Wastewater from electroplating facilities and certain types of chemical plants contains toxic forms of hexavalent chromium such as chromate and dichromate. The hexavalent chromium in this wastewater must be reduced before the water can be discharged. This requires a two-step process: hexavalent chromium (CR6) is reduced to trivalent chromium (CR3); and CR3 is precipitated as chromium hydroxide. As the oxidation reduction potential (ORP) and the speed of the reduction reaction are closely tied to the pH value, ORP and pH analyzers are used to ensure proper control of the reduction process through such means as the injection of reducing agents.
pH and ORP measurements in these reaction tanks are complicated by the presence of chrome and sulfur dioxide, which can poison the sensor reference under certain circumstances. pH and ORP control in these applications may be conducted using alarm relays and a simple on/off control scheme such as available in the FLXA402 Analyzer. Alternatively, the 4-20mA current output can be used directly for proportional control, or sent to a distributed control system as needed. The FLXA202/FLXA402 can measure both ORP and pH. Both 2-wire and 4-wire analyzers are suitable for this measurement system. A gold electrode should be used for ORP measurement of chromium wastewater.
Reducing trivalent chromium process
- Measures pH/ORP of chromate wastewater continuously
- Reduces operating costs
First, hexavalent chromium, either in the form of chromate or dichromate, is reduced to trivalent chromium. Wastewater flows into the first reaction tank, where the pH is measured and sulfuric acid is automatically brought into the process until a pH set point value in the acidic range is achieved. The reaction time is just a few minutes, and a lower pH for an even faster reaction would require considerably more acid. At the same time, the oxidation reduction potential (ORP) of the solution is measured, and sulfur dioxide (SO2), sodium sulfite, or sodium metabisulfite is automatically injected until an ORP value of approximately 280 mV is achieved.
Then in the second tank, the pH is raised to 8.5 by the addition of an alkaline solution such as ammonia or caustic (NaOH), where it is converted to chromium hydroxide. The precipitate, although heavier than the water, does not drop to the bottom due to agitation in the tank. The mixed slurry flows to a settling tank, where the trivalent (Cr3+) chrome settles to the bottom and the clear chromium-free water flows over the tank for further treatment. Chemicals known as coagulants are sometimes added to the second reaction tank to help form larger particles and aid in sludge removal. The reducing agent may be a substance such as ferrous sulfate, sodium metabisulfite, or sulfur dioxide. Chemicals known as coagulants are sometimes added to the second reaction tank to help form larger particles and aid in sludge removal.
2-wire/4-wire pH/ORP measurement system
|KCl refillable ORP sensor:||OR8EFG-AU-☐☐-TT1-☐*A|
|KCl refillable pH sensor:||PH8EFP-☐☐-TN-TT1-N-☐*A|
|Submersion type holder:||PH8HS-PP-☐☐-T-NN-NN*A|
|Terminal box (when needed)|
|WTB10-PH1||(for 2-wire system)|
|WTB10-PH3||(for 4-wire system)|
|2-wire transmitter (pH/ORP):||FLXA202-D-BｰD-☐-P1-NN-A-N-LA-☐-NN|
|4-wire pH/ORP converter:||FLXA402-A-B-□-P1-NN-A2-WR-☐-☐-☐-NN|
- Check solutions for ORP analyzer
Oxidation-reduction potential of check solutions (quinhydrone/iron solutions)
A check solution is used to determine whether the ORP sensor is operating correctly. There are two types of check solutions: quinhydrone and iron.
Quinhydrone solution: approx. 200 to 300 mV
Iron solution: approx. 420 to 520 mV
Unlike a pH standard solution, an ORP check solution does not always indicate a constant reference value. Whether the sensor is operating normally can be determined by seeing whether its readings are within the acceptable range.
Preparation of a check solution (250 mL)
Quinhydrone solution: Dissolve the following reagent in pure water and dilute to 250 mL.
Quinhydrone salts: P/N K9024EC
Ferrous & ferric: dissolve the following reagent in a 2-mol/L sulfuric acid solution and dilute to 250 mL.
Ferrous & ferric salts: P/N K9024ED
- Use of a gold electrode for ORP measurement
For ORP measurement of chromate wastewater, the use of a gold electrode is recommended.
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- FLEXA™ series analyzers FLXA202
- Continuous on-line industrial measurements
- Most flexible two-wire analyzer available
The FLEXA™ series analyzers are used for continuous on-line measurements in industrial installations. With an option for single or dual sensor measurement, they are the most flexible two-wire analyzer available.
The FU20 and FU24, all-in-one pH and ORP, sensors show how Yokogawa applies the motto "Simple is best" to sensor technology.
Reusable SMART adapter, requiring only the analog sensor to be disposed of when it reaches the end of its lifetime. With the SENCOM 4.0 platform, Yokogawa delivers reduced costs and waste while contributing to its long-term business goals of a sustainable future for all.
The FLEXA™ series analyzers are modular-designed analyzers used for continuous online measurements in industrial installations. They offer single or multi-sensor measurement.
pH and ORP meters, analyzers and transmitters are used for continuous process monitoring of pH and ORP to ensure water/product quality, monitor effluent discharge, batch neutralization, pulp stock, scrubbers, cooling towers, chemical, water/wastewater treatment and many other applications.
- pH and ORP sensors
- Proper pH electrode/sensor selection critical for optimal measurement results
- Installation options include retractable, flow thru, immersion, and direct insertion
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