The lead ion selective electrode integrates an epoxy resin housing with a specialized salt membrane, designed for stable operation from 0–80°C and a pH range of 4–7, and equipped with a standard BNC (Q9) connector for plug-and-play compatibility, providing accurate measurements for water analysis.
Specification
| Model |
CCHN-972106 |
| Type |
Lead Ion Composite Electrode |
| Ion |
Lead Ion (Pb2+) |
| Standard Solution |
Pb(NO3)2 Solution |
| Measurement Range |
1.0 × 10-6 – 1.0 × 10-1 mol/L |
| Repeatability |
±2% |
| Mass Concentration |
0.2–20700ppm |
| pH Range |
4–7 |
| Liquid Junction |
Separable Ring Ground Joint |
| Reference Structure |
Built-in Reference System |
| Reference Solution |
ISE Reference Filling Solution Type B |
| High-end Ionic Strength Regulator |
Ionic Strength Regulator Type VI |
| Sensitive Membrane |
Salt Membrane |
| Shell Material |
Epoxy Resin |
| Operating Temperature |
0℃–80℃ |
| Connector |
BNC (Q9) |
| Dimension |
φ12*120mm |
Feature

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Epoxy Resin Housing&Salt Membrane: The lead ion selective electrode combines a robust epoxy resin housing with a highly selective salt membrane. This design ensures resistance to corrosive chemicals and delivers stable, precise lead ion measurements over extended use.
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Separable Ring Ground Joint: The detachable ring ground joint provides stable potential, reduces the risk of blockage, and enables easy cleaning for consistent performance in complex samples.
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BNC (Q9) Connector: The Lead ISE uses a BNC (Q9) connector for easy, secure connection and consistent, accurate lead ion readings.
Detail

Application

Tips: How to store and maintain lead ion selective electrode?
Store the lead ISE upright in a proper storage solution or clean distilled water when not in use to keep the membrane hydrated. Always rinse with distilled water after each measurement to remove residues and prevent contamination. Avoid letting the membrane dry out, and check it regularly for signs of wear. Replace the membrane if response slows, readings drift, or the electrode shows instability.