The 13000L reaction vessel and 13000L high-pressure vessel are widely used in petroleum, chemical, rubber, pesticide, dye, pharmaceutical, and food industries as pressure vessels for processes such as vulcanization, nitration, hydrogenation, alkylation, polymerization, and condensation, such as reactors, reaction pots, decomposition pots, polymerization pots, etc;
Product Details
13000L reactor, 13000L high-pressure reactorWidely used in petroleum, chemical, rubber, pesticide, dye, medicine, food, pressure vessels for completing processes such as vulcanization, nitration, hydrogenation, alkylation, polymerization, condensation, etc., such as reactors, reaction pots, decomposition pots, polymerization kettles, etc; Materials generally include carbon manganese steel, stainless steel, zirconium, nickel based (Hastelloy, Monel, Inconel) alloys, and other composite materials. According to the heating/cooling methods, it can be divided into electric heating, hot water heating, thermal oil circulation heating, far-infrared heating, external (internal) coil heating, jacket cooling, and kettle coil cooling.
The 13000L reactor and 13000L high-pressure reactor are high-quality reaction equipment, especially in chemical production and experimental reaction processes, so they are relied upon by many enterprises. However, only by knowing the advantages of high-pressure reactors can they be better utilized to improve productivity and reaction rates. Below is a brief introduction to the advantages.
1. High pressure reaction vessels have impact resistance. The lower the internal stress, the better the elasticity, the greater the hardness, and the higher the bending and compressive strength, the better the impact resistance.
2. Alkali resistance, corrosion resistance to alkaline solutions.
3. Withstand voltage and have good insulation properties. When using frequency spark to inspect the ceramic layer within the specified thickness, the frequency spark cannot penetrate the ceramic layer.
4. When operating temperature, equipment heating and cooling should be carried out slowly.
5. Acid resistance, with good corrosion resistance to various organic acids, inorganic acids, and organic solvents.
The characteristics and uses of the four heating methods for reaction vessels:
1. Water heating: The required temperature can be used from time to time, and the heating system is divided into open and closed types. Open type is relatively simple, consisting of a circulating pump, a water tank, pipelines, and a regulator for control valves. When using pressurized water, the mechanical strength of the equipment is required, and a snake tube is welded to the outer surface of the reaction vessel. There is a gap between the snake tube and the vessel wall, which increases the thermal resistance of the reaction vessel and reduces the heat transfer effect.
2. Hot steam heating: When the heating temperature of the reaction kettle is below 100 ℃, steam with a pressure below one atmosphere can be used for heating; Use saturated steam within the temperature range of 100-180 ℃; When the temperature of the reaction vessel increases, pressurized superheated steam can be used.
3. Heating the reaction kettle with other media: If the process requires the reaction kettle to operate at a certain temperature or to avoid using a pressurized heating system, other media can be used instead of water and steam, such as mineral oil (275-300 ℃), diphenyl ether mixture (boiling point 258 ℃), molten salt (140-540 ℃), liquid lead (melting point 327 ℃), etc.
4. Type reaction kettle electric heating: Wrap the resistance wire around the insulation layer of the reaction kettle cylinder, or install it on a special insulator at a certain distance from the reaction kettle, thus forming a small spatial gap between the resistance wire and the reaction kettle body. To obtain temperature using the first three methods, a jacket needs to be added to the kettle body. Due to the large amplitude of temperature changes, the jacket and shell of the kettle are subjected to temperature changes, resulting in thermal stress. Using electric heating, the equipment is lightweight and easy to adjust the temperature, and does not require facilities such as pumps, furnaces, chimneys, etc. It is very easy to operate, with low risk, low cost, energy-saving and emission reduction, and temperature and explosion prevention! Can replace thermal oil, open flame, and steam heating.
The company has complete production equipment and testing methods, with over 100 sets of various production and testing equipment (instruments), and a group of technical personnel and management talents specializing in equipment design, development, and production. Establish a comparative production process and quality management system. *Capable of designing, producing, and installing all chemical equipment; The products are divided into four categories: reaction, heat exchange, storage, and separation, covering the complete set of equipment required for small-scale, pilot, and large-scale production in industries such as petroleum, medicine, coal chemical, and fine chemical. Due to years of research and development in reaction vessels and stirring technology, the company has accumulated a lot of experience in material anti-corrosion to facilitate user material selection. In terms of stirring, the company has professional stirring technicians who simulate various working conditions for testing to achieve satisfactory results for users. And have expertise in the design and manufacturing of non-ferrous metal equipment such as titanium, nickel, Hastelloy, Monel alloy, zirconium, tantalum, etc. The products are widely used in petroleum, chemical, pharmaceutical, dye, chlor alkali, dye, mining and metallurgy, scientific research institutions, and colleges and universities. And it has won widespread praise from industry users.