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Syngas Composition: Gasification of Wood Pellet with Water Steam through a Reactor with Continuous Biomass Feed System

机译:合成气组成:通过具有连续生物量进料系统的反应器,用水蒸汽气化木颗粒的气化

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摘要

Investigations were performed in relation to the thermal gasification of wood granulate using steam in an allothermal reactor with electric heaters. They studied the impact of the temperature inside the reactor and the steam flow rate on the percentage shares of H2, CH4, CO, and CO2 in synthesis gas and on the calorific value of syngas. The tests were conducted at temperatures inside the reactor equal to 750, 800, and 850 °C and with a steam flow rate equal to 10.0, 15.0, and 20.0 kg∙h−1. The intensity of gasified biomass was 20 kg∙h−1. A significant impact of the temperature on the percentages of all the components of synthesis gas and a significant impact of the steam flow rate on the content of hydrogen and carbon dioxide in syngas were found. The highest percentage of hydrogen obtained was 43.3%. The calorific value of the gas depended significantly on the temperature inside the reactor and the correlation between the temperature and the steam flow rate. Its maximum value was 13.3 MJ∙m−3 at 800 °C. This paper also includes an assessment of the mutual correlations of the percentage shares of the individual synthesis gas components.
机译:在用电加热器中使用蒸汽的蒸汽在木颗粒的热气化方面进行研究。他们研究了反应器内部温度和蒸汽流速对合成气中H2,CH4,CO和CO2百分比的影响以及合成气的热值。测试在反应器内的温度等于750,800和850℃的温度下进行,蒸汽流速等于10.0,15.0和20.0kg∙H-1。气化生物质的强度为20kg∙H-1。发现对合成气体所有组分的百分比和蒸汽流速对合成气中的氢气和二氧化碳含量的显着影响的影响的显着影响。所得氢的最高率为43.3%。气体的热值显着依赖于反应器内的温度和温度与蒸汽流速之间的相关性。其最大值为800°C,最大值为13.3 MJ∙M-3。本文还包括评估各种合成气体成分的百分比份额的互相关性。

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