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Chemical industry


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Gas recovery, gas recovery, gas boost, enhanced oil recovery, gas collection, crude oil stabilization, crude oil vacuum distillation, exhaust compression, steam recovery/gas boost, vacuum filtration/wax removal, tail gas recovery, polyester production, PVC production, chlorine packaging, cyclic gas compression, pressure swing adsorption (PSA), liquid chlorine production, acetylene and hydrogen and other flammable and explosive gases Overhead vacuum system in compression, vacuum distillation of crude oil, vacuum crystallization and drying, vacuum filtration, vacuum conveying of various materials.

Gas recovery, gas recovery, gas boost, enhanced oil recovery, gas collection, crude oil stabilization, crude oil vacuum distillation, exhaust compression, steam recovery/gas boost, vacuum filtration/wax removal, tail gas recovery, polyester production, PVC production, chlorine packaging, cyclic gas compression, pressure swing adsorption (PSA), liquid chlorine production, acetylene and hydrogen and other flammable and explosive gases Overhead vacuum system in compression, vacuum distillation of crude oil, vacuum crystallization and drying, vacuum filtration, vacuum conveying of various materials.


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Top Vacuum Socre brings you a new solution for optimizing valve selection.
2025-12-22
Top Vacuum Socre brings you a new solution for optimizing valve selection. In vacuum systems, vacuum system components used to change the direction of airflow, adjust the volume of airflow, cut off or connect pipelines are called vacuum valves. The functions of vacuum valves in vacuum systems are: switching air paths, changing the flow route of airflow; controlling the volume of airflow, adjusting the vacuum degree; and quantitatively inflating. Vacuum valves mainly include vacuum angle valves, vacuum ball valves, vacuum butterfly valves, vacuum diaphragm valves, vacuum gate valves, and vacuum globe valves. Different types of vacuum valves have different applications. Below, we will discuss the characteristics and common areas of use of different types of valves such as gate valves, globe valves, butterfly valves, and ball valves. When configuring and selecting vacuum valves, it is necessary to consider the minimum pressure difference and high flow resistance of components within the molecular flow range. In addition, the valve body and valve seat require the minimum leakage rate. The lubricant on the vacuum side of moving parts in the valve must be suitable for the required pressure and temperature range, or overall exposure to high or ultra-high vacuum should be avoided as much as possible. The minimum harmful (dead) space and large flow conductance are important, especially in the molecular flow range.