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FP-30MK2 (C) formaldehyde detector (FP-30-C upgraded version)
The FP-30MK2 (C) formaldehyde detector produced by RIKEN Corporation in Japan is an upgraded version of the FP-30-C formaldehyde analyzer, which can d
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Product Introduction

Produced by RIKEN Corporation in JapanFP-30MK2 (C) professional formaldehyde detectorIt is an upgraded version of FP-30-C formaldehyde analyzer, which can directly measure the concentration of formaldehyde in the air.The principle of instrument detection is the photoelectric photometric method using test strips,Fully comply with national standardsRequirements (GB/T 18204.2-2014 "Methods for hygiene inspection in public places》).FP-30MK2 (C) formaldehyde detectorCompact and portable, large screen display, easy operation, simple calibration, professional grade, high precision.FP-30MK2 (C) formaldehyde detectorEquipped with finished reagents, simplyInstalling testing pills can easily complete the testing.It can be widely used for on-site detection of formaldehyde in indoor, public places, living places, and factory mine rooms.

Instrument characteristics

• Use test paper photoelectric photometry to detect formaldehyde concentration in the air

Can store 99 detection records (automatically stored after detection)

• Fault alarm self diagnosis: low battery voltage, poor sensor, poor pump contact, machine system error, abnormal temperature

• Automatic memory data logger, clock function

Detection Principle

FP-30MK2 (C) typeFormaldehyde detectorThe detection principle is based on the photoelectric photometry method, which fully complies with the newly issued national regulationsGB/T18204 "Methods for hygiene testing in public places" requirements. detectionTest paper photoelectric photometry methodWhen gas is blown onto the detection TAB, the paper immersed in the coloring agent combined with the TAB will undergo a chemical reaction and change color. For example, after formaldehyde is attached to paper, the reagents contained in the paper will react with formaldehyde to form compounds, and the color will change from white to yellow. The degree of color change can reflect the amount of reflected light received. The rate of change in the intensity of reflected light can be used as a gas concentration response. By setting the detection line in advance, the concentration of the gas can be determined by the response value of the gas being detected.

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