Desulfurization characteristics of slaked lime and regulation optimization of CFB-FGD (circulating fluidized bed flue gas desulfurization) process—A combined experimental and numerical simulation study

IF 3.7 3区 工程技术 Q2 ENGINEERING, CHEMICAL Chinese Journal of Chemical Engineering Pub Date : 2024-09-01 DOI:10.1016/j.cjche.2024.05.017
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Abstract

Circulating fluidized bed flue gas desulfurization (CFB-FGD) process has been widely applied in recent years. However, high cost caused by the use of high-quality slaked lime and difficult operation due to the complex flow field are two issues which have received great attention. Accordingly, a laboratory-scale fluidized bed reactor was constructed to investigate the effects of physical properties and external conditions on desulfurization performance of slaked lime, and the conclusions were tried out in an industrial-scale CFB-FGD tower. After that, a numerical model of the tower was established based on computational particle fluid dynamics (CPFD) and two-film theory. After comparison and validation with actual operation data, the effects of operating parameters on gas–solid distribution and desulfurization characteristics were investigated. The results of experiments and industrial trials showed that the use of slaked lime with a calcium hydroxide content of approximately 80% and particle size greater than 40 μm could significantly reduce the cost of desulfurizer. Simulation results showed that the flow field in the desulfurization tower was skewed under the influence of circulating ash. We obtained optimal operating conditions of 7.5 kg·s−1 for the atomized water flow, 70 kg·s−1 for circulating ash flow, and 0.56 kg·s−1 for slaked lime flow, with desulfurization efficiency reaching 98.19% and the exit flue gas meeting the ultraclean emission and safety requirements. All parameters selected in the simulation were based on engineering examples and had certain application reference significance.

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消石灰的脱硫特性及 CFB-FGD 工艺的调节优化--实验与数值模拟相结合的研究
循环流化床烟气脱硫(CFB-FGD)工艺近年来得到了广泛应用。然而,使用高质量消石灰导致的高成本和复杂流场导致的操作困难这两个问题受到了极大关注。因此,研究人员建造了实验室规模的流化床反应器,研究了物理性质和外部条件对消石灰脱硫性能的影响,并在工业规模的 CFB-FGD 塔中进行了试验。随后,基于计算粒子流体动力学(CPFD)和双膜理论建立了塔的数值模型。在与实际运行数据进行对比和验证后,研究了运行参数对气固分布和脱硫特性的影响。实验和工业试验结果表明,使用氢氧化钙含量约为 80%、粒径大于 40 μm 的消石灰可以显著降低脱硫剂的成本。模拟结果表明,在循环灰的影响下,脱硫塔内的流场发生了偏斜。我们得到了雾化水流量为 7.5 kg-s-1、循环灰流量为 70 kg-s-1、消石灰流量为 0.56 kg-s-1 的最佳运行条件,脱硫效率达到 98.19%,出口烟气满足超净排放和安全要求。模拟中所有参数的选取均基于工程实例,具有一定的应用参考意义。
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来源期刊
Chinese Journal of Chemical Engineering
Chinese Journal of Chemical Engineering 工程技术-工程:化工
CiteScore
6.60
自引率
5.30%
发文量
4309
审稿时长
31 days
期刊介绍: The Chinese Journal of Chemical Engineering (Monthly, started in 1982) is the official journal of the Chemical Industry and Engineering Society of China and published by the Chemical Industry Press Co. Ltd. The aim of the journal is to develop the international exchange of scientific and technical information in the field of chemical engineering. It publishes original research papers that cover the major advancements and achievements in chemical engineering in China as well as some articles from overseas contributors. The topics of journal include chemical engineering, chemical technology, biochemical engineering, energy and environmental engineering and other relevant fields. Papers are published on the basis of their relevance to theoretical research, practical application or potential uses in the industry as Research Papers, Communications, Reviews and Perspectives. Prominent domestic and overseas chemical experts and scholars have been invited to form an International Advisory Board and the Editorial Committee. It enjoys recognition among Chinese academia and industry as a reliable source of information of what is going on in chemical engineering research, both domestic and abroad.
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