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Towards a comprehensive thermodynamic database for ash-forming elements in biomass and waste combustion ?Current situation and future developments

机译:建立用于生物质和废物燃烧中灰分形成元素的综合热力学数据库?现状和未来发展

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Thermodynamic modeling is used as a tool to predict the chemistry of ash-forming elements in biomass and waste combustion for corrosion- or deposition-related issues. One major limitation is the lack of comprehensive databases that contain the thermodynamic data of ash compounds and phases formed during combustion. The present paper is a review of the state-of-the-art of the thermodynamic models and databases for ashes of biomass and waste combustion, future developments and the coupling of thermodynamic modeling with modeling of physical properties of molten ash. Recent developments have improved the accuracy for predicting the phase equilibria of alkali salt mixtures. The databases are being expanded by taking into account Ca, Pb, and Zn in the salt mixtures. Chromates have also been included to predict the stabilities of the corrosion products on boiler heat exchanger materials. The thermodynamic data for silicate systems still lack data for critical subsystems for biomass ashes. The K2O-CaO-SiO2 system which is important for slagging and agglomeration in biomass combustion still needs experimental investigations to make accurate modeling possible. The thermodynamic data of phosphates are discussed and a new modeling approach for molten phosphates is shown for the K2O-P2O5 system. Models for predicting physical properties coupled with the thermodynamic functions of molten silicates and salts are reviewed. Examples of advanced thermodynamic modeling to study ash-related issues in biomass combustion are also shown.
机译:热力学建模被用作预测与腐蚀或沉积相关的问题的生物质和废物燃烧中灰分形成元素化学性质的工具。一个主要的限制是缺乏综合的数据库,该数据库包含燃烧过程中形成的灰分化合物和相的热力学数据。本文综述了有关生物质灰分和废物燃烧的热力学模型和数据库的最新技术,未来的发展以及热力学模型与熔融灰分物理性质建模的耦合。最近的发展已经提高了预测碱金属盐混合物的相平衡的准确性。通过考虑盐混合物中的Ca,Pb和Zn来扩展数据库。还包括了铬酸盐,以预测锅炉热交换器材料上腐蚀产物的稳定性。硅酸盐系统的热力学数据仍然缺乏生物质灰分关键子系统的数据。 K2O-CaO-SiO2系统对于生物质燃烧中的结渣和结块很重要,但仍需要进行实验研究以使精确的建模成为可能。讨论了磷酸盐的热力学数据,并显示了用于K2O-P2O5系统的熔融磷酸盐的新建模方法。回顾了预测物理性质的模型以及熔融硅酸盐和盐的热力学函数。还显示了用于研究生物质燃烧中与灰有关的问题的高级热力学模型的示例。

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