Introduction of activated carbon for pressure swing adsorption and its market
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Activated carbon is a highly porous material that is used in various applications, including pressure swing adsorption (PSA). PSA is a technology that uses activated carbon to separate gases based on their molecular size and affinity for the carbon. It is widely used in the purification of natural gas, hydrogen production, and air separation.
Activated carbon for PSA has a high surface area and can remove impurities from gas streams by adsorbing them onto its surface. It is made by treating carbonaceous materials such as coconut shells, wood, and coal with heat and chemicals to create a porous and highly adsorptive material.
Activated carbon for PSA is available in various grades and sizes, depending on the application. It can be used as a single adsorbent or as a mixture of different types of carbon to optimize its performance. The choice of activated carbon depends on the gas being purified, the impurities to be removed, and the operating conditions.
The market for activated carbon for PSA is expected to grow due to the increasing demand for natural gas and hydrogen production. According to a report by Grand View Research, the market for activated carbon in PSA is expected to reach USD 10.82 billion by 2025, growing at a CAGR of 7.8% from 2018 to 2025.
The growth in the market is attributed to the increasing use of natural gas for power generation and transportation, which requires the purification of natural gas to remove impurities such as sulfur and carbon dioxide. The use of hydrogen as a fuel for fuel cells and transportation also requires the production and purification of hydrogen using PSA technology.
In conclusion, activated carbon is a versatile material that is widely used in various applications, including PSA. Its high surface area and adsorptive properties make it an ideal material for the purification of gases. The market for activated carbon for PSA is expected to grow due to the increasing demand for natural gas and hydrogen production.






