HCBBS Forum (English)
Submit Chemical Projects / Find Solutions
Amplify Your Requirements on a Broader Chemical Platform *Engineering · Technology · Equipment · Solutions*
Submit Request

Points to note in the process design of hydrogenation reactions

2023-11-23View Original

Thread Content

The hydrogenation reaction is **one of the first hazardous chemical processes designated as key areas for supervision by the State Administration of Work Safety. The dangers stem from the following points: 01▶ Dangers of hydrogen Hydrogen has characteristics that other flammable gases or organic solvent vapors do not possess: ① It is lighter than air ; ② Easy to diffuse ; ③ The explosion range in air is extremely wide (4%–75%) ; ④ Hydrogen has a very low ignition energy ; ⑤ Hydrogen has high chemical reactivity. 02▶ Hazards of hydrogenation reactions The hazards associated with hydrogenation reactions include: ① Hydrogenation reactions are generally carried out under high pressure, sometimes as high as 10 MPa; therefore, the reaction vessels need to be specially designed ; ② The hydrogenation reaction is a highly exothermic reaction, and improper control can easily lead to overpressure and accidents in the system ; ③ The catalysts used in hydrogenation processes possess high activity and can catch fire spontaneously in air, so special care must be taken when using them. This paper analyzes the hazards of hydrogenation reactions and discusses the key considerations in the design of hydrogenation process systems, covering aspects such as material feeding, nitrogen purging, reaction process control, pressure relief after the reaction, and safe venting under abnormal operating conditions. 01 Points to Note in the Process Design for Hydrogenation Reactions 1) Material feeding and nitrogen purging before the reaction: The catalysts used in hydrogenation reactions, such as Raney nickel and palladium on carbon, have dry powders that can catch fire in air; therefore, the material feeding process must be carried out in a sealed feeding device under nitrogen protection. The hydrogenation reactor must be purged with nitrogen before starting the hydrogenation reaction, and the purging process is completed only when the oxygen content in the system is below 0.5%. The displacement methods include pressure displacement, evacuation displacement, and water injection exhaust method. 2) Reaction process control: The process and automatic control design must, based on the results of reaction safety risk assessment, define safe operating conditions. The design of process and safety facilities should cover aspects such as process design, instrument control, alarm and emergency intervention (safety instrumented systems), collection and protection of materials after release, as well as emergency response measures for the plant area and surrounding regions. 3) Pressure relief after the reaction: After the hydrogenation reaction is complete, it is necessary to release the pressure inside the tank; only after that can nitrogen be introduced to displace the gas before the contents can be removed. The exhaust pipe of the hydrogenation reactor tank must be installed separately, with its outlet located 2 meters above the roof; a flame arrester should be installed at the exhaust pipe outlet. A check valve should be installed after the exhaust pipe cut-off valve to prevent gas from flowing back. 4) Safety relief measures: The hydrogenation reaction tank should be equipped with safety relief devices such as safety valves or burst discs. When the reaction is intense, it is advisable to install two safety relief devices, with a certain gradient between their opening pressures or burst pressures; each of these safety relief devices must be capable of delivering the required maximum amount of discharge. The discharge pipe at the outlet of the safety valve or rupture disc should first be connected to an explosion vent tank before being vented. 02 Points to Note Regarding Civil Engineering, Electrical Systems, and Ventilation Conditions 1) The process engineering team should specify hydrogen as a special medium in the requirements provided to the civil engineering team; the civil engineering team, when designing rooms and steel platforms, must ensure that there are no structures that could hinder the diffusion of hydrogen. The upper space above the hydrogenation area should be well-ventilated, and the inner surface of the ceiling should be smooth to avoid dead corners and prevent hydrogen from accumulating in recessed areas at the top. Vents or exhaust openings should be provided on the top of the building or at the upper part of its exterior walls; these exhaust openings should be located at the highest point and face a safe direction. 2) The selection of electrical equipment in the hydrogenation area should not be lower than the rating and category of hydrogen explosive materials (ⅡCT1). Equipment exposed to the outdoors, such as explosion vent tanks, roof-mounted fans and ducts, and the vent pipes of hydrogenation reactors, should be equipped with lightning protection measures. 3) Good ventilation should be ensured during hydrogenation reactions; in buildings equipped with mechanical ventilation, the air inlets should be located at the bottom of the building while the exhaust outlets should be placed at the top. The air exchange rate for normal ventilation during hydrogenation reactions must be no less than 3 times per hour, while the air exchange rate of the emergency exhaust system must be no less than 12 times per hour. The emergency exhaust system should be interlocked with the hydrogen detection device. In the relationship between production and safety, safety comes first; it must be given top priority. It is necessary to analyze potential hazards in advance, predict and assess dangerous and harmful factors, understand the patterns and changes in such hazards, and take appropriate preventive measures to nip dangers and safety risks in the bud.
Reply #22023-11-23
When designing hydrogenation processes, great attention must be paid to the flammability and explosiveness of hydrogen, as well as the high pressure and intense exothermic nature of hydrogenation reactions. Here are some key points to note: 1. Material feeding and nitrogen purging: – Use a sealed feeding device to add catalysts and other substances under a nitrogen-protected environment. - Before hydrogenation, nitrogen is used for purging to remove oxygen from the hydrogenation reactor; typically, the oxygen content must be below 0.5% before the purging process can be completed. 2. Reaction process control: – Safe operating conditions must be determined based on safety risk assessments, and these conditions should be taken into account in the process design. - Use instruments to control reaction conditions, and establish alarms and emergency intervention measures to ensure timely action in case of abnormalities. - The design must include a collection system for material leaks and protection for the facilities, as well as emergency response capabilities in the surrounding area. 3. Pressure relief after the reaction: – Release the pressure inside the hydrogenation reactor after the reaction is complete. - Before releasing the gas, ensure that it passes through a flame arrester to prevent backflow of flames. - A check valve should be installed on the exhaust pipe to prevent gas from flowing back. 4. Safety relief measures: – Install safety valves or burst discs as safety relief devices to release pressure in case of abnormal pressures. - The safety relief device shall have a gradually increasing opening pressure or burst pressure, and be capable of withstanding the maximum discharge volume. - The vent pipe should first be connected to the explosion venting tank before safe discharge. 5. Civil engineering, electrical, and ventilation conditions: – The civil engineering design should take into account the properties of hydrogen, avoiding structures that could hinder its diffusion. - The inner surface of the hydrogenation chamber ceiling should be smooth, and air vents or exhaust holes should be provided to ensure good ventilation. - The explosion protection rating of electrical installations should not be lower than the standards for hydrogen explosives*. - The ventilation system design requires that the emergency exhaust device be sufficient to keep the hydrogen concentration below safe levels, and it must be interlocked with the hydrogen detection device. Finally, safety must always be given top priority during the hydrogenation process; thorough hazard analyses should be conducted, and appropriate preventive measures established to ensure safe production. .

Submit a Project

**Looking for Chemical Technology, Equipment & Solutions?** No Registration Required Broader Platform Exposure | Global Chemical Service Provider Connections

Submit Request — Free Consultation

Disclaimer

This is an automated machine translation of the original thread. Some technical terms may have inaccuracies; the original text shall prevail. Click "View Original" at the top right to access the source page, which supports IP-based automatic real-time language translation. Please watch out for contact details and sales inducements to prevent fraud. All content and translations are for reference only, representing solely the poster's personal views. For enquiries, email service@hcbbs.com.