High Temperature pH Probe Electrode for Sterilization
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High Temperature pH Probe Electrode for Sterilization

Original price was: £525.77.Current price is: £105.15.

SKU: ATO-SIN-PH-5015 Category:

Description

High temperature pH sensor with measuring range 0-14pH work in temperature 0~130°C. Optional insertion depth 120/150/225/325/425mm can be selected.

Specification

Model ATO-SIN-PH-5015
Measuring Range 0~14pH
Temperature Range 0~130°C
Withstand Voltage 0.6MPa
Upper Thread PG13.5
Salt Bridge Porous ceramic core
Insertion Depth 120/150/225/325/425mm
Type Industrial pH meter
Display Method LCD
Probe Type Plug-in
Precision ±0.02PH
Voltage 220V
Applications Pharmaceutical, food and beverage, microbial technology, sugar refining, mining and smelting, pulp, petrochemical, semiconductor electronics industry, etc. (can be customized according to site conditions)

Feature

  1. High temperature pH electrode with precise and stable performance, high resistance 0-130°C to mechanical shocks in sensitive areas.
  2. pH meter electrode’ salt bridge with porous ceramic core to make measurement more stable and longer electrode life.
  3. High temperature pH probeelectrode with stainless steel weld-in sheath can be protection upgrade.

pH Calibration

  1. A pH calibration is the procedure of adjusting the pH meter by measuring solutions of known pH values. The characteristic of a pH electrode will change with time due to electrode coating and aging. And even a pH electrode would be stable over time, pH electrodes cannot be produced with identical characteristics.
  2. In practice the response of a real pH sensor does not exactly follow the Nernst equation. This difference between the theoretical and actual behavior of a pH electrode must be compensated for. A calibration is required to match the pH meter to the current characteristics of the used pH sensor.

Tips: How does the pH electrode work?

  1. A pH electrode is a sensor that measures the concentration of hydrogen ions (H+) in a liquid. A pH electrode consists of glass and a reference electrode. The glass electrode contains ionized glass with high resistivity, which is in contact with the liquid.
  2. The hydrogen ions in the liquid react with the alkaline substance on the glass, creating a potential difference. The reference electrode is relatively unchanged as a reference standard for comparing potentials.
  3. The pH value is calculated by measuring the potential difference between these two electrodes. As the concentration of hydrogen ions in the liquid increases, the potential difference also increases. The pH electrode can be used to measure the pH of water, beverages, food, soil and other samples.

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