Explosion Protection in Hydrogen Facilities – Online Course by Advanced Training Technologies GmbH covers a variety of topics such as assessment of explosion risk, primary and secondary explosion protection, device labeling, tertiary explosion protection, MSR devices in explosion protection, prevention of electrostatics, and combustion of mixtures of hydrogen and natural gas. To know more https://lnkd.in/djqkfyEr #hydrogenexplosion #hydrogenfacilities #learningcourse
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Our Hydrogen safety and explosion protection course is designed to give an introduction to Hydrogen energy and the hazardous area concepts for the use of electrical and non-electrical equipment where Hydrogen gas is present. The course explains the applications, different types and the dangers of Hydrogen. #HydrogenSafety
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#IntrinsicSafety is one of the most innovative and recognized methods of preventing the risk of explosions in potentially explosive atmospheres. Based on limiting powers to instruments in contact with flammable gases and combustible dust, this approach minimizes explosion risks in hazardous environments, in accordance with EN/IEC 60079-14 and European Directives "ATEX" 2014/34/EU and "ATEX" 1999/92/EC. The principle of intrinsic safety is based on: ✅ Associated devices, called "intrinsically safe barriers," that provide isolation and/or containment of common-mode fault voltages/currents, and concomitant limitation of electrical power of a differential nature. ✅ Intrinsically safe field devices (sensors, solenoid valves, lamps, etc.) located in hazardous areas, potentially or permanently in contact with potentially explosive atmospheres. ✅ Cable segments, the nature and length of which are analyzed and properly installed. ✅ Terminal blocks and connecting elements subject to accurate verification. Intrinsically safe barriers ensure circuit separation and power limitation between field equipment and logic in the control room or I/O panels, converting the signal coming from or destined for the hazardous area and limiting its power. The field equipment must ensure management of the residual power injected by the barriers in the event of a trip, limit surface temperature, and control the accumulation of electrical and magnetic energy in the reactive components that are part of the architectures. The equipment used must bear "CE" and "Epsilon x" markings, attesting to compliance with the safety requirements of the applicable Directives. Key benefits: ☑ Risk Reduction: Reduced likelihood of fire or explosion initiation. ☑ Operational Continuity: Safer operations mean fewer interruptions. ☑ Regulatory Compliance: Compliance with European EN and international IEC standards. Implementing intrinsic safety technologies is essential to ensure safety and efficiency in industrial processes. Learn more about intrinsic safety by watching this video: https://lnkd.in/gu7A2hTP #ATEX #EN60079 #SafetyBarriers #IndustrialAutomation #IndustrialSafety #Asserind
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Safety first, always. Don't compromise on your team's well-being. Choose Instech gas detectors for unparalleled protection against hazardous gases. Our advanced technology ensures early detection and response. #safetyfirst #gasdetection #instech #protectyourteam #industrial safety #instechgasdetector
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ISCO’s Ex line. An intrinsically safe bet. Don’t gamble with safety in hazardous wastewater installations. ISCO’s intrinsically safe Ex line of flow meters and sensors are a no risk solution. Why RISK it when there’s ISCO Ex? Interested in more information or a quote? Visit: https://hubs.la/Q02vBxVB0 #Norisk #intrinsicallysafe #flowmeasurement
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Hazardous locations, where the risk of explosive atmospheres is a concern, demand stringent safety measures. As industrial processes continue to evolve, ensuring the development and implementation of safe leak detection technologies is crucial to upholding a secure and productive work environment. By using intrinsically safe instruments for leak detection, risks associated to work in high risk locations are significantly mitigated. ➡️ Read how to safely search for leaks in aircraft fuel tanks: https://lnkd.in/dRSMieaU #INFICON #Extrima #EX #Intristicallysafe #Leakdetection #Hydrogen #Forminggas #Quality
Hydrogen Leak Detection in Potentially Explosive Environments
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High noise levels in valves and downstream piping can cause safety concerns for plant personnel, decrease reliability through equipment damage, and put the facility at risk of receiving noise complaints and potential regulatory action. Emerson’s new noise-attenuation technologies can help mitigate this noise effectively while saving both space and capital. #NoiseReduction #ProcessNoise #FisherValves
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High noise levels in valves and downstream piping can cause safety concerns for plant personnel, decrease reliability through equipment damage, and put the facility at risk of receiving noise complaints and potential regulatory action. Emerson’s new noise-attenuation technologies can help mitigate this noise effectively while saving both space and capital. #NoiseReduction #ProcessNoise #FisherValves
Learn More About Fisher™ Whisper Technology
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High noise levels in valves and downstream piping can cause safety concerns for plant personnel, decrease reliability through equipment damage, and put the facility at risk of receiving noise complaints and potential regulatory action. Emerson’s new noise-attenuation technologies can help mitigate this noise effectively while saving both space and capital. #NoiseReduction #ProcessNoise #FisherValves
Learn More About Fisher™ Whisper Technology
eci.shp.so
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High noise levels in valves and downstream piping can cause safety concerns for plant personnel, decrease reliability through equipment damage, and put the facility at risk of receiving noise complaints and potential regulatory action. Emerson’s new noise-attenuation technologies can help mitigate this noise effectively while saving both space and capital. #NoiseReduction #ProcessNoise #FisherValves
Learn More About Fisher™ Whisper Technology
eci.shp.so
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