Establishment of correlation between reaction kinetics and carbon structures in the char gasification process

IF 6.4 3区 环境科学与生态学 Q2 ENERGY & FUELS Carbon Resources Conversion Pub Date : 2023-06-01 DOI:10.1016/j.crcon.2023.02.002
Zefeng Ge , Xi Cao , Zhenting Zha , Yuna Ma , Mingxun Zeng , Yuqing Wu , Zenghui Hou , Huiyan Zhang
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引用次数: 4

Abstract

For a gasification process, the char-CO2 gasification is the controlling step worthwhile to be deeply investigated. The article chosen corn stalk (CS), poplar sawdust (PS) and bagasse residue (BR) as the typical waste species derived from agricultural, forestal and industrial sources. The char-CO2 gasification behavior, reaction kinetics and carbon structure were studied to reveal the intrinsic factors determining the reaction kinetics. Generally, the carbon conversion and maximum conversion rate were influenced by the feedstocks species and char preparation temperatures, as influenced by ash proportion, potassium content in ash and carbon structure of char. The char-CO2 reaction for CS was subject more to the catalytic effect of alkali compositions, while pore structure affected more the gasification reaction for PS char. The isoconversional kinetic analysis indicated that the gasification reaction became stable at carbon conversion of 0.5. Subsequently, sectionalized kinetic parameters were calculated for the initial gasification temperature to the temperature reaching 50% conversion. The result showed that high initial gasification temperature increased the char-CO2 gasification barrier to hardly start the reaction but accelerate the reaction rate. The carbon structure analyses further clarified that the reaction activation energy was highly related to the microcrystalline structure of carbon, while the reaction rate was more determined by carbon pore structure.

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煤焦气化反应动力学与碳结构相关性的建立
对于一个气化过程,炭- co2气化是值得深入研究的控制步骤。本文选取玉米秸秆(CS)、杨木锯末(PS)和甘蔗渣(BR)作为典型的农业、林业和工业废弃物。通过对炭- co2气化行为、反应动力学和碳结构的研究,揭示了影响反应动力学的内在因素。炭的碳转化率和最大转化率受原料种类、制炭温度、灰分比例、灰分中钾含量和炭的碳结构等因素的影响。CS炭- co2反应主要受碱组分的催化作用,而PS炭的气化反应主要受孔结构的影响。等转化动力学分析表明,在碳转化率为0.5时,气化反应趋于稳定。随后,计算了初始气化温度至转化率达到50%温度的分段动力学参数。结果表明,较高的初始气化温度增加了炭- co2气化障碍,使反应难以启动,但加快了反应速率。碳的结构分析进一步阐明了反应活化能与碳的微晶结构高度相关,而反应速率更多地取决于碳的孔隙结构。
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来源期刊
Carbon Resources Conversion
Carbon Resources Conversion Materials Science-Materials Science (miscellaneous)
CiteScore
9.90
自引率
11.70%
发文量
36
审稿时长
10 weeks
期刊介绍: Carbon Resources Conversion (CRC) publishes fundamental studies and industrial developments regarding relevant technologies aiming for the clean, efficient, value-added, and low-carbon utilization of carbon-containing resources as fuel for energy and as feedstock for materials or chemicals from, for example, fossil fuels, biomass, syngas, CO2, hydrocarbons, and organic wastes via physical, thermal, chemical, biological, and other technical methods. CRC also publishes scientific and engineering studies on resource characterization and pretreatment, carbon material innovation and production, clean technologies related to carbon resource conversion and utilization, and various process-supporting technologies, including on-line or off-line measurement and monitoring, modeling, simulations focused on safe and efficient process operation and control, and process and equipment optimization.
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Outside Front Cover Outside Back Cover Developments and challenges on enhancement of photocatalytic CO2 reduction through photocatalysis Outside Front Cover Outside Back Cover
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