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MODELING AND SIMULATION OF BIOMASS PYROLYSIS AND GASIFICATION PROCESSES

合成气 木材气体发生器 生物量(生态学) 环境科学 可再生能源 废物管理 生物燃料 木质纤维素生物量 工艺工程 化石燃料 温室气体 燃烧 天然气 替代天然气 生物炭 热解 工程类 化学 生态学 海洋学 电气工程 有机化学 生物 地质学
作者
Pedro Maldonado,Giane Gonçalves Lenzi,Hélder Gomes,Paulo Brito
出处
期刊:International Multidisciplinary Scientific GeoConference SGEM .. 卷期号:22: 567-574
标识
DOI:10.5593/sgem2022v/4.2/s17.71
摘要

For many years, oil derivatives, natural coal, and natural gas were used and still are, as primary energy supply due to their calorific potential, and their great availability on the planet. However, the utilization of these feedstocks causes greenhouse effects and helped in global warming, creating a general concern about this issue, and leading to the creation of urgent measures to overcome these problems. Hence, guidelines and public policies were granted to guarantee the reduction of emissions and increase the portion of renewable sources in the energy system production, namely the use of biofuels produced from waste biomass such as straw, stover, husks, and shells. Thermochemical processes can convert biomass sources into energy and/or fuels with a high heating value through high-temperature treatments. It comprises combustion, pyrolysis and gasification, which can be employed together or separated, depending on the need. The product of gasification is Synthesis Gas, comprehended mainly by hydrogen gas and carbon monoxide, which can be used posteriorly to produce electric energy. In this process, many parameters as temperature, pressure, gasifying agent, biomass composition, gasifier configuration, etc, influence the final composition of the gas. A challenge to show the feasibility of Syngas production is trying to know the conversion yields and its composition to evaluate the efficiency of the process. Simulating Software helps in this task, bringing real processes closer to virtual ones. Through UniSim Design software, this work main objective is the creation and implementation of a hybrid model (Kinetic and Equilibrium approaches) able to predict the lignocellulosic biomass gasification products for Downdraft and Updraft gasifiers, using different sources such as olive and corn agricultural wastes, and grape bagasse residue from wine culture.
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