汪来松, 宋云彩, 冯杰, 李文英. 生物质中碱/碱土金属在共气化过程中的作用机制研究进展[J]. 煤炭学报, 2021, 46(S1): 495-502. DOI: 10.13225/j.cnki.jccs.2020.1061
引用本文: 汪来松, 宋云彩, 冯杰, 李文英. 生物质中碱/碱土金属在共气化过程中的作用机制研究进展[J]. 煤炭学报, 2021, 46(S1): 495-502. DOI: 10.13225/j.cnki.jccs.2020.1061
WANG Laisong, SONG Yuncai, FENG Jie, LI Wenying. Role of alkali and alkaline earth metals in co-gasification of biomass and coal[J]. Journal of China Coal Society, 2021, 46(S1): 495-502. DOI: 10.13225/j.cnki.jccs.2020.1061
Citation: WANG Laisong, SONG Yuncai, FENG Jie, LI Wenying. Role of alkali and alkaline earth metals in co-gasification of biomass and coal[J]. Journal of China Coal Society, 2021, 46(S1): 495-502. DOI: 10.13225/j.cnki.jccs.2020.1061

生物质中碱/碱土金属在共气化过程中的作用机制研究进展

Role of alkali and alkaline earth metals in co-gasification of biomass and coal

  • 摘要: 因在CO2减排、固定碳转化率提高以及焦油含量降低等方面的显著表现,煤与生物质共气化技术得到普遍关注。揭示生物质及生物质中的碱/碱土金属在煤气化反应中的作用和规律,是煤与生物质共气化技术应用推广的前提,对共气化过程中的协同效应问题进行了讨论,综述了碱/碱土金属对协同效应的影响。首先分析了生物质热转化过程中碱/碱土金属的挥发释放机制,归纳整理了温度、气氛、无机矿物质等对碱/碱土金属释放的影响,并对生物质与煤共气化过程中钾的迁移规律进行了总结;其次阐述了煤与生物质因化学组成和结构差异引起的物质传递及由此产生的协同作用机制,包括共热解过程中生物质氢转移稳定煤热解产生的分子碎片结构、生物质热解放热促进煤的低温热分解和混合焦气化过程中的碱金属钾钠及碱土金属钙镁的迁移催化作用及失活机制,并比较了原料共热解过程中的相互作用和混合焦气化过程中的相互作用对焦气化反应性影响的大小;然后介绍了气化过程中碱/碱土金属与硫物种之间可能发生的反应,钙对硫的捕获作用最强,其次是钾,但是它们的可获得性依赖于物料中Si, Al和Cl元素的量;最后结合当前应用研究方面存在的问题,提出了生物质中碱/碱土金属释放、控制及催化作用研究的建议,从而为共气化过程中碱/碱土金属的变害为利提供一定的理论基础。

     

    Abstract: The co-gasification technology of coal and biomass has attracted a widespread attention because of its remarkable performance in CO2 emissions reduction, improving carbon reactivity and reducing tar content in gas production.The revelation of the role and rules of biomass and alkali and alkaline earth metals in biomass is the premise for the application and promotion of coal and biomass co-gasification technology.In this paper, the synergy in the co-gasification process is discussed, and the influence of alkali and alkaline earth metals on the synergy is reviewed.The release mechanism of alkali and alkaline earth metals during the thermal conversion of biomass is discussed.The influence of temperature, atmosphere, inorganic minerals etc.on the release of alkali and alkaline earth metals is summarized and the migration paths of potassium during the process of co-gasification of biomass and coal are described in detail.It focuses on the material transfer caused by the difference in the chemical composition and structure between coal and biomass and the resulting synergetic mechanism, including the hydrogen transfer of biomass to stabilize the structure of molecular fragments produced by coal pyrolysis, the heat of biomass thermal decomposition to promote the low-temperature thermal decomposition of coal, and the alkali metals, such as potassium, sodium and alkaline earth metals, calcium and magnesium etc.catalysis and deactivation mechanism during the gasification process of mixed chars.The influence of the interaction in the process of co-pyrolysis of raw materials and co-gasification of mixed char on the gasification reactivity of char is compared.The possible reactions between alkali and alkaline earth metals and sulfur species in the gasification process are introduced.Calcium has the strongest capture effect on sulfur, followed by potassium, but their availability depends on the amount of Si, Al and Cl elements in the material.Lastly, combined with the existing problems in the applied basic research, some suggestions are proposed for the investigation regarding the release, control and catalysis of alkali and alkaline earth metals in biomass, which would provide a theoretical basis for the alkali and alkaline earth metals to turn harm into advantage.

     

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