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1.
J Air Waste Manag Assoc ; 57(12): 1447-51, 2007 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-18200929

RESUMO

This study investigated the reforming characteristics and optimum operating condition of the high-temperature plasma torch (so called plasmatron) for hydrogen-rich gas (syngas) production. At the optimum condition, the composition of produced syngas was 45.4% hydrogen (H2), 6.9% carbon monoxide (CO), 1.5% carbon dioxide (CO2), and 1.1% acetylene (C2H2). The H2/CO ratio was 6.6, hydrogen yield was 78.8%, and the energy conversion rate was 63.6%. To obtain the optimum operating condition, parametric studies were carried out examining the effects of O2/CH4 ratio, steam/CH4 ratio, and Ni catalyst addition in reactor. When the steam/CH4 ratio was 1.23, the production of hydrogen was maximized and the methane conversion rate was 99.7%. The syngas composition was determined to be 50.4% H2, 5.7% CO, 13.8% CO2, and 1.1% C2H2. The H2/CO ratio was 9.7, hydrogen yield was 93.7%, and the energy conversion rate was 78.8%. Hydrogen production with catalyst was effective, compared with no catalyst.


Assuntos
Temperatura Alta , Hidrogênio/química , Metano/química , Fontes de Energia Bioelétrica , Catálise , Conservação de Recursos Energéticos , Eliminação de Resíduos , Vapor , Volatilização
2.
J Air Waste Manag Assoc ; 55(4): 430-6, 2005 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-15887886

RESUMO

The purpose of this study was to develop a technology that can convert biogas to synthesis gas (SynGas), a low-emission substituted energy, using a non-thermal-pulsed plasma method. To investigate the characteristics of SynGas production from simulated biogas, the reforming characteristics in relation to variations in pulse frequency, biogas component ratio (C3H8/CO2), vapor flow ratio (H2O/total flow rate [TFR]), biogas velocity, and pulse power were studied. A maximum conversion rate of 49.1% was achieved for the biogas when the above parameters were 500 Hz, 1.5, 0.52, 0.32 m/sec, and 657 W, respectively. Under the above conditions, the dry basis mole fractions of the SynGas were as follows: H2 = 0.645, CH4 = 0.081, C2H2 = 0.067, C3H6 = 0.049, CO = 0.008 and C2H4 = 0.004. The ratio of hydrogen to the other intermediates in the SynGas (H2/ITMs) was 3.1.


Assuntos
Fontes de Energia Bioelétrica , Conservação de Recursos Energéticos , Eliminação de Resíduos/métodos , Bactérias Anaeróbias , Reatores Biológicos , Indústria Alimentícia , Temperatura , Volatilização
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