Absorbing machines for chemical processing are devices used in the chemical industry to separate and purify gases. These machines work on the principle of absorption, which involves the transfer of a gas from a mixture into a liquid. The liquid used in the process is called the absorbent, and it is selected based on its ability to selectively absorb the gas of interest. The process of absorption involves bringing the gas mixture into contact with the absorbent. The gas molecules are then dissolved into the liquid, which results in the separation of the gas from the mixture. The absorbed gas can then be recovered from the liquid by various means, such as heating or distillation. Absorbing machines for chemical processing are used in a wide range of applications, including the removal of carbon dioxide from natural gas, the purification of hydrogen gas, and the removal of sulfur dioxide from flue gases. These machines are also used in the production of various chemicals, such as ammonia and methanol. The design of absorbing machines for chemical processing varies depending on the specific application. Factors such as the type of gas being absorbed, the desired purity of the gas, and the volume of gas being processed all play a role in the selection of the appropriate machine. Some common types of absorbing machines include packed column absorbers, tray column absorbers, and spray tower absorbers. In conclusion, absorbing machines for chemical processing are an important tool in the chemical industry for the separation and purification of gases. These machines work on the principle of absorption and are used in a wide range of applications. The design of these machines varies depending on the specific application, and factors such as the type of gas being absorbed and the desired purity of the gas are taken into consideration when selecting the appropriate machine.
Absorption, Separation, Gas, Liquid, Purification
CITATION : "Brian Turner. 'Absorbing Machines For Chemical Processing.' Design+Encyclopedia. https://design-encyclopedia.com/?E=359428 (Accessed on September 26, 2023)"
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