Home> Products> Pressure Vessel> RQ22359 dehydrating tower front condenser
RQ22359 dehydrating tower front condenser
RQ22359 dehydrating tower front condenser
RQ22359 dehydrating tower front condenser

RQ22359 dehydrating tower front condenser

Payment Type:T/T

Incoterm:FOB,CFR,CIF,EXW

Min. Order:1 Set/Sets

Transportation:Ocean

Port:shanghai

Product Description
Product Attributes

Place Of OriginChina

Working Pressure /MPa-0.1~20

Operating Temperature /℃-40~350

Supply Ability & Additional Information

TransportationOcean

Portshanghai

Payment TypeT/T

IncotermFOB,CFR,CIF,EXW

Packaging & Delivery
Selling Units:
Set/Sets

RQ22359 dehydrating tower front condenser


Product introduction

Dehydration towers are an essential component of many industrial processes, particularly in the petrochemical and chemical industries. These towers are used to remove water from various substances, including gases and liquids, in order to increase their purity and improve their quality. However, the process of dehydration generates a significant amount of heat, which can cause problems if not properly managed. This is where the pre-condenser comes in.


The pre-condenser is a device that is installed at the front of the dehydration tower. Its primary function is to cool down the hot gas or liquid that is entering the tower, thereby reducing the temperature and preventing damage to the tower internals. Reactor Tanks Vessel,Reactor Equipment Sales,Stainless Steel Reaction Reactor The pre-condenser achieves this by using a Heat Exchanger to transfer the heat from the incoming gas or liquid to a cooling medium, such as water or air. This process results in the condensation of some of the water vapor present in the gas or liquid, which can then be removed before entering the tower.


There are several types of pre-condensers that can be used depending on the specific application and requirements. One common type is the shell-and-tube pre-condenser, which consists of a bundle of tubes surrounded by a shell. The hot gas or liquid flows through the tubes, while the cooling medium flows around the tubes in the shell. Another type is the plate-and-frame pre-condenser, which uses a series of plates with channels for the hot gas or liquid and cooling medium to flow through.


The design and operation of the pre-condenser are critical to ensuring the efficient and effective operation of the dehydration tower. Factors such as the flow rate, temperature, and pressure of the incoming gas or liquid, as well as the type and amount of cooling medium used, must be carefully considered. In addition, proper maintenance and cleaning of the pre-condenser are essential to prevent fouling and corrosion, which can reduce its effectiveness and lifespan.


In summary, the pre-condenser is a vital component of the dehydration tower that plays a crucial role in managing the heat generated during the dehydration process. Its design and operation must be carefully considered to ensure optimal performance and prevent damage to the tower internals. By using a pre-condenser, industries can improve the quality and purity of their products while also reducing energy consumption and costs.


Tower 2


Product parameter

Working pressure /MPa: -0.1~20

Operating temperature /℃: -40~350


Considerations for pressure vessels

1. Follow the operation specifications and safe operation procedures of the Pressure Vessel, and strictly follow the operation manual.

2. Check and maintain regularly to ensure the safety performance of the pressure vessel.

3. The operating environment of the pressure vessel should be dry, ventilated and free of corrosive gas. Avoid using the pressure vessel in the environment of damp and corrosive gas.

4. Before applying pressure inside the pressure vessel, check the tightness of the vessel to ensure no leakage.

5. The inside of the pressure vessel should be cleaned regularly to avoid the accumulation of impurities and dirt, affecting the service life of the vessel.

6. During the use of the pressure vessel, the pressure in the vessel should be strictly controlled to avoid exceeding the bearing range of the vessel and leading to the explosion of the vessel.

7. When using the pressure vessel, attention should be paid to the setting and inspection of the safety valve to ensure that when the pressure inside the vessel is too high, the safety valve can be started in time to release the pressure.

8. When using pressure vessels, attention should be paid to the safety of the surrounding environment to avoid injuries and losses caused by the explosion of the vessels to the surrounding personnel and equipment.

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