So2 CO2 Capture Spunk Activated Carbon Column Coal Based

So2 CO2 Capture Spunk Activated Carbon Column Coal Based

Activated carbon To be used for recovery of benzene, toluene,xylene, ethers, ethanol, benzin, chloroform, carbon thtrachloride, etc.

Description

Coal-based activated carbon for solvent recovery


Pellet activated carbon gas separation is to be used for recovery of benzene, toluene,xylene, ethers, ethanol, benzin, chloroform, carbon thtrachloride, etc.



Moisture content

(%)

Hardness

(%)

Apparent density

(g/l)

C.T.C

(%)

Particle size

(mm)

ZH40

≤5.0

≥90

350~550

54~80

~4.0

ZH30

≤5.0

≥90

350~550

54~80

~3.0

ZH15

≤5.0

≥90

350~550

54~80

~1.5

DH30

≤5.0

≥90

350~550

54~80

~3.0

DH40

≤5.0

≥90

350~550

54~80

~4.0

DH15

≤5.0

≥90

350~550

54~80

~1.5


♣The products can be provided according to the customer's special demands.


Gas separation is the process of separating a mixture of gases into its individual components or removing impurities from a gas stream. This can be achieved using various techniques, including distillation, adsorption, and membrane separation. Activated carbon is widely used in gas separation because of its unique properties, such as high surface area, porosity, and adsorption capacity.


Activated carbon particles are commonly used in gas separation because they are small and can be easily dispersed in a gas stream. They are made by heating organic materials, such as wood, coconut shells, or coal, at high temperatures in the absence of air. This creates a highly porous material that has a large surface area for adsorbing gases.


Adsorption is the process by which gases are physically trapped or absorbed onto the surface of the activated carbon particles. This occurs because the adsorbate molecules are attracted to the surface of the adsorbent due to the presence of van der Waals forces, electrostatic forces, and hydrogen bonding.


Gas separation using activated carbon particles is a highly efficient process because of the large surface area of the particles. This allows for a high amount of gas to be adsorbed onto the particles, which results in a high degree of separation. Additionally, activated carbon particles can be easily regenerated by heating, which allows them to be used multiple times.


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