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Development of Pressurized Fluidized Bed Combustion Boiler

机译:加压流化床燃烧锅炉的研制

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Various kinds of combined cycle power generation system have been proposed for efficient use of abundant energy resource, coal. Pressurized fluidized bed combustion (PFBC) combined cycle system has the following features in general and has gotten much attention from Japanese utilities owing to its earlier practical use.1. High plant efficiency and low auxiliaries power consumption2. Low emission such as de-SO_x by in-bed desulfurization, minimizing NO_x by low combustion temperature and decreasing CO2 by high plant efficiency3. Compactness by eliminating flue gas desulfurization equipment and reducing the equipment size due to less volume of pressurized air/gasDevelopment of PFBC system started in England in 1960s and it was taken over by ASEA (later ABB). Three plants were installed by ABB carbon in 1989 and 1990. One in Sweden which consists of two PFBC boilers/gas turbines and one steam turbine is a commercial cogeneration plant supplying 135MW electricity and 224MW hot water. The others installed in USA and Spain are demonstration plants with electric output of 70MW and 79MW respectively.In Japan, the first PFBC plant was installed at Wakamatsu Coal Utilization Research Center of Electric Power Development Co., Ltd. with government support and its demonstration operation has already commenced since the end of 1994. Construction of commercial plant has also started.Ishikawajima-Harima Heavy Industries Co., Ltd. (IHI) delivered Wakamatsu PFBC boiler under the technical license from ABB carbon with various new technologies incorporated to realize better performance in efficiency, emission and operationability required in Japan. Its main specific features are as follows.-Combination with the existing steam turbine having ultra-high steam temperature, 593/593 deg C.-The first PFBC boiler with reheater-Additional environmental equipment, such as ceramic tube filter and selective catalytic reductionThis paper summarizes the feature of PFBC system, IHI's development of PFBC and the outline of Wakamatsu PFBC plant with its operation experience. Further considerations for PFBC now such as confirmation of long term operation reliability, combustion of various kinds of coal and increase of performance are also discussed.
机译:已经提出了各种联合循环发电系统,以有效利用丰富的能源煤炭。加压流化床燃烧(PFBC)联合循环系统总体上具有以下特点,并且由于其较早的实际应用而受到了日本公用事业的关注。1。设备效率高,辅助设备功耗低2。床内脱硫等低排放物,例如SO-x,低燃烧温度可将NO_x降至最低,高工厂效率可减少CO23。通过减少烟气脱硫设备和减少压缩空气/气体的体积来减小设备的紧凑性PFBC系统的开发始于1960年代的英格兰,并由ASEA(后来的ABB)接管。 ABB Carbon在1989年和1990年安装了三座电厂。在瑞典,其中一台由两台PFBC锅炉/燃气轮机和一台蒸汽轮机组成,是一家商业热电联产电厂,提供135MW的电力和224MW的热水。在美国和西班牙安装的其他设备分别是发电量分别为70MW和79MW的示范工厂。在日本,在政府的支持下,第一台PFBC工厂在电力开发有限公司的若松煤炭利用研究中心安装并进行了示范运行。自1994年底以来已经开始。商业工厂的建设也已经开始。石川岛播磨重工有限公司(IHI)根据ABB Carbon的技术许可交付了Wakamatsu PFBC锅炉,并结合了各种新技术以实现更好的性能。在日本需要的效率,排放和可操作性方面。其主要特点如下:-与现有的具有593/593℃超高蒸汽温度的蒸汽轮机结合-第一台带有再热器的PFBC锅炉-其他环境设备,例如陶瓷管过滤器和选择性催化还原技术总结了PFBC系统的功能,IHI PFBC的发展以及Wakamatsu PFBC工厂的概况以及其运行经验。现在还讨论了PFBC的其他考虑因素,例如确定长期运行的可靠性,各种煤的燃烧和性能的提高。

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