Chemical Glass Condenser
(1)150mm/200mm/300mm/400mm/500mm/600mm---19*2
(2)200mm/300mm/400mm/500mm/600mm---24*2
(3)400mm/500mm/600mm---29*2
2. Allihn Condenser
(1)150mm/200mm/300mm/400mm/500mm/600mm---19*2
(2)200mm/300mm/400mm/500mm/600mm---24*2
(3)500mm/600mm---29*2
3. Graham Condenser:
(1)150mm/200mm/300mm/400mm/500mm/600mm---19*2
(2)200mm/300mm/400mm/500mm/600mm---24*2
(3)500mm/600mm---29*2
***Price List for whole above, inquire us to get
Description
Technical Parameters
Product Design
The design of product is usually based on several important considerations, including cooling efficiency, fluidity, pressure, and temperature. Different types of condensers may have slight differences in structure and performance, such as the differences between straight condensers (such as spiral condensers) and indirect condensers (such as electronic condensers). In addition, some specially designed chemical glass condensers, such as multi port condensers with gas distribution heads, can also be used to distribute gas to different reactors.
There are many types and shapes of product, and their selection depends on different experimental conditions and needs. Here are some common product:

Advantages:
1) Small size, light weight, compact structure: glass condenser design is exquisite, occupy small space, easy to be flexibly arranged in the laboratory.
2) High condensing efficiency:compared with the same area of glass lined tube condenser and graphite heat exchanger, the condensing efficiency of glass condenser can be increased by 1-2 times.
This is mainly due to the small and uniform design of the spacing between the slices, and the repeated diffusion of the medium improves the condensation efficiency.
3) Easy maintenance and replacement: After the service life of the glass condenser, if any parts are damaged, they can be partially replaced or reduced in a single piece, which will not cause the whole machine to be scrapped or discontinued. This greatly reduces maintenance and replacement costs and prolongs the service life of the equipment.
4) High visibility: It is made of transparent glass material, so that the gas state, the consumption of reactants and the refining effect can be directly observed during the experiment, which is very easy to control the experiment.
Disadvantages:
1) Vulnerability: Glass condensers are susceptible to physical impacts or temperature changes, leading to rupture. Therefore, special care needs to be taken during use to avoid collision and sudden cooling and heating.
2) Not suitable for high temperature and high pressure environment: Due to the limitation of glass material, glass condenser is not suitable for high temperature and high pressure reaction environment, otherwise it is easy to break or fail.
3) High energy consumption: Although glass condensers perform well in condensing efficiency, their energy consumption is relatively high. Especially when dealing with a large number of high-temperature gases, the energy consumption is more obvious.
Our Advantages
◆ Advanced technical level: The company has advanced technology in technology, and constantly carry out technological innovation and research and development, to ensure that our products are better quality, more stable performance, longer service life, and more in line with market demand. We have a number of patented technologies, and won a number of national and provincial honors, these technical achievements provide a strong support for the development of the company.
◆ Excellent technical team: The company has a high-quality technical team, they have rich technical experience and innovation ability, can provide strong technical support and solutions for the company. Team members work closely together to drive the company's continuous progress in the field of technology.
◆ Advanced production equipment: The company has advanced production equipment and process flow, these equipment not only improve the production efficiency, but also reduce the production cost, to ensure the stability and reliability of product quality.
◆ High quality products: The company's products are produced in strict accordance with national standards and industry standards, and have undergone strict quality testing to ensure reliable product quality and superior performance. Our products have won many industry awards and have been widely recognized by users.
◆ Perfect service system: The company pays attention to customer service and has established a perfect pre-sale, sale and after-sales service system. We provide customers with timely and effective technical support and after-sales service to ensure that customers have no worries in the process of use.
Common use cases
► Cases
---Condensation reflux in organic synthesis reactions
1) Case description: In organic synthesis experiments, in order to improve the conversion and yield of reactants, it is often necessary to carry out condensation reflux operation. At this time, the chemical glass condenser is used to condense the steam generated during the reaction process back into the reaction bottle, so that the raw material that is not completely reacted back into the reaction system to continue to react.
2) Note: Select the appropriate condenser type (such as spherical condenser or snake condenser) to meet the experimental needs; Control heating rate and temperature to avoid violent boiling of reactants; Check the condensation effect regularly to ensure smooth reflux.
---Condensation of steam in distillation experiments
1) Case description: In distillation experiments, it is necessary to separate the different components of the mixture. The separation of components is achieved by heating the mixture to partially vaporize it, and then using a chemical glass condenser to condense the vapor into a liquid.
2) Note: Ensure that the condenser is installed vertically to improve the condensing efficiency; Select the appropriate cooling medium and flow rate; Control heating temperature to avoid condenser rupture due to high steam pressure.
► Case analysis
Poor condensation effect
1) Possible causes: the cooling medium flow is insufficient or the temperature is too high; The surface of condenser is attached with dirt or impurities; Improper selection of condenser type.
2) Solution: increase the cooling medium flow or reduce its temperature; Clean the condenser surface; Select the appropriate condenser type according to the experimental requirements.
Condenser rupture
3) Possible causes: the condenser is affected by sudden cooling and heat shock; Excessive steam pressure; The condenser quality is unqualified.
4) Solution: Control the rate of temperature change during heating and cooling; Reduce steam pressure; Choose condenser products with reliable quality.
► Other precautions
1) Safety protection
Wear appropriate personal protective equipment, such as lab coats, gloves, and goggles, when operating chemical glass condensers. Avoid direct contact with the high-temperature part of the condenser surface to prevent burns.
2) Regular maintenance and maintenance
Regularly clean the chemical glass condenser to remove dirt and impurities attached to the tube wall and maintain its good heat transfer performance. Check the sealing of the condenser. If there is leakage, replace the sealing material or repair it in time.
3) Correct selection and use
Select the appropriate condenser type, specification and material according to the experimental requirements. Read the product manual carefully before use to understand the performance characteristics and operating requirements of the condenser.
Safety Considerations

Safety is a top priority when working with chemical glass condensers. These devices can pose several hazards if not used properly, including thermal burns, chemical exposure, and equipment failure. Some key safety considerations include:
● Personal Protective Equipment (PPE): Always wear appropriate PPE when working with chemical glass condensers, including gloves, goggles, and a lab coat. This will help protect you from thermal burns, chemical splashes, and other hazards.
● Ventilation: Ensure that the laboratory is adequately ventilated to prevent the buildup of harmful vapors or gases. This can be achieved through the use of fume hoods, exhaust fans, or other ventilation systems.
● Temperature Control: Carefully monitor and control the temperature of the cooling medium and the vapor or gas being condensed. Excessive temperatures can lead to equipment failure or even explosions.
● Pressure Control: If the condenser is being used in a pressurized system, it is essential to monitor and control the pressure to prevent leaks or ruptures. Always follow the manufacturer's guidelines for maximum operating pressures.
● Emergency Procedures: Familiarize yourself with the emergency procedures for your laboratory, including the location of emergency showers, eye washes, and first aid kits. In the event of an accident or spill, follow the established protocols to minimize harm and prevent further incidents.
Factors to Consider When Choosing a Chemical Glass Condenser
When selecting a chemical glass condenser for your laboratory, several factors need to be taken into account to ensure that you choose the right one for your needs. These include:
● Type of Experiment: The type of experiment you will be conducting will determine the type of condenser you need. For example, if you are performing a distillation, you may need a different type of condenser than if you are carrying out an organic synthesis reaction.
● Temperature Range: Consider the temperature range that the condenser will be exposed to. Some condensers are designed for high-temperature applications, while others are better suited for low-temperature work.
● Cooling Medium: The choice of cooling medium will also affect your selection of a condenser. Some condensers are designed to work with water as the cooling medium, while others may require a different type of coolant.
● Size and Capacity: The size and capacity of the condenser should be appropriate for the volume of vapor or gas that you need to condense. A condenser that is too small may not be able to handle the load, while one that is too large may be cumbersome and inefficient.
● Compatibility: Ensure that the condenser is compatible with the chemicals and materials you will be working with. Some condensers may be made from materials that react with certain chemicals, leading to contamination or degradation of the condenser.
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