IP Library › Granted Patent US 10,472,235
Granted Patent B2
US 10,472,235 · App. 15/558,246 · Granted Nov 12, 2019

Synthesis gas manufacturing method and synthesis gas manufacturing apparatus

Inventors: Shigeru Kado (Yokohama, JP); Kohei Urasaki (Yokohama, JP); Kyoji Ishikawa (Yokohama, JP); Hironori Kawai (Yokohama, JP); Yusuke Nakajima (Yokohama, JP)
Assignees: CHIYODA CORPORATION; JAPAN OIL, GAS AND METALS NATIONAL CORPORATION
C01B3/26B01J8/0207B01J8/0242B01J8/0411B01J12/00B01J12/007B01J19/244B01J19/248B01J19/249B01J19/2485B01J19/2495B01J23/464B01J23/56B01J23/63B01J35/0006B01J35/023B01J35/04B01J37/0018B01J37/0201B01J37/0215B01J37/082B01J37/088C01B3/386C01B32/40C07C9/04B01J32/00B01J2208/00672B01J2208/024B01J2208/025B01J2219/00263B01J2523/00C01B2203/0261C01B2203/1011C01B2203/1064
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Quick Facts
Patent No.
US 10,472,235
App. No.
15/558,246
Granted
Nov 12, 2019
Kind
B2
Abstract

A method of manufacturing synthesis gas by catalytic partial oxidation can prevent formation of hot spots from taking place when driving mixture gas to pass through a catalyst-filled layer at high velocity. The method comprises converting mixture gas of source gas containing lower hydrocarbons and oxidative gas containing oxygen into synthesis gas containing hydrogen and carbon monoxide as main components thereof by causing mixture gas to flow through a fixed bed catalyst layer arranged in a reactor. The method of manufacturing synthesis gas by catalytic partial oxidation is conducted such that the mixture gas is made to flow to the catalyst layer under the condition that the Reynolds number does not exceed 20 at the inlet of the catalyst layer.

Claims (6)

1. A method of manufacturing synthesis gas by catalytic partial oxidation, comprising causing mixture gas of source gas containing lower hydrocarbons and oxidative gas containing oxygen to flow through a fixed bed catalyst layer in a reactor and thereby converting the mixture gas into synthesis gas containing hydrogen and carbon monoxide as main components thereof, characterized in that the mixture gas is caused to flow through the catalyst layer under a condition where the Reynolds number does not exceed 20 at the inlet of the catalyst layer.

2. The method according to claim 1 , wherein the gas flow velocity of the mixture gas in a mixture gas feed flow path reaching to the catalyst layer is not less than the critical burning velocity.

3. The method according to claim 1 , wherein the temperature of the mixture gas is lower than the self-ignition temperature of the lower hydrocarbons at the inlet of the catalyst layer.

4. The method according to claim 1 , wherein the mixture gas is obtained by separately introducing the source gas and the oxidative gas into a mixing vessel and then mixing the source gas and the oxidative gas in the mixing vessel.

5. The method according to any claim 1 , wherein the lower hydrocarbons comprise methane.

6. The method according to claim 1 , wherein the oxidative gas contains oxygen by 20 to 99.9 mol %.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 14, 2017
From: KADO, SHIGERU; URASAKI, KOHEI; ISHIKAWA, KYOJI; KAWAI, HIRONORI; NAKAJIMA, YUSUKE
To: CHIYODA CORPORATION; JAPAN OIL, GAS AND METALS NATIONAL CORPORATION
Reel/Frame 043590/0436 →
Priority Claims (1)
JP 2015-059106 · Mar 23, 2015 · national
Continuity (1)
Related Publication 20180093886A1 · Apr 5, 2018