2015•Energy & FuelsRequires access

Experimental Investigation on Hydrogen Production by Anthracene Gasification in Supercritical Water

Hui Jin, Shanke Liu, Wenwen Wei, Deming Zhang, Zening Cheng, Liejin Guo

Open publisher page 41 citations

Abstract

Char conversion is the rate-determining step for coal gasification in supercritical water, because the main components of char are polycyclic aromatic hydrocarbons (PAHs) with chemical stability. Anthracene was selected as the model PAH compound to explore the gasification mechanism of coal in supercritical water. The experimental parameters investigated with autoclaves were within the following ranges: temperature, 600–750 °C; residence time, 5–30 min; and pressure, 23–25 MPa. The main gas products were H 2 and CO 2 . The liquid intermediates were analyzed by gas chromatography–mass-selective detection (GC-MSD) for qualitative analysis and quantitative analysis, respectively. Benzene and naphthalene were found to be relatively stable compounds in the liquid products. Effective catalyst and appropriate temperature were obtained to enhance the gasification process.

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What this paper is about

Char conversion is the rate-determining step for coal gasification in supercritical water, because the main components of char are polycyclic aromatic hydrocarbons (PAHs) with chemical stability. Anthracene was selected as the model PAH compound to explore the gasification mechanism of coal in supercritical water. The experimental parameters investigated with autoclaves were within the following ranges: temperature, 600–750 °C; residence time, 5–30 min; and pressure, 23–25 MPa. The main gas products were H 2 and CO 2 . The liquid intermediates were analyzed by gas chromatography–mass-selective detection (GC-MSD) for qualitative analysis and quantitative analysis, respectively. Benzene and naphthalene were found to be relatively stable compounds in the liquid products. Effective catalyst and appropriate temperature were obtained to enhance the gasification process.

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Available abstract

Char conversion is the rate-determining step for coal gasification in supercritical water, because the main components of char are polycyclic aromatic hydrocarbons (PAHs) with chemical stability. Anthracene was selected as the model PAH compound to explore the gasification mechanism of coal in supercritical water. The experimental parameters investigated with autoclaves were within the following ranges: temperature, 600–750 °C; residence time, 5–30 min; and pressure, 23–25 MPa. The main gas products were H 2 and CO 2 . The liquid intermediates were analyzed by gas chromatography–mass-selective detection (GC-MSD) for qualitative analysis and quantitative analysis, respectively. Benzene and naphthalene were found to be relatively stable compounds in the liquid products. Effective catalyst and appropriate temperature were obtained to enhance the gasification process.

Key concepts: Supercritical fluid, Anthracene, Char, Naphthalene, Chemistry, Supercritical water oxidation, Coal, Coal gasification

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