17872877. DEHYDROGENATION REACTION APPARATUS simplified abstract (KIA CORPORATION)

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DEHYDROGENATION REACTION APPARATUS

Organization Name

KIA CORPORATION

Inventor(s)

Yongwoo Kim of Gunpo-si (KR)

Jin Woo Choung of Suwon-si (KR)

Jihui Seo of Ulsan (KR)

Jaeyong Lee of Seongnam-si (KR)

Pyung Soon Kim of Suwon-si (KR)

Yoondo Kim of Seoul (KR)

Yu-Jin Lee of Seoul (KR)

Jaewon Kirk of Seoul (KR)

Suk Woo Nam of Seoul (KR)

Hyuntae Sohn of Seoul (KR)

Yongmin Kim of Seoul (KR)

Hyangsoo Jeong of Seoul (KR)

DEHYDROGENATION REACTION APPARATUS - A simplified explanation of the abstract

This abstract first appeared for US patent application 17872877 titled 'DEHYDROGENATION REACTION APPARATUS

Simplified Explanation

Abstract: A dehydrogenation reaction apparatus is described, which includes a dehydrogenation reactor and a methane generator. The dehydrogenation reactor has a reaction vessel that stores a chemical hydride, while the methane generator converts carbon monoxide generated in the dehydrogenation reactor into methane.

  • The dehydrogenation reactor is equipped with a reaction vessel that holds a chemical hydride.
  • The methane generator is responsible for converting carbon monoxide produced in the dehydrogenation reactor into methane.

Potential Applications

  • Chemical industry: The dehydrogenation reaction apparatus can be used in various chemical processes that require the conversion of chemical hydrides and the generation of methane.
  • Energy production: The methane generated by the apparatus can be utilized as a source of fuel for power generation or heating applications.

Problems Solved

  • Efficient conversion: The apparatus solves the problem of efficiently converting carbon monoxide into methane, which can be used as a valuable fuel source.
  • Waste reduction: By utilizing carbon monoxide generated in the dehydrogenation reactor, the apparatus helps minimize waste and maximize resource utilization.

Benefits

  • Resource utilization: The apparatus enables the conversion of chemical hydrides and carbon monoxide into useful methane, maximizing the utilization of available resources.
  • Energy efficiency: By converting carbon monoxide into methane, the apparatus contributes to energy efficiency and reduces waste in the process.


Original Abstract Submitted

A dehydrogenation reaction apparatus includes a dehydrogenation reactor having a reaction vessel that stores a chemical hydride; and a methane generator that converts carbon monoxide generated in the dehydrogenation reactor into methane.