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Technical prospects for hydrogen production from methanol reforming

Technical prospects for hydrogen production from methanol reforming

  • Categories:Technology
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  • Time of issue:2021-11-10
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(Summary description)Technical prospects: 1. Industrial hydrogenation uses methanol reforming to produce gas, pressure swing adsorption to remove CO2, and prepares high-purity hydrogen according to customer needs...

Technical prospects for hydrogen production from methanol reforming

(Summary description)Technical prospects: 1. Industrial hydrogenation uses methanol reforming to produce gas, pressure swing adsorption to remove CO2, and prepares high-purity hydrogen according to customer needs...

  • Categories:Technology
  • Author:
  • Origin:
  • Time of issue:2021-11-10
  • Views:0
Information

Technical prospects:

1. Industrial hydrogenation applications

Methanol is reformed to produce gas, pressure swing adsorption is used to remove CO2, and high-purity hydrogen is produced according to customer needs.

2. Application of H2 and CO2 conversion gas

Methanol and steam reforming to produce H2:CO2=3:1 reformed gas, and supporting PSA-H2 to produce pure hydrogen, which can meet the requirements of various industrial sectors such as electronics, chemical industry, metallurgy, machinery, and food.

3. Hydrogen fuel cell provides hydrogen source

Methanol reforming + PSA-H2 purifies hydrogen to produce high-purity hydrogen with an impurity CO content of less than 1ppm, which can be used as a hydrogen source for hydrogen fuel cells.

4. Application of methanol cracking synthesis gas

Methanol cracking produces H2:CO=2:1 synthesis gas for scientific research, heat treatment and fine chemical applications. Methanol is cracked to produce synthesis gas, and the PSA-CO device is used to extract pure CO for the pure CO required in pharmaceutical synthesis and fine chemicals.

5. Restore protective gas application

Reforming methanol and an appropriate amount of steam to prepare a reducing protective gas with a composition of H2 65-74%, CO2 1.5-2.

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