Wednesday, November 17, 2021

PH Electrode Probe BNC Connector for Aquarium PH Controller Meter Sensor ph Tester Probe

Analyzers>>>Tools

Brand Name Aideepen

Origin CN(Origin)

With Backlight Or Not no

Model Number PH Electrode Probe

Display Type ANALOG

PH range 0-14 PH

Temperature range 0-60 Celsius

Terminal Blocks BNC plug

PH Electrode Probe BNC Connector for Aquarium PH Controller Meter Sensor ph Tester Probe

PH Electrode Probe BNC Connector for Aquarium PH Controller Meter Sensor ph Tester Probe

PH Electrode Probe BNC Connector for Aquarium PH Controller Meter Sensor ph Tester Probe

PH Electrode Probe BNC Connector for Aquarium PH Controller Meter Sensor ph Tester Probe

PH Electrode Probe BNC Connector for Aquarium PH Controller Meter Sensor ph Tester Probe

PH Electrode Probe BNC Connector for Aquarium PH Controller Meter Sensor ph Tester Probe

Color

PH Electrode Probe BNC Connector for Aquarium PH Controller Meter Sensor ph Tester Probe Blue

PH Electrode Probe BNC Connector for Aquarium PH Controller Meter Sensor ph Tester Probe Black

PH Electrode Probe BNC Connector for Aquarium PH Controller Meter Sensor ph Tester Probe

 

Description:

  The PH electrode has a single cylinder that allows direct connection to the input terminal of a PH meter, controller, or any PH device which has a BNC input terminal. The PH electrode probe is accurate and reliable that can gives almost instantaneous readings.     PH range: 0-14 PH Temperature range: 0-60° Zero-point: 7 ± 0.5PH Alkali Error: 0.2PH Theoretical Percentage Slope: ≧98.5% Internal Resistance: ≦250MΩ Response Time: ≦1min Operating Temperature: 0-60° Terminal Blocks: BNC plug BNC Connector suitable for most PH meter and controller. Suitable for wide range of application: Aquariums, Hydroponics, Laboratory etc.     Package Included:   1 x BNC Electrode Probe Connector Hydroponic for PH Aquarium Controller Meter Sensor     First, preparation before use 1. Gently remove the protective bottle from the top of the electrode and store it for use. 2. Clean the white deposited salt on the outside of the electrode with deionized water. 3. In order to maintain an appropriate penetration rate, the liquid level in the tube must not exceed the end of the spiral glass tube, and at least 1 inch (2.5 cm) above the sample liquid level, and the electrode bulb end should be completely placed in the measured liquid when in use. Let the bulb come into full contact with the liquid to be tested to make it produce an ion reaction effect. 4. Gently shake the electrode (just like shaking the thermometer) to remove air bubbles in the electrode. 5. Immerse the electrode in the pH electrode storage solution for 1 hour. If there is no electrode storage solution, add 1gKCl to 200mL pH7 buffer as a temporary electrode storage solution. When the electrode is not in use, it can be configured with a long-term storage solution to activate and protect the bulb end. The preparation method can add 10mL3.3kcl solution to 200mLpH4 buffer solution. [3.3KCL is saturated potassium chloride, the configuration method weighs 23 grams of potassium chloride and 100ml of deionized water] Appropriate amount of preservative     Second, the precautions when using the electrode 1. Use fresh buffer 2. Open the electrode protective sleeve 3. Measure the gap and rinse the electrode with deionized water 4. Stir the buffer and sample: a) Always stir at the same rate; b) Stir first, then measure 5. When preparing the pH electrode, rinse the electrode with distilled water before and after the measurement. Use a linen-free cloth to absorb excess water from the electrode tip to avoid rubbing the electrode bulb, otherwise static electricity will be generated and interfere with the accurate measurement of pH. 6. Make sure that the buffer temperature is the same as the sample temperature. If the sample temperature is different, use a temperature compensation probe for temperature compensation. 7. Regularly check the electrode slope with the two-point calibration method. When the electrode reading drifts or the slope is lower than 92%, please refer to electrode cleaning to clean the electrode.   Third, maintenance of the electrode 1. Electrode cleaning Universal cleaning solution-Immerse the electrode in 0.1M HCl or 0.1M HNO3 solution for 15 minutes, then immerse the electrode in the electrode storage solution for 30 minutes. 2. Liquid junction blockage (salt precipitation) Causes: hard water, mud, organic dirt, planktonic microorganisms, moss, etc. Attached to the seepage sand core around the bulb and PTFE, the external reference electrode cannot work normally. Solution: Immerse the electrode (60°C) in hot water for 15-20 minutes; soak the electrode in a hot saturated KCl (60°C) solution for 20-30 minutes and cool to room temperature; soak the electrode in a pH 4 buffer solution for 20 to 30 minutes 30 minutes. Check for excessive crystals. If so, rinse the crystals repeatedly with deionized water to check whether the flow rate is normal If not, soak the electrode (60°C) for 15-20 minutes in hot water; soak the electrode in a hot saturated KCl (60°C) solution for 20-30 minutes and cool to room temperature; soak the electrode in pH 4 buffer 30 minutes. Immerse the electrode tip in concentrated HCl for 5-10 minutes, rinse the electrode, and check whether the electrolyte flow rate is normal. If the liquid junction is still blocked, pull the liquid junction (do not touch the glass bulb) 4. Precipitation of inorganic substances on the pH sensitive membrane Cause: Measurement of inorganic samples Solution: clean with EDTA, ammonia or acid 5. Dehydration of pH sensitive membrane Causes: Improper storage, long-term use, high temperature operation or strong alkaline solution, resulting in slow and unstable response Solution: Activate the electrode Immerse the electrode in 0.1 M HCl for 1 minute, rinse with tap water for 30 seconds, soak the electrode in 0.1 M KOH for 1 minute, rinse with tap water for 30 seconds, calibrate the test electrode with buffer, if it still does not work, repeat the above steps, up to 3 times  6. The PH electrode is used for a long time, and the necessary cleaning and maintenance of the electrode are not used correctly in the tested environment, which results in unstable electrode data and other factors. Solution: After the electrode is used for 2-3 months, perform a bulb cleaning on the electrode and an inspection on the liquid contact part. Solution: Take the electrode out of the use environment to see if there is dirt on the surface of the bulb. If there is, you can wipe it with ethanol cotton lightly, and then clean it with deionized water. [Note that the bulb is fragile, you should pay attention to the process of wiping]. Then check the liquid contact part to see if there are contaminants attached to the surface. If there is, you can use deionization to rinse. You can also shake the electrode back and forth in the measuring cup. If the water quality is not clean, change the water until the dirt disappears. . Then wash the electrode and place it in the activation solution for 8 hours, then measure it in the standard solution to restore it to the measurement state.     PH Electrode Probe BNC Connector for Aquarium PH Controller Meter Sensor ph Tester Probe   PH Electrode Probe BNC Connector for Aquarium PH Controller Meter Sensor ph Tester Probe PH Electrode Probe BNC Connector for Aquarium PH Controller Meter Sensor ph Tester Probe PH Electrode Probe BNC Connector for Aquarium PH Controller Meter Sensor ph Tester ProbePH Electrode Probe BNC Connector for Aquarium PH Controller Meter Sensor ph Tester Probe PH Electrode Probe BNC Connector for Aquarium PH Controller Meter Sensor ph Tester Probe PH Electrode Probe BNC Connector for Aquarium PH Controller Meter Sensor ph Tester Probe PH Electrode Probe BNC Connector for Aquarium PH Controller Meter Sensor ph Tester Probe    

 

 

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