Alkali metal release in thermochemical conversion of biomass and coal: Optical measurements and modeling

IF 32 1区 工程技术 Q1 ENERGY & FUELS
Zhihua Wang , Siyu Liu , Wubin Weng , Yong He , Marcus Aldén , Zhongshan Li
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引用次数: 0

Abstract

Alkali metals, mainly K and Na, which are present in solid fuels such as biomass and coal, play an important role during their thermal conversion, e.g., in combustion or gasification. At high temperatures, alkali elements will be released in gas phase as alkali atoms, alkali chlorides, alkali hydroxides and alkali sulphates. In biomass/coal-fired boilers, the release of these alkali species can cause problems such as corrosion, slagging and fouling, threatening the safe operation of the facilities. The information on the release dynamic is important for developing proper models for alkali metal transformation in solid fuel combustion and gasification. Therefore, accurate quantitative measurements of the release of different alkali species during thermal-chemical conversion processes of biomass/coal are important. In this paper, we review literatures published over the last few decades in the field of quantitative optical measurements of alkali metals performed in combustion/gasification processes, and the release modeling based on those optical measurements. Firstly, the current situation of biomass and coal utilization is discussed, including the speciation of alkali metals in biomass/coal and their adverse effects on facilities. Secondly, requirements for optical measurements as well as several quantitative optical techniques are introduced including the general principles, typical setups, calibration methods and major advantages and drawbacks. In contrast to off-line techniques, these optical techniques provide nonintrusive measurements with high temporal and spatial resolution, which are indispensable for alkali release modeling. Furthermore, the alkali release behaviors based on optical measurements in thermochemical conversion processes are discussed. Based on the experimental results, the kinetic data for alkali release were summarized. Alkali release modeling was fulfilled relying on the knowledge of alkali release mechanisms and the kinetic data. In addition, simulations of alkali metal release with computational fluid dynamics during the biomass/coal combustion processes are also discussed, providing valuable information for industrial processes. Finally, typical examples of industrial applications of optical measurement methods in solid fuel thermochemical conversion processes as well as waste incineration and other processes are presented.

生物质和煤热化学转化中的碱金属释放:光学测量和建模
存在于诸如生物质和煤等固体燃料中的碱金属,主要是K和Na,在它们的热转化过程中,例如在燃烧或气化过程中起着重要作用。在高温下,碱元素会以碱原子、碱氯化物、碱氢氧化物和碱硫酸盐的形式在气相中释放出来。在生物质/燃煤锅炉中,这些碱种的释放会引起腐蚀、结渣和结垢等问题,威胁到设施的安全运行。有关释放动力学的信息对于建立固体燃料燃烧和气化过程中碱金属转化的适当模型具有重要意义。因此,在生物质/煤的热化学转化过程中,准确定量地测量不同碱种的释放是很重要的。本文综述了近几十年来在燃烧/气化过程中碱金属定量光学测量以及基于这些光学测量的释放建模方面发表的文献。首先,讨论了生物质和煤炭利用的现状,包括生物质/煤炭中碱金属的形态及其对设施的不利影响。其次,介绍了光学测量的要求和几种定量光学技术,包括一般原理、典型装置、校准方法和主要优缺点。与离线技术相比,这些光学技术提供了高时间和空间分辨率的非侵入性测量,这对于碱释放建模是必不可少的。此外,还讨论了热化学转化过程中基于光学测量的碱释放行为。根据实验结果,总结了碱释放的动力学数据。利用碱释放机理知识和动力学数据完成碱释放建模。此外,还讨论了生物质/煤燃烧过程中碱金属释放的计算流体动力学模拟,为工业过程提供了有价值的信息。最后,给出了光学测量方法在固体燃料热化学转化过程以及垃圾焚烧等过程中的工业应用的典型实例。
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来源期刊
Progress in Energy and Combustion Science
Progress in Energy and Combustion Science 工程技术-工程:化工
CiteScore
59.30
自引率
0.70%
发文量
44
审稿时长
3 months
期刊介绍: Progress in Energy and Combustion Science (PECS) publishes review articles covering all aspects of energy and combustion science. These articles offer a comprehensive, in-depth overview, evaluation, and discussion of specific topics. Given the importance of climate change and energy conservation, efficient combustion of fossil fuels and the development of sustainable energy systems are emphasized. Environmental protection requires limiting pollutants, including greenhouse gases, emitted from combustion and other energy-intensive systems. Additionally, combustion plays a vital role in process technology and materials science. PECS features articles authored by internationally recognized experts in combustion, flames, fuel science and technology, and sustainable energy solutions. Each volume includes specially commissioned review articles providing orderly and concise surveys and scientific discussions on various aspects of combustion and energy. While not overly lengthy, these articles allow authors to thoroughly and comprehensively explore their subjects. They serve as valuable resources for researchers seeking knowledge beyond their own fields and for students and engineers in government and industrial research seeking comprehensive reviews and practical solutions.
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