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7H2S-50 Electrochemical Hydrogen Sulfide Gas sensor For Environmental Monitoring

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7H2S-50 Electrochemical Hydrogen Sulfide Gas sensor For Environmental Monitoring

7H2S-50 Electrochemical Hydrogen Sulfide Gas sensor For Environmental Monitoring
7H2S-50 Electrochemical Hydrogen Sulfide Gas sensor For Environmental Monitoring 7H2S-50 Electrochemical Hydrogen Sulfide Gas sensor For Environmental Monitoring

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Détails sur le produit:
Lieu d'origine: CN
Numéro de modèle: 7H2S-50
Conditions de paiement et expédition:
Quantité de commande min: 1 pièce
Prix: Négociable
Détails d'emballage: Emballage standard
Délai de livraison: 5-8 jours ouvrables
Conditions de paiement: L/C, D/A, D/P, T/T, Western Union, MoneyGram
Capacité d'approvisionnement: 5000 pièces

7H2S-50 Electrochemical Hydrogen Sulfide Gas sensor For Environmental Monitoring

description de
Gaz de détection: Sulfure d'hydrogène (H2S) Plage de mesures: Pour les véhicules à moteur à commande autonome, la valeur maximale de l'indicateur de freinage doit
la sensibilité: 1.0 ± 0,2 μA/ppm (à 20°C) Temps de réponse: ≤ 30 s (T90, temps pour atteindre 90% de la réponse finale
Le signal est nul.: < ± 0,4 μA (à 20℃) Résolution: 0,1 pages par minute
Mettre en évidence:

hydrogen sulfide gas sensor

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electrochemical gas sensor for environmental monitoring

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7H2S-50 H2S sensor

 

                            7H2S-50 Electrochemical Hydrogen Sulfide Gas sensor For Environmental Monitoring

 

Industrial Safety Monitoring:

  • Petrochemical Industry: In oil refineries and gas processing plants, hydrogen sulfide is a common by - product during the refining of crude oil and natural gas. The 7H2S - 50 sensor can be installed in various parts of the production facilities, such as distillation towers, storage tanks, and pipeline connections. It continuously monitors the H₂S concentration to ensure the safety of workers. High levels of hydrogen sulfide are extremely toxic and can cause serious harm to human health, including respiratory problems, eye irritation, and even death at high concentrations. Early detection through this sensor allows for timely evacuation and appropriate safety measures to be taken.
  • Mining Industry: In coal mines and some metal mines, hydrogen sulfide may be present due to the decomposition of organic matter or the presence of sulfide - containing minerals. The sensor can be used in underground work areas, ventilation shafts, and mining equipment to detect H₂S leakage. This helps prevent miners from being exposed to toxic levels of hydrogen sulfide, ensuring a safe working environment.
  • Wastewater Treatment Plants: Anaerobic digestion processes in wastewater treatment can generate hydrogen sulfide. The 7H2S - 50 sensor can be installed in areas such as digesters, sewage pumping stations, and sludge handling facilities. Monitoring H₂S levels is crucial to protect the health of plant operators and prevent corrosion of equipment caused by hydrogen sulfide.

Environmental Monitoring:

  • Ambient Air Quality Monitoring: In urban areas close to industrial sources or areas with potential natural emissions of hydrogen sulfide (such as near swamps or landfills), the sensor can be used in air quality monitoring stations. It helps in assessing the overall air quality and detecting any abnormal increases in H₂S concentration, which may indicate pollution sources or environmental problems. This data is valuable for environmental protection agencies to formulate policies and take measures to control air pollution.
  • Marine and Coastal Environments: In ports, harbors, and coastal industrial areas, hydrogen sulfide can be released from shipping activities, seafood processing, or the decomposition of organic matter in the water. The sensor can be deployed in buoys, coastal monitoring stations, or on ships to monitor H₂S levels in the marine environment. This is important for protecting the health of marine life and ensuring the safety of workers in coastal industries.

Safety in Public Spaces:

  • Subway and Underground Facilities: In subway stations, tunnels, and other underground public spaces, hydrogen sulfide may accumulate due to sewage systems, decaying organic matter, or other sources. Installing the 7H2S - 50 sensor helps in detecting any potential H₂S leaks, ensuring the safety of commuters and maintenance workers.
  • Hotels, Restaurants, and Public Buildings: In some cases, hydrogen sulfide can be generated from plumbing systems, especially if there are problems with sewage disposal or ventilation. The sensor can be used in these buildings to monitor the air quality and prevent occupants from being exposed to harmful levels of H₂S.

Process Control in Chemical and Pharmaceutical Industries:

  • Chemical Manufacturing: In chemical plants where hydrogen sulfide is used as a raw material or is a by - product of certain chemical reactions, the sensor is used for process control. By accurately monitoring the H₂S concentration, manufacturers can optimize production processes, prevent over - production of H₂S, and ensure the quality of chemical products.
  • Pharmaceutical Industry: In some pharmaceutical production processes, hydrogen sulfide may be present in trace amounts or as a result of certain reactions. The 7H2S - 50 sensor can be used to monitor and control H₂S levels to ensure the safety of the production environment and the quality of pharmaceutical products.

 

Detection Gas Hydrogen sulfide (H₂S)
Measuring Range 0 - 50 ppm (nominal); Max overload: 100 ppm
Sensitivity 1.0 ± 0.2 μA/ppm (at 20℃)
Response Time ≤ 30 s (T90, time to reach 90% of final response)
Zero Signal < ± 0.4 μA (at 20℃)
Resolution 0.1 ppm
Linearity Linear within 0 - 50 ppm
Bias Voltage 0 mV
Temperature Range -20℃ - 50℃ (operating); 10℃ - 30℃ (recommended storage)
Pressure Range 1 ± 0.1 atm
Humidity Range 15% - 90% RH (non - condensing, operating)
Long - term Drift < 2% signal/month
Expected Lifespan 2 years (in clean air, operating); 6 months (storage, original package)
Housing Material ABS
Weight ~8 g (nominal)

 

7H2S-50 Electrochemical Hydrogen Sulfide Gas sensor For Environmental Monitoring 0

 

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