.1 Examining an electrolysis unit
PDF (teacher's version) PDF (teacher's version) CS4.3.2.2 Faraday's 1st law of electrolysis
PDF (teacher's version) PDF (teacher's version) CS4.3.2.3 Faraday's 2nd law of electrolysis
PDF (teacher's version) PDF (teacher's version) CS4.3.2.4 Determining an electrolysis unit's Faraday efficiency
PDF (teacher's version) PDF (teacher's version) CS4.3.3.1 Using a fuel cell
PDF (teacher's version) PDF (teacher's version) CS4.3.3.2 Examining a fuel cell
PDF (teacher's version) PDF (teacher's version) CS4.3.3.3 Hydrogen consumption of a fuel cell
PDF (teacher's version) PDF (teacher's version) CS4.3.3.4 Recording a fuel cell's characteristic curves
PDF (teacher's version) PDF (teacher's version) CS4.3.3.5 Determining a fuel cell's efficiencies
PDF (teacher's version) PDF (teacher's version) CS4.3.3.6 Series and parallel connections of two fuel cells
PDF (teacher's version) PDF (teacher's version) CS4.3.4.1 Combination of solar module, electrolysis unit and fuel cell
PDF (teacher's version) PDF (teacher's version) CS4.3.4.2 Total efficiency of a system with electrolysis unit and fuel cell
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