Electrode - Reference

Electrode - Reference

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Electrochemical measurements, including those taken using pH probes, Oxidation/Reduction Potential (ORP) probes, Ion Selective Electrodes (ISEs), and Electrolytic Conductance (EC) probes, primarily rely on potentiometry. In potentiometric measurements, the probe detects a potential in millivolts (mV), which can be directly reported as the measurement result (as with ORP), or used to calculate the final result through a calibration process (as with pH and ISE).

The mV reading in electrochemical measurements can be affected by several factors, with the reference system being particularly important. To address any variations in mV measurements due to differences in reference systems, the potential is often reported with respect to the Standard Hydrogen Electrode (SHE), which is the standard against which all other reference systems are compared. Even if all other variables are constant and two probes are reading identically to theoretical, an identical sample would give different mV readings on different probes with different reference systems. If the potential vs. SHE for two probes with different reference systems is known, the mV results can be compared on the same relative scale. Additionally, if the potential vs. SHE is known for a probe and the mV reading on a standard with SHE is also known, the probe's reading on that same standard can be easily calculated.

Lithiumacetate fill solution (LiAC), 100mL

QS930X

Lithiumchloride fill solution (LiCl), 100mL

QS931X

Sodiumnitrate fill solution (NaNO3), 100mL

QS932X

Ammoniumsulphate fill solution ((NH4)2SO4), 100mL

QS933X

Ammoniumchloride fill solution (NH4Cl), 100mL

QS935X

Potassiumnitrate fill solution (KNO3), 150mL

QS936X

Potassiumchloride 3 M (KCl), 500mL

QS937X

Potassiumchloride 4 M (KCl), 500mL

QS937X-4
QS938X

4M KCl/AgCl, fill Solution, 150mL

QS938X

4 M Potassiumchloride (KCl), Gellified, 150mL

QS939X
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