IP Library Granted Patent US 8,946,307
Granted Patent B2
US 8,946,307 · App. 13/702,810 · Granted Feb 3, 2015

Biomass gasification gas purification system and method and methanol production system and method

Inventors: Atsuhiro Yukumoto (Minato-ku, JP); Wataru Matsubara (Minato-ku, JP); Shinya Tachibana (Minato-ku, JP); Toshiya Akiba (Minato-ku, JP); Katsuhiko Shinoda (Minato-ku, JP); Takeshi Amari (Minato-ku, JP)
Assignee: Mitsubishi Heavy Industries, Ltd.
B01D53/48C10K1/02C10K1/004C10K3/003C07C29/151C10K1/024C10K1/32C10K3/006C10K3/023C01B3/38C10L5/44C07C29/152B01D45/00C07C31/04C10G2300/1011C10G2300/1025C10J2300/0916C10J2300/1665C01B2203/0277C01B2203/061C01B2203/1258C01B2203/1619C01B2203/1623Y02E50/18Y02E50/32
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Quick Facts
Patent No.
US 8,946,307
App. No.
13/702,810
Granted
Feb 3, 2015
Kind
B2
Abstract

A biomass gasification gas purification system includes a dust collector for removing dust in biomass gasification gas (containing tar components) acquired by gasifying biomass by a biomass gasification furnace, a desulfurizer for removing sulfur oxide components in the dust-removed biomass gasification gas, a pre-reforming reactor for reforming tar components in the desulfurized biomass gasification gas, a steam feed unit for feeding steam to an upstream side of the pre-reforming reactor, and a natural-gas feed unit for feeding natural gas on an upstream side of the desulfurizer.

Claims (19)

1. A biomass gasification gas purification method comprising:

gasifying biomass so as to produce biomass gasification gas;

removing dust in the biomass gasification gas;

desulfurizing sulfur oxide components in the biomass gasification gas that has had the dust removed therefrom so as to produce desulfurized biomass gasification gas;

reforming tar components in the desulfurized biomass gasification gas using a pre-reforming reactor, the pre-reforming reactor having a catalyst with an allowable catalyst temperature;

feeding at least one of natural gas and steam to the pre-reforming reactor during said reforming of tar components;

obtaining an equilibrium constant from partial pressures of CH 4 , H 2 O, CO and H 2 at an outlet of the pre-reforming reactor; and

determining amounts of the natural gas and steam feeding to the pre-reforming reactor in said feeding at least one of natural gas and steam to the pre-reforming reactor so that the equilibrium constant that is obtained from the partial pressures of CH 4 , H 2 O, CO and H 2 at the outlet of the pre-reforming reactor will be the equilibrium constant corresponding to the allowable catalyst temperature at the pre-reforming reactor.

2. A methanol production method comprising:

gasifying biomass so as to produce biomass gasification gas;

removing dust in the biomass gasification gas;

desulfurizing sulfur oxide components in the biomass gasification gas that has had the dust removed therefrom so as to produce desulfurized biomass gasification gas;

reforming tar components in the desulfurized biomass gasification gas using a pre-reforming reactor, the pre-reforming reactor having a catalyst with an allowable catalyst temperature;

feeding at least one of natural gas and steam to the pre-reforming reactor during said reforming of tar components;

obtaining an equilibrium constant from partial pressures of CH 4 , H 2 O, CO and H 2 at an outlet of the pre-reforming reactor;

determining amounts of the natural gas and steam feeding to the pre-reforming reactor in said feeding at least one of natural gas and steam to the pre-reforming reactor so that the equilibrium constant that is obtained from the partial pressures of CH 4 , H 2 O, CO and H 2 at the outlet of the pre-reforming reactor will be the equilibrium constant corresponding to the allowable catalyst temperature at the pre-reforming reactor;

boosting biomass gasification gas that has been through the pre-reforming reactor to produce a boosted gas; and

synthesizing methanol by using H 2 gas and CO gas contained in the boosted gas.

3. The methanol production method of claim 2 , further comprising reforming the boosted gas so as to decrease a concentration of methane in the boosted gas.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 7, 2012
From: YUKUMOTO, ATSUHIRO; MATSUBARA, WATARU; TACHIBANA, SHINYA; AKIBA, TOSHIYA; SHINODA, KATSUHIKO; AMARI, TAKESHI
To: MITSUBISHI HEAVY INDUSTRIES, LTD.
Reel/Frame 029428/0052 →
Priority Claims (1)
JP 2010-179080 · Aug 9, 2010 · national
Continuity (1)
Related Publication 20130085307A1 · Apr 4, 2013