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Harvest Agri Ltd

HORIBA Laqua Twin pH meter (3 point calibration) with Solution and Battery

HORIBA Laqua Twin pH meter (3 point calibration) with Solution and Battery

Regular price £130.00 GBP
Regular price Sale price £130.00 GBP
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Customers based outside of the UK, please contact us directly for assistance: jingle@harvestagri.co.uk or +44 7984 018400

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About this product

Horiba LAQUAtwin pH Tester for Water and Environmental Analysis

The Horiba LAQUAtwin pH Tester pH-22 is compact, robust, and designed for mobile use. With up to three calibration points and a measurement range of 0.00 to 14.00 pH, this device delivers high precision and reliability. Direct measurement with just a single drop of sample provides fast results. Features such as automatic buffer recognition, temperature compensation, and Stabil/Hold functionality make daily operation simple and convenient.

Mobile Precision pH Tester for Reliable On-Site Measurements

The tester combines electrode, display, and sample container in a dust- and waterproof IP67 housing, making it ideal for field and laboratory applications. The digital backlit display shows pH and mV values clearly and accurately.

Automatic shut-off and battery status indicators ensure convenient operation. The package includes calibration buffer solutions (pH 4.01 and 7.00), batteries, a pipette, and a quick-start guide.

Why Accurate pH Measurement is Critical and Why a Handheld Tester is Ideal

pH is a key parameter in water, environmental, and process analysis because it significantly influences chemical reactions, biological processes, and material stability. Even small deviations can substantially impact water quality, product quality, or process safety.

A mobile handheld pH tester allows fast, reliable measurements directly on site. Changes can be detected immediately, and corrective actions implemented without delay. The Horiba LAQUAtwin pH-22 combines this flexibility with high measurement precision, making it ideal for field, laboratory, and routine applications.

More Information

Typical applications for the Horiba LAQUAtwin pH handheld tester

  • Aquaculture and coral monitoring
  • Beer, beverage, and food production
  • Heating systems
  • Laboratories and schools
  • Environmental analysis
  • Water treatment
  • Horticulture

Specifications

Height 3,2 cm

Length 18,5 cm

Width 11 cm

Weight 200 g

Application

Applications:

Aquaculture and Coral, Aquariums, Beer, Beverages, Environmental, Food, Heating, Horticulture, Hydroponics, Laboratory, Pools, Schools, Water Conditioning, Water Treatment, Wine.

What Does The Reading Mean?

Taking a soil pH measurement

  1. Calibrate first — using the supplied pH 4.01 and pH 7.00 buffer solutions. Place a few drops of each buffer directly onto the flat sensor and calibrate the meter regularly with pH 4 and pH 7 calibration solution. The meter has automatic standard recognition, so it identifies which buffer you've applied.
  2. Prepare the soil sample — because the sensor reads a
    liquid/paste film, you need to extract a solution from the soil rather than pressing dry soil directly onto it. The standard approach is a soil:water slurry (commonly 1:1 or 1:2 v/v), mixed, allowed to settle briefly, and then either the supernatant or the moistened paste is applied to the sensor.
  3. Apply the sample — just place a few drops of the sample
    onto the flat sensor; minimum sample volume is 0.1ml (or 0.05ml with sampling sheet B). No beaker or immersion is needed thanks to the flat sensor design.
  4. Read the result — record the reading once a smiley face
    appears on the display, indicating the reading has stabilized.

Does it require distilled water?

Yes — distilled or deionized water is the standard for the extraction step. Soil testing with LAQUAtwin involves extracting a sample solution with distilled water and measuring the pH and conductivity of the extract, with an ideal pH range around 5.4-6.2 in some crop-specific guidance (e.g., coconut coir). Tap water shouldn't be used because its own mineral content and pH can
skew the reading. Consistency in your soil:water ratio and using the same water source each time is what makes readings comparable over seasons.

Actions after obtaining a reading:

  • Compare against crop-specific optimal pH ranges — most fruit crops have fairly narrow target windows (e.g., many tree fruits prefer 6.0-6.8; blueberries and some others want much more acidic soil, 4.5-5.5).
  • Decide on amendment direction: if too acidic, lime application; if too alkaline, sulfur or acidifying amendments.
  • Cross-check with a lab test periodically — the LAQUAtwin is excellent for rapid field screening and trend-spotting, but a full lab soil test (with buffer pH, CEC, nutrient panel) is worth running periodically to calibrate your field readings and catch anything the quick method might miss.
  • Log readings spatially — since pH can vary meaningfully across a field or orchard block, tagging readings to GPS points lets you build a pH map rather than relying on a single average, so lime/sulfur can be applied variably where it's actually needed.  We recommend the geodatatrack program.
  • Re-test after amendment — pH corrections take time to work through the soil profile (lime especially can take months), so re-test at a sensible interval rather than expecting an immediate shift.

Sensor storage — does it need to be kept damp?

No — this is actually the opposite of what many assume. The pH sensor should be stored in dry condition; distilled or deionized water should never be left on the pH sensor for a long period, as salts may leach out and reduce sensor life.
Before your next use, the sensor should be conditioned again prior to use (typically a brief soak or conditioning solution step per the manual) rather than kept permanently wet in storage. Rinse the sensor with water after each use, dry it, and store it dry — then recondition before the next measurement
session.

Manuals/Brochures

Application Notes (PDF Brochures):

Apples

Pears

Stone Fruits