Model: HNAG900
Sampling Method: Pumping Suction
Detection Principle: Electrochemistry
Gas: Chlorine Dioxide/CLO2
Range: 0-10ppm;0-1ppm.
Resolution: 0.01PPM.
Accuracy: ≤±2% F.S.
Model: HNAG900
Sampling Method: Pumping Suction
Detection Principle: Electrochemistry
Gas: Chlorine Dioxide/CLO2
Range: 0-10ppm;0-1ppm.
Resolution: 0.01PPM.
Accuracy: ≤±2% F.S.
✔️It adopts a 32-bit microprocessor and is equipped with high-speed and high-precision processing circuits to achieve rapid and accurate measurement
✔️Reserve a USB interface externally. Use a USB cable to communicate with a computer to achieve data export and deletion
✔️It can be paired with up to 6 types of sensors, providing more flexible detection
✔️It comes with built-in buttons, allowing for easy parameter viewing, setting and other operations
✔️By modifying the coefficients, switching between different units can be achieved, such as ppm and mg/m ³
✔️The storage interval for historical data can be freely set
✔️It has the function of switching between Chinese and English for display
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Gas Detection Q&A - For Your Safety Environments
Q1. What is phosgene
A1:Phosgene (chemical formula COCl2) is a highly toxic, colorless gas with a strong, irritating odor.
Q2. Where is phosgene produced
A2:
COCl2 (phosgene) is a highly toxic gas that is not typically "produced" in the natural environment. It is mainly found in industrial manufacturing, laboratories, or specific chemical reactions.
• Chemical production: Phosgene is an important industrial chemical used primarily to produce polyurethanes (e.g., foam, coatings), pesticides (e.g., carbamates), and pharmaceuticals (e.g., sulfa drugs). In chemical plants, if equipment is not properly sealed or if leaks occur, phosgene can escape.
• Laboratory synthesis: In chemical laboratories, phosgene is often produced when chloroform (CHCl3) decomposes upon contact with air or under light exposure. Therefore, improper storage of chlorinated organic solvents (e.g., chloroform, dichloromethane), such as leaving containers open or exposed to sunlight, is a common cause of phosgene poisoning in laboratories.
In water treatment, food & beverage processing, and industrial disinfection, precise control of Chlorine Dioxide (ClO2) is non-negotiable. Too little, and you risk microbial contamination; too much, and you face costly chemical waste and potential regulatory violations.
Our state-of-the-art Chlorine Dioxide Analyzer is engineered for reliability and accuracy. It provides continuous, real-time monitoring of ClO2 levels, giving you the data you need to optimize chemical dosing, reduce operational costs, and guarantee effluent quality.
✔️It adopts a 32-bit microprocessor and is equipped with high-speed and high-precision processing circuits to achieve rapid and accurate measurement
✔️Reserve a USB interface externally. Use a USB cable to communicate with a computer to achieve data export and deletion
✔️It can be paired with up to 6 types of sensors, providing more flexible detection
✔️It comes with built-in buttons, allowing for easy parameter viewing, setting and other operations
✔️By modifying the coefficients, switching between different units can be achieved, such as ppm and mg/m ³
✔️The storage interval for historical data can be freely set
✔️It has the function of switching between Chinese and English for display






Gas Detection Q&A - For Your Safety Environments
Q1. What is phosgene
A1:Phosgene (chemical formula COCl2) is a highly toxic, colorless gas with a strong, irritating odor.
Q2. Where is phosgene produced
A2:COCl2 (phosgene) is a highly toxic gas that is not typically "produced" in the natural environment. It is mainly found in industrial manufacturing, laboratories, or specific chemical reactions.
• Chemical production: Phosgene is an important industrial chemical used primarily to produce polyurethanes (e.g., foam, coatings), pesticides (e.g., carbamates), and pharmaceuticals (e.g., sulfa drugs). In chemical plants, if equipment is not properly sealed or if leaks occur, phosgene can escape.
• Laboratory synthesis: In chemical laboratories, phosgene is often produced when chloroform (CHCl3) decomposes upon contact with air or under light exposure. Therefore, improper storage of chlorinated organic solvents (e.g., chloroform, dichloromethane), such as leaving containers open or exposed to sunlight, is a common cause of phosgene poisoning in laboratories.
In water treatment, food & beverage processing, and industrial disinfection, precise control of Chlorine Dioxide (ClO2) is non-negotiable. Too little, and you risk microbial contamination; too much, and you face costly chemical waste and potential regulatory violations.
Our state-of-the-art Chlorine Dioxide Analyzer is engineered for reliability and accuracy. It provides continuous, real-time monitoring of ClO2 levels, giving you the data you need to optimize chemical dosing, reduce operational costs, and guarantee effluent quality.

Model: HNAG920 Sampling Method: Pumping Suction and Diffusion Detection Principle: Infrared NDIR Gas: Sulfur hexafluoride (SF6). Range: 0-1000ppm,0-3000PPM,0-5000PPM. Resolution: 1PPM. Accuracy: ≤±2% F.S.

Model: HNAG920 Sampling Method: Pumping Suction and Diffusion Detection Principle: Infrared NDIR Gas: Acetylene (C2H2). Range: 0-100%LEL Resolution: 0.1LEL. Accuracy: ≤±2% F.S.

Model: HNAG920 Sampling Method: Pumping Suction and Diffusion Detection Principle: PID Gas: Methyl Bromide (CH3Br). Range: 0 to 50/100/200/500/1000/2000/3000ppm Resolution: 0.01ppm;0.1ppm;1ppm. Accuracy: ≤±2% F.S.

Model: HNAG920 Sampling Method: Pumping Suction and Diffusion Detection Principle:Electrochemistry Gas: ozone (O3) Range: 0-50PPM,0-100PPM. Resolution: 0.01PPM,0.1PPM. Accuracy: ≤±2% F.S.

Model: HNAG900 Sampling Method: Pumping Suction and Diffusion Detection Principle: Infrared NDIR Gas: Sulfur hexafluoride (SF6). Range: 0-1000ppm,0-3000PPM,0-5000PPM. Resolution: 1PPM. Accuracy: ≤±2% F.S.

Model: HNAG900 Sampling Method: Pumping Suction Detection Principle: Electrochemistry Gas: Chlorine Dioxide/CLO2 Range: 0-10ppm;0-1ppm. Resolution: 0.01PPM. Accuracy: ≤±2% F.S.

Model: HNAG900 Sampling Method: Pumping Suction Detection Principle:Electrochemistry Gas: Formaldehyde (CH2O) Range: 0-50PPM,0-100PPM. Resolution: 0.01PPM,0.1PPM. Accuracy: ≤±2% F.S.

Model: HNAG920 Sampling Method: Pumping Suction Detection Principle: Electrochemistry Gas: N2 Range: 0-100%vol Resolution: 1%vol. Accuracy: ≤±2% F.S.

Category: Products Portable gas detector Portable gas detector Key words: Products Model: HNAG920 Measurement object: CO2/Ex/CH4/CO/H2S/O2/N2/NH3/CL2/H2/He/Ar/CH2O/O3/NO/NO2/SO2/C2H4O/PH3/COCL2/HBR/HCL/HCN/CLO2/SIH4/CH3BR/SO2F2/F2/HF/C2H2/CS2/SF6/C2H...

Detection gas:EX_Flammable-CH4 Range:0-100%LEL (3-100%LEL) / 0-5%VOL Detection Principle:Infrared Resolution:0.1%LEL_0.001%VOL Detection Accuracy:±2%F.S Model:SK/MIC-600

Detection gas:CO,Carbon monoxide Range:0-1000ppm/0-5000ppm/custom Detection Principle:Electrochemistry Resolution:1ppm Detection Accuracy:±2%F.S Model:HNAG1000

Detection gas:CO,Carbon monoxide Range:0-1000ppm/0-5000ppm/custom Detection Principle:Electrochemistry Resolution:1ppm Detection Accuracy:±2%F.S Model:HNAG1000

Detection gas:O2/Oxygen Range:0-30%VOL (0-25%VOL) / 0-100%VOL Detection Principle:Electrochemistry Resolution:0.1%VOL/0.01%VOL Detection Accuracy:±2%F.S Model:HNAG920

Detection gas:O2/Oxygen Range:0-30%VOL (0-25%VOL) / 0-100%VOL Detection Principle:Electrochemistry Resolution:0.1%VOL/0.01%VOL Detection Accuracy:±2%F.S Model:HNAG920

Category: Products Flue gas pretreatment system Simple Pretreatment Online Monitoring System Key words: Products Model: SK/MIC-7500 Measurement object: CO2/Ex/CH4/CO/H2S/O2/N2/NH3/CL2/H2/He/Ar/CH2O/O3/NO/NO2/SO2/C2H4O/PH3/COCL2/HBR/HCL/HCN/CLO2/SIH4/...

Model: HNAG900 Sampling Method: Pumping Suction Detection Principle: Thermal conductivity Gas: helium (He) Range: 0-100%vol Resolution: 1%vol. Accuracy: ≤±2% F.S.

Model: HNAG900 Sampling Method: Pumping Suction Detection Principle:Electrochemistry Gas: ozone (O3) Range: 0-50PPM,0-100PPM. Resolution: 0.01PPM,0.1PPM. Accuracy: ≤±2% F.S.

Model: HNAG920 Sampling Method: Pumping Suction Detection Principle: Electrochemistry Gas: Hydrogen Fluoride (HF) Range: 0-10ppm,0-50ppm,0-100ppm Resolution: 0.01ppm,0.1ppm. Accuracy: ≤±2% F.S.

Model: HNAG920 Sampling Method: Pumping Suction and Diffusion Detection Principle: Electrochemistry Gas: Ethanol(C2H6O) Range: 0-10ppm,0-50ppm,0-100ppm,Custom Resolution: 0.01ppm,0.1ppm,1ppm. Accuracy: ≤±2% F.S.

Model: HNAG920 Sampling Method: Pumping Suction and Diffusion Detection Principle: Electrochemistry Gas: Ethylene (C2H4) Range: 0-10ppm,0-50ppm,0-100ppm,0-200ppm. Resolution: 0.01ppm,0.1ppm. Accuracy: ≤±2% F.S.

Model: HNAG920 Sampling Method: Pumping Suction and Diffusion Detection Principle: Infrared NDIR Gas: Sulfur hexafluoride (SF6). Range: 0-1000ppm,0-3000PPM,0-5000PPM. Resolution: 1PPM. Accuracy: ≤±2% F.S.

Model: HNAG920 Sampling Method: Pumping Suction and Diffusion Detection Principle: Infrared NDIR Gas: Acetylene (C2H2). Range: 0-100%LEL Resolution: 0.1LEL. Accuracy: ≤±2% F.S.

Model: HNAG920 Sampling Method: Pumping Suction and Diffusion Detection Principle: PID Gas: Methyl Bromide (CH3Br). Range: 0 to 50/100/200/500/1000/2000/3000ppm Resolution: 0.01ppm;0.1ppm;1ppm. Accuracy: ≤±2% F.S.

Model: HNAG920 Sampling Method: Pumping Suction and Diffusion Detection Principle:Electrochemistry Gas: ozone (O3) Range: 0-50PPM,0-100PPM. Resolution: 0.01PPM,0.1PPM. Accuracy: ≤±2% F.S.

Model: HNAG900 Sampling Method: Pumping Suction and Diffusion Detection Principle: Infrared NDIR Gas: Sulfur hexafluoride (SF6). Range: 0-1000ppm,0-3000PPM,0-5000PPM. Resolution: 1PPM. Accuracy: ≤±2% F.S.

Model: HNAG900 Sampling Method: Pumping Suction Detection Principle: Electrochemistry Gas: Chlorine Dioxide/CLO2 Range: 0-10ppm;0-1ppm. Resolution: 0.01PPM. Accuracy: ≤±2% F.S.

Model: HNAG900 Sampling Method: Pumping Suction Detection Principle:Electrochemistry Gas: Formaldehyde (CH2O) Range: 0-50PPM,0-100PPM. Resolution: 0.01PPM,0.1PPM. Accuracy: ≤±2% F.S.

Model: HNAG920 Sampling Method: Pumping Suction Detection Principle: Electrochemistry Gas: N2 Range: 0-100%vol Resolution: 1%vol. Accuracy: ≤±2% F.S.

Category: Products Portable gas detector Portable gas detector Key words: Products Model: HNAG920 Measurement object: CO2/Ex/CH4/CO/H2S/O2/N2/NH3/CL2/H2/He/Ar/CH2O/O3/NO/NO2/SO2/C2H4O/PH3/COCL2/HBR/HCL/HCN/CLO2/SIH4/CH3BR/SO2F2/F2/HF/C2H2/CS2/SF6/C2H...

Detection gas:EX_Flammable-CH4 Range:0-100%LEL (3-100%LEL) / 0-5%VOL Detection Principle:Infrared Resolution:0.1%LEL_0.001%VOL Detection Accuracy:±2%F.S Model:SK/MIC-600

Detection gas:CO,Carbon monoxide Range:0-1000ppm/0-5000ppm/custom Detection Principle:Electrochemistry Resolution:1ppm Detection Accuracy:±2%F.S Model:HNAG1000

Detection gas:CO,Carbon monoxide Range:0-1000ppm/0-5000ppm/custom Detection Principle:Electrochemistry Resolution:1ppm Detection Accuracy:±2%F.S Model:HNAG1000

Detection gas:O2/Oxygen Range:0-30%VOL (0-25%VOL) / 0-100%VOL Detection Principle:Electrochemistry Resolution:0.1%VOL/0.01%VOL Detection Accuracy:±2%F.S Model:HNAG920

Detection gas:O2/Oxygen Range:0-30%VOL (0-25%VOL) / 0-100%VOL Detection Principle:Electrochemistry Resolution:0.1%VOL/0.01%VOL Detection Accuracy:±2%F.S Model:HNAG920