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Feasibility Study on Accessorial Limestone Injection Desulfurization System on Large Capacity Boiler

机译:大容量锅炉探测石灰岩注射脱硫系统的可行性研究

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Many large capacity boilers are facing the problems of desulfurization with the variation of coal quality received and small designed desulfurization capacity in current Wet Flue Gas Desulfurization(WFGD) system. WFGD capacity improving renovation is a high cost and long construction cycle project. Therefore, a proposal to add accessorial limestone injection desulfurization system without changing the current WFGD was investigated in this study. Laboratory experiments and pilot scale field tests on a 220t/h boiler were performed to certificate the possibility of adding accessorial limestone desulfurization system on large capacity boiler. Desulfurization efficiencies under different injection position, Ca/S ratio, the porosity structures of desulfurization agent, and boiler operating conditions were tested to obtain the optimal working conditions for limestone desulfurization in large capacity boiler; Ash composition, ash melting point, ash particle size distribution were also determined to evaluate the influence on heating surface of boiler corrosion, fouling, abrasion and boiler efficiency on a 660MW unit boiler after adding limestone injection system for security and economy concern. The results of this paper could provide reliable evidence and experiments data for the power plant to make overall consideration for adding accessorial limestone injection desulfurization system without changing the current WFGD system.
机译:许多大容量锅炉正面临脱硫的问题,随着煤炭质量的变化,当前湿烟气脱硫(WFGD)系统中的煤炭质量的变化和小型设计脱硫能力。 WFGD容量改进的翻新是一种高成本和长时间的建筑循环项目。因此,在本研究中研究了添加辅助石灰石注入脱硫系统而不改变目前WFGD的提议。执行220t / h锅炉的实验室实验和试验规模场测试,证明了在大容量锅炉上添加了辅料石灰石脱硫系统的可能性。在不同注射位置下的脱硫效率,测试Ca / S比,脱硫剂的孔隙率结构,以及锅炉操作条件,以获得大容量锅炉的石灰石脱硫的最佳工作条件;灰分成分,灰熔点,灰分粒度分布也被确定为评估锅炉腐蚀,污垢,磨损和锅炉效率的影响,在加入石灰石注射系统以进行安全性和经济关注后的660MW单位锅炉。本文的结果可以为电厂提供可靠的证据和实验数据,以便整体考虑添加辅助型石灰石注入脱硫系统而不改变当前的WFGD系统。

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