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Comparative Techno-Economic and Exergetic Analysis of Circulating and Dual Bed Biomass Gasification Systems

Pablo Silva Ortiz, Simon Maier, Ralph‐Uwe Dietrich, Adriano Pinto Mariano, Rubens Maciel Filho, John A. Posada

2021Frontiers in Chemical Engineering19 citationsDOIOpen Access PDF

Abstract

In this work, the techno-economic and exergy analyses of two gasification technologies with integration into heat and power combined cycles are presented: i). Circulating fluidized bed (CFB) and ii). Dual fluidized bed (DFB) systems. As feedstock, lignocellulosic biomass (sugarcane bagasse, SCB) was considered . The gasification process of the fluidized-bed systems (circulating and dual bed) and the syngas conversion were performed using Aspen Plus ® software. The process design includes biomass drying and gasification, syngas cleaning, combustion, power generation, and heat recovery. The SCB-DFB system has the lowest irreversibility rate and, as a result, the highest overall performance and power generation (achieving 32% in the gasification system and 53% of exergy efficiency when coupled with the combined cycle). From the techno-economic assessment, the SCB-DFB system has the lowest total production costs per unit of energy. Hence, the dual fluidized bed systems could be a more competitive technology for the agro-industrial sector to generate power from lignocellulosic materials.

Topics & Concepts

Fluidized bedExergySyngasFluidized bed combustionBiomass (ecology)Exergy efficiencyProcess engineeringEnvironmental scienceWaste managementBagasseRaw materialCombustionChemical looping combustionProcess integrationIntegrated gasification combined cycleElectricity generationEngineeringPulp and paper industryPower (physics)ChemistryPhysicsOrganic chemistryHydrogenQuantum mechanicsOceanographyGeologyThermochemical Biomass Conversion ProcessesBiofuel production and bioconversionProcess Optimization and Integration
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