Collaborative process for reforming biomass chemical chains to produce hydrogen and inhibit production of tar

A technology for reforming hydrogen and biomass, applied in the direction of inorganic chemistry, chemical instruments and methods, hydrogen, etc., can solve the problems of low gasification efficiency, unpublished operating process parameters, low hydrogen concentration, etc., and reduce tar production , low tar content and low energy consumption

Inactive Publication Date: 2015-05-06
CHONGQING UNIV
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Problems solved by technology

Chinese patent CN 103672873 A discloses a continuously operating solid fuel chemical chain reaction system, which mainly focuses on the device layout of the chemical chain system, without publishing specific operating process parameters; Chinese patent CN103113917A discloses a solid fuel chemical chain reaction system The gasification hydrogen production system and method mainly produce hydrogen by adsorbing CO2, and the hydrogen concentration is relatively low; Chinese patent CN1011117589 A discloses a tar treatment method and a The tar treatment device in the biomass gas mai

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  • Collaborative process for reforming biomass chemical chains to produce hydrogen and inhibit production of tar
  • Collaborative process for reforming biomass chemical chains to produce hydrogen and inhibit production of tar

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[0029] The present invention will be further described in detail below in conjunction with specific embodiments and drawings.

[0030] Such as figure 1 As shown, a biomass chemical chain reforming hydrogen production and tar removal combined process equipment is mainly composed of a catalytic cracking reactor 2, a cyclone separator 4, a hydrogen production reactor 5 and an oxygen carrier regeneration reactor 6.

[0031] The raw materials in the raw material hopper are mixed with the iron-based composite oxygen carrier transported by the lift pump in the mixer 13, and then enter the catalytic cracking reactor 2, which has a shut-off valve under the catalytic cracking reactor 2. The lower outlet of the cyclone separator 4 is connected to the hydrogen production reactor 5, and the synthesis gas generated in the catalytic cracking reactor 2 is discharged from the gas path 16. The iron-based composite oxygen carrier separated by the cyclone and steam react in the hydrogen production rea...

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Abstract

The invention provides a collaborative process for reforming biomass chemical chains to produce hydrogen and inhibit production of tar. The process mainly using a catalytic cracking reactor, a hydrogen producing reactor and an oxygen carrier regeneration reactor comprises the following steps: firstly mixing biomass with an iron-based compound oxygen carrier; then, carrying out reaction on the mixed raw materials in the catalytic cracking reactor for 20-30 minutes; then, feeding resultants of reaction into a cyclone separator to be separated; discharging synthesis gas from an exhaust opening; further conveying the reduced oxygen carrier in the catalytic cracking reactor into a hydrogen producing reactor to react with steam to prepare hydrogen; and finally, feeding the oxygen carrier after reaction into the oxygen carrier regeneration reactor to continuously and circularly participate in reaction after being oxidized. Compared with the conventional biomass gasification, the collaborative process provided by the invention cooperating a hydrogen production technology by reforming chemical chains with a tar inhibiting technology has the characteristics of low energy consumption, inhibition of tar production and the like. Aiming at biomass with different contents of volatile components, the invention provides two different implementation models.

Description

technical field [0001] The invention belongs to the technical field of chemical chain gasification of solid fuels, and in particular relates to a synergistic process for producing hydrogen by chemical chain reforming of biomass and suppressing tar production. Background technique [0002] At present, the development and utilization of renewable energy has become a topic of common concern in all countries. With the development of science and technology, the demand for energy in various countries is increasing, while the total amount of fossil fuels is decreasing year by year. At the same time, fossil fuels also bring more and more serious environmental problems, so it has become an inevitable trend to replace traditional fossil fuels with renewable energy. Biomass gasification technology has gradually become the focus of research and attention. [0003] The problems of tar and high energy consumption in the process of biomass gasification restrict the further development ...

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Application Information

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IPC IPC(8): C01B3/32
Inventor 冉景煜张松秦昌雷杨琳杨仲卿闫云飞蒲舸张力
Owner CHONGQING UNIV
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