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Oxygen pipeline degreasing method

2023-11-08View Original

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As we all know, oxygen pipelines must be free of oil and need to be degreased. Today, we will introduce the degreasing methods for oxygen pipelines. Degreasing, as the name implies, is the process of removing oil stains from the inner and outer surfaces of pipes. Degreasing is a critical step in the installation of oxygen pipelines; if oil is present inside these pipelines, it will react with pure oxygen, leading to an explosion very easily. Oxygen pipelines are generally made of seamless steel tubes, with materials being 20# steel or stainless steel. For pipes made of stainless steel, only degreasing is required, while for pipes made of 20# steel, degreasing is necessary in addition to pickling, neutralization, and passivation. During construction, the pipe openings that have been degreased must be sealed promptly to prevent secondary contamination of the pipes. Before putting it into use, it must be thoroughly cleaned with oil-free compressed air. Degreasing, pickling, and passivation of carbon steel pipes: For carbon steel pipes, it is necessary to first degrease them before pickling, as oils are insoluble in acid solutions. If pickling is done first, neither the oils nor the rust covered by those oils can be removed. The degreasing and pickling method for seamless steel pipes commonly employs a tank immersion technique in practice, with the liquid level being more than 50 mm above the outer surface of the pipes during immersion. Since oxygen pipelines require degreasing, acid washing, and passivation treatments, generally 4 tanks are built depending on the actual diameter of the pipes in use. That is, the degreasing tank, pickling tank, neutralization tank, and passivation tank. The degreasing and pickling process flow for oxygen pipelines is: degreasing → water rinsing → pickling → water rinsing → neutralization → passivation → water rinsing → drying. 1. Degreasing: The formula for the degreasing solution is as follows: each liter of the solution contains 20g–30g of sodium hydroxide, 35g–50g of sodium nitrate, and 3g–5g of sodium silicate. The operating requirements are as follows: the liquid temperature should be 70°C–80°C; the soaking time is determined through testing based on the amount of oil and grease on the pipe surface, and generally ranges from 10 to 40 minutes. Steam can be used as the heating method. The degreased parts shall be inspected using any of the following methods. (1) Wipe the surface of the degreased parts with clean, dry white filter paper; it is considered qualified if no oil traces remain on the paper. (2) Inspect the steam-blown condensate with 100% camphor of 1 mm or less; it is considered acceptable if it rotates continuously. (3) Inspect the surface of the degreased parts using ultraviolet light with a wavelength of 3200–3800 angstroms; no oil fluorescence indicates compliance. Through degreasing, the oil on the pipe surface can be removed. 2. Rinse with water: Clean thoroughly with clean water at a pressure of 0.8 MPa. 3. Acid cleaning: Acid cleaning involves using an acid solution to remove oxide scale and rust from the surface of seamless steel pipes. Oxides of iron such as scale and rust (Fe3O4, Fe2O3, FeO, etc.) undergo a chemical reaction with acid solutions, forming salts that dissolve in the acid and are thus removed. The most commonly used acids for pickling are sulfuric acid and hydrochloric acid. The sulfuric acid solution formula is: the concentration of the sulfuric acid solution is 5%–10%. The operational requirements are: temperature of 60°C to 80°C, and soaking time of 5 minutes to 20 minutes. The formula for the hydrochloric acid solution is: the concentration of the hydrochloric acid solution is 5% to 20%. The operational requirements are: temperature of 20°C to 50°C, and soaking time of 5 minutes to 20 minutes. After acid cleaning, the pipeline is inspected; it is considered qualified if the surface rust has been completely removed and a metallic luster is visible. 4. Water flushing: Flush thoroughly with clean water at a pressure of 0.8 MPa. 5. Neutralization: The formula for the neutralizing solution is a solution of NH4OH diluted to a pH value of 10–11. The operating procedure requires: soaking at room temperature for 3 minutes. 6. Passivation: After acid washing, water rinsing, and bleaching, the metal surface becomes very clean and highly activated, making it susceptible to corrosion. Therefore, passivation must be carried out immediately to form a protective layer on the cleaned metal surface, thereby reducing corrosion. The passivation solution formula is: NaNO2 concentration of 8%–10% ; The NH4OH concentration is 2%. The required processing procedure is: soak at room temperature for 10 minutes. 7. Rinse with water: Rinse until clean using purified water at a pressure of 0.8 MPa. 8. Drying: Drying must be carried out by blowing with clean, oil-free dry air or nitrogen. 9. Inspection: Wipe the surface with white filter paper for inspection; if no grease marks remain on the paper, it is considered acceptable. After passing the inspection, seal both ends of the tube using plastic wrap and tape. The inner wall of the carbon steel pipe treated in this way remains clean and shiny, and it can stay free from corrosion for about 2 months ; If it is well preserved, the duration can be extended. The above method can also be applied to carbon steel pipe fittings. Degreasing, pickling, and passivation of stainless steel pipes: Since stainless steel pipes only require degreasing, in addition to the degreasing methods mentioned above, the wiping method can also be used for large-diameter pipes. When using the wiping method for degreasing, cotton yarn should not be used; instead, fabrics with fibers that do not easily fall off, such as silk or glass fiber fabrics, should be employed. Longer pipes can be tied with clean wire and cloth strips to be pulled and scrubbed in both directions in order to remove oil stains from the inner walls of the pipes. After degreasing, the surface of the degreased parts must be carefully inspected; it is strictly prohibited for fibers from organic fabrics to fall into or adhere to the surface of these parts. Once the inspection is satisfactory, the pipe openings should be sealed immediately. Degreasing, pickling, and passivation of stainless steel pipe fittings and valves: Depending on the volume of the largest valve, a degreasing container is made from steel plates (or can be simply constructed by modifying an iron barrel used for storing carbon tetrachloride); after removing any rust or dirt from its inner walls, it is cleaned with a white cloth. The stainless steel fittings and valves that need to be degreased should be wiped clean with a dry white cloth (note: choose a high-quality cloth that does not shed fibers), and then threaded together with wire or thin steel cable and placed in the container that has been prepared. Carbon tetrachloride is poured into the container to soak the stainless steel fittings and valves. Do not fill it to the brim when injecting; it is best to keep the liquid level about 200 mm away from the top of the container, to prevent carbon tetrachloride from leaking and causing contamination or injury. Since carbon tetrachloride is toxic and volatile, operators should stand upwind when pouring it to prevent poisoning from inhaling carbon tetrachloride. Then cover the container, soak it for 1 to 2 hours, remove the fittings and valves, wipe the inner and outer surfaces of these components with flannel, and let them dry naturally. After passing the inspection, wrap and seal the pipe fittings and valves in plastic sheeting in a categorized manner. Before degreasing the valve, it must first be ground and pressure-tested to ensure it meets the requirements; thereafter, it is disassembled into its components to remove rust and other impurities, and then immersed in carbon tetrachloride solvent for 1 to 1.5 hours. Bolts and metal gaskets are degreased in the same way. For valve housings that cannot be soaked, the wiping method can be used. During degreasing, the non-metallic gaskets are immersed in carbon tetrachloride solvent for 1.5 to 2 hours, after which they are taken out and hung in a well-ventilated area or a ventilation system to be dried individually until no odor of the solvent remains. The asbestos packing inside the valve can be burned at a temperature of around 300°C for 2 to 3 minutes (a flaming flame that produces smoke must not be used), and then dipped in the specified coating. Construction safety protection measures: Before starting work, technicians must provide safety and technical instructions to the workers involved in the construction. Tools, measuring instruments, gauges, etc., used for degreasing, inspection, and installation must be pre-degreased in accordance with the requirements of the parts to be degreased. It must not be used without degreasing. The safety measures for degreasing and acid washing shall comply with the relevant provisions of the \"Safety Technical Regulations for Petrochemical Construction,\" and such work should be carried out in well-ventilated outdoor areas. Personal protection should be enhanced at work; one should wear work clothes, rubber gloves, a mask, protective goggles, rain boots, and an apron, and a gas mask should be worn if necessary. Conclusion: When degreasing oxygen pipelines, care must be taken; incomplete degreasing can create safety hazards in future operations and may even lead to accidents. Therefore, from the very beginning of construction, it is necessary to provide proper safety and technical instructions, ensuring that every worker attaches great importance to these matters. They must carry out thorough degreasing, and only after the quality inspector has checked and confirmed that the degreasing process has been completed successfully can they proceed to the next stage of work.
Reply #22023-11-08
The degreasing methods for oxygen pipelines are mainly divided into two categories: degreasing, pickling, and passivation for carbon steel pipes, and degreasing, pickling, and passivation for stainless steel pipes. For carbon steel pipes, the degreasing, acid washing, and passivation process involves first carrying out a degreasing step; the degreasing solution consists of 20g–30g of sodium hydroxide, 35g–50g of sodium nitrate, and 3g–5g of sodium silicate per liter of solution. After that, the surface is rinsed clean with pure water at a pressure of 0.8 MPa. Next, pickling is carried out; pickling involves using acid solutions to remove the oxide scale and rust from the surface of seamless steel pipes, with sulfuric acid and hydrochloric acid being commonly used. Rinse thoroughly again with clean water at a pressure of 0.8 MPa. Neutralization is then carried out, using a solution prepared by diluting NH4OH to a pH of 10–11. Then passivation is carried out; the passivation solution consists of 8%–10% NaNO2 and 2% NH4OH. Finally, rinse with water and dry; drying must be done using clean, oil-free dry air or nitrogen. For stainless steel pipes, only degreasing is required, which can be carried out using either a bath immersion method or a wiping method. For large-diameter pipes, the wiping method is used for degreasing. After degreasing, the surface of the degreased parts must be carefully inspected; it is strictly prohibited for fibers from organic fabrics to fall into or adhere to the surface of these parts. When carrying out degreasing work on oxygen pipelines, it is essential to pay attention to safety precautions; workers must wear work clothes, rubber gloves, masks, protective goggles, rain boots, and aprons, and should also use gas masks if necessary. The degreasing and washing process should be carried out in an outdoor area with good ventilation. In general, the degreasing of oxygen pipelines must be carried out carefully and thoroughly; no shortcuts are allowed, as this otherwise can create safety hazards in subsequent production operations and may even lead to safety accidents. .

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