Updraft Gasifiers

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Eliseo Ranzi - One of the best experts on this subject based on the ideXlab platform.

  • Multi-scale Kinetic Modeling and Experimental Investigation of Syngas Production from Coal Gasification in Updraft Gasifiers
    Energy & Fuels, 2015
    Co-Authors: Michele Corbetta, Andrea Bassani, Flavio Manenti, Carlo Pirola, Enrico Maggio, Alberto Pettinau, Paolo Deiana, Sauro Pierucci, Eliseo Ranzi
    Abstract:

    Gasification is a thermochemical process devoted to the production of syngas, starting from a solid fuel such as coal, biomass, or refuse-derived fuel (RDF). The gasification efficiency and the chemical composition of the produced syngas are strongly affected by the feedstock and the operating conditions of the process. Besides the direct use as a fuel for power generation, downstream applications of syngas for chemical production demand specific H2/CO ratios, as extensively reported in the literature. For this reason, in the present work, a comprehensive mechanistic approach is applied to the description of the coal gasification process, highlighting the sensitivity of key operating parameters on syngas quality. The solution of this multi-scale, multi-phase, and multi-component problem requires careful attention to the kinetics in the solid and the gas phase as well as the heterogeneous gas–solid reactions. The kinetic model is validated with experimental data obtained in Updraft Gasifiers (including the...

  • Multi-scale kinetic modeling and experimental investigation of syngas production from coal gasification in Updraft Gasifiers
    'American Chemical Society (ACS)', 2015
    Co-Authors: Michele Corbetta, Andrea Bassani, Flavio Manenti, Carlo Pirola, Enrico Maggio, Alberto Pettinau, Paolo Deiana, Sauro Pierucci, Eliseo Ranzi
    Abstract:

    Gasification is a thermochemical process devoted to the production of syngas, starting from a solid fuel such as coal, biomass, or refuse-derived fuel (RDF). The gasification efficiency and the chemical composition of the produced syngas are strongly affected by the feedstock and the operating conditions of the process. Besides the direct use as a fuel for power generation, downstream applications of syngas for chemical production demand specific H2/CO ratios, as extensively reported in the literature. For this reason, in the present work, a comprehensive mechanistic approach is applied to the description of the coal gasification process, highlighting the sensitivity of key operating parameters on syngas quality. The solution of this multi-scale, multi-phase, and multi-component problem requires careful attention to the kinetics in the solid and the gas phase as well as the heterogeneous gas-solid reactions. The kinetic model is validated with experimental data obtained in Updraft Gasifiers (including the Sotacarbo pilot gasification plant), and the catalytic effects of ash on the reactivity of low-rank coals are also addressed and quantified

Michele Corbetta - One of the best experts on this subject based on the ideXlab platform.

  • Multi-scale Kinetic Modeling and Experimental Investigation of Syngas Production from Coal Gasification in Updraft Gasifiers
    Energy & Fuels, 2015
    Co-Authors: Michele Corbetta, Andrea Bassani, Flavio Manenti, Carlo Pirola, Enrico Maggio, Alberto Pettinau, Paolo Deiana, Sauro Pierucci, Eliseo Ranzi
    Abstract:

    Gasification is a thermochemical process devoted to the production of syngas, starting from a solid fuel such as coal, biomass, or refuse-derived fuel (RDF). The gasification efficiency and the chemical composition of the produced syngas are strongly affected by the feedstock and the operating conditions of the process. Besides the direct use as a fuel for power generation, downstream applications of syngas for chemical production demand specific H2/CO ratios, as extensively reported in the literature. For this reason, in the present work, a comprehensive mechanistic approach is applied to the description of the coal gasification process, highlighting the sensitivity of key operating parameters on syngas quality. The solution of this multi-scale, multi-phase, and multi-component problem requires careful attention to the kinetics in the solid and the gas phase as well as the heterogeneous gas–solid reactions. The kinetic model is validated with experimental data obtained in Updraft Gasifiers (including the...

  • Multi-scale kinetic modeling and experimental investigation of syngas production from coal gasification in Updraft Gasifiers
    'American Chemical Society (ACS)', 2015
    Co-Authors: Michele Corbetta, Andrea Bassani, Flavio Manenti, Carlo Pirola, Enrico Maggio, Alberto Pettinau, Paolo Deiana, Sauro Pierucci, Eliseo Ranzi
    Abstract:

    Gasification is a thermochemical process devoted to the production of syngas, starting from a solid fuel such as coal, biomass, or refuse-derived fuel (RDF). The gasification efficiency and the chemical composition of the produced syngas are strongly affected by the feedstock and the operating conditions of the process. Besides the direct use as a fuel for power generation, downstream applications of syngas for chemical production demand specific H2/CO ratios, as extensively reported in the literature. For this reason, in the present work, a comprehensive mechanistic approach is applied to the description of the coal gasification process, highlighting the sensitivity of key operating parameters on syngas quality. The solution of this multi-scale, multi-phase, and multi-component problem requires careful attention to the kinetics in the solid and the gas phase as well as the heterogeneous gas-solid reactions. The kinetic model is validated with experimental data obtained in Updraft Gasifiers (including the Sotacarbo pilot gasification plant), and the catalytic effects of ash on the reactivity of low-rank coals are also addressed and quantified

Alberto Pettinau - One of the best experts on this subject based on the ideXlab platform.

  • Multi-scale Kinetic Modeling and Experimental Investigation of Syngas Production from Coal Gasification in Updraft Gasifiers
    Energy & Fuels, 2015
    Co-Authors: Michele Corbetta, Andrea Bassani, Flavio Manenti, Carlo Pirola, Enrico Maggio, Alberto Pettinau, Paolo Deiana, Sauro Pierucci, Eliseo Ranzi
    Abstract:

    Gasification is a thermochemical process devoted to the production of syngas, starting from a solid fuel such as coal, biomass, or refuse-derived fuel (RDF). The gasification efficiency and the chemical composition of the produced syngas are strongly affected by the feedstock and the operating conditions of the process. Besides the direct use as a fuel for power generation, downstream applications of syngas for chemical production demand specific H2/CO ratios, as extensively reported in the literature. For this reason, in the present work, a comprehensive mechanistic approach is applied to the description of the coal gasification process, highlighting the sensitivity of key operating parameters on syngas quality. The solution of this multi-scale, multi-phase, and multi-component problem requires careful attention to the kinetics in the solid and the gas phase as well as the heterogeneous gas–solid reactions. The kinetic model is validated with experimental data obtained in Updraft Gasifiers (including the...

  • Multi-scale kinetic modeling and experimental investigation of syngas production from coal gasification in Updraft Gasifiers
    'American Chemical Society (ACS)', 2015
    Co-Authors: Michele Corbetta, Andrea Bassani, Flavio Manenti, Carlo Pirola, Enrico Maggio, Alberto Pettinau, Paolo Deiana, Sauro Pierucci, Eliseo Ranzi
    Abstract:

    Gasification is a thermochemical process devoted to the production of syngas, starting from a solid fuel such as coal, biomass, or refuse-derived fuel (RDF). The gasification efficiency and the chemical composition of the produced syngas are strongly affected by the feedstock and the operating conditions of the process. Besides the direct use as a fuel for power generation, downstream applications of syngas for chemical production demand specific H2/CO ratios, as extensively reported in the literature. For this reason, in the present work, a comprehensive mechanistic approach is applied to the description of the coal gasification process, highlighting the sensitivity of key operating parameters on syngas quality. The solution of this multi-scale, multi-phase, and multi-component problem requires careful attention to the kinetics in the solid and the gas phase as well as the heterogeneous gas-solid reactions. The kinetic model is validated with experimental data obtained in Updraft Gasifiers (including the Sotacarbo pilot gasification plant), and the catalytic effects of ash on the reactivity of low-rank coals are also addressed and quantified

Andrea Bassani - One of the best experts on this subject based on the ideXlab platform.

  • Multi-scale Kinetic Modeling and Experimental Investigation of Syngas Production from Coal Gasification in Updraft Gasifiers
    Energy & Fuels, 2015
    Co-Authors: Michele Corbetta, Andrea Bassani, Flavio Manenti, Carlo Pirola, Enrico Maggio, Alberto Pettinau, Paolo Deiana, Sauro Pierucci, Eliseo Ranzi
    Abstract:

    Gasification is a thermochemical process devoted to the production of syngas, starting from a solid fuel such as coal, biomass, or refuse-derived fuel (RDF). The gasification efficiency and the chemical composition of the produced syngas are strongly affected by the feedstock and the operating conditions of the process. Besides the direct use as a fuel for power generation, downstream applications of syngas for chemical production demand specific H2/CO ratios, as extensively reported in the literature. For this reason, in the present work, a comprehensive mechanistic approach is applied to the description of the coal gasification process, highlighting the sensitivity of key operating parameters on syngas quality. The solution of this multi-scale, multi-phase, and multi-component problem requires careful attention to the kinetics in the solid and the gas phase as well as the heterogeneous gas–solid reactions. The kinetic model is validated with experimental data obtained in Updraft Gasifiers (including the...

  • Multi-scale kinetic modeling and experimental investigation of syngas production from coal gasification in Updraft Gasifiers
    'American Chemical Society (ACS)', 2015
    Co-Authors: Michele Corbetta, Andrea Bassani, Flavio Manenti, Carlo Pirola, Enrico Maggio, Alberto Pettinau, Paolo Deiana, Sauro Pierucci, Eliseo Ranzi
    Abstract:

    Gasification is a thermochemical process devoted to the production of syngas, starting from a solid fuel such as coal, biomass, or refuse-derived fuel (RDF). The gasification efficiency and the chemical composition of the produced syngas are strongly affected by the feedstock and the operating conditions of the process. Besides the direct use as a fuel for power generation, downstream applications of syngas for chemical production demand specific H2/CO ratios, as extensively reported in the literature. For this reason, in the present work, a comprehensive mechanistic approach is applied to the description of the coal gasification process, highlighting the sensitivity of key operating parameters on syngas quality. The solution of this multi-scale, multi-phase, and multi-component problem requires careful attention to the kinetics in the solid and the gas phase as well as the heterogeneous gas-solid reactions. The kinetic model is validated with experimental data obtained in Updraft Gasifiers (including the Sotacarbo pilot gasification plant), and the catalytic effects of ash on the reactivity of low-rank coals are also addressed and quantified

Flavio Manenti - One of the best experts on this subject based on the ideXlab platform.

  • Multi-scale Kinetic Modeling and Experimental Investigation of Syngas Production from Coal Gasification in Updraft Gasifiers
    Energy & Fuels, 2015
    Co-Authors: Michele Corbetta, Andrea Bassani, Flavio Manenti, Carlo Pirola, Enrico Maggio, Alberto Pettinau, Paolo Deiana, Sauro Pierucci, Eliseo Ranzi
    Abstract:

    Gasification is a thermochemical process devoted to the production of syngas, starting from a solid fuel such as coal, biomass, or refuse-derived fuel (RDF). The gasification efficiency and the chemical composition of the produced syngas are strongly affected by the feedstock and the operating conditions of the process. Besides the direct use as a fuel for power generation, downstream applications of syngas for chemical production demand specific H2/CO ratios, as extensively reported in the literature. For this reason, in the present work, a comprehensive mechanistic approach is applied to the description of the coal gasification process, highlighting the sensitivity of key operating parameters on syngas quality. The solution of this multi-scale, multi-phase, and multi-component problem requires careful attention to the kinetics in the solid and the gas phase as well as the heterogeneous gas–solid reactions. The kinetic model is validated with experimental data obtained in Updraft Gasifiers (including the...

  • Multi-scale kinetic modeling and experimental investigation of syngas production from coal gasification in Updraft Gasifiers
    'American Chemical Society (ACS)', 2015
    Co-Authors: Michele Corbetta, Andrea Bassani, Flavio Manenti, Carlo Pirola, Enrico Maggio, Alberto Pettinau, Paolo Deiana, Sauro Pierucci, Eliseo Ranzi
    Abstract:

    Gasification is a thermochemical process devoted to the production of syngas, starting from a solid fuel such as coal, biomass, or refuse-derived fuel (RDF). The gasification efficiency and the chemical composition of the produced syngas are strongly affected by the feedstock and the operating conditions of the process. Besides the direct use as a fuel for power generation, downstream applications of syngas for chemical production demand specific H2/CO ratios, as extensively reported in the literature. For this reason, in the present work, a comprehensive mechanistic approach is applied to the description of the coal gasification process, highlighting the sensitivity of key operating parameters on syngas quality. The solution of this multi-scale, multi-phase, and multi-component problem requires careful attention to the kinetics in the solid and the gas phase as well as the heterogeneous gas-solid reactions. The kinetic model is validated with experimental data obtained in Updraft Gasifiers (including the Sotacarbo pilot gasification plant), and the catalytic effects of ash on the reactivity of low-rank coals are also addressed and quantified