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POWER BOILER FUEL AUGMENTATION WITH A BIOMASS FIRED ATMOSPHERIC CIRCULATING FLUID BED GASIFIER

机译:用生物质燃烧的大气循环流化床气化器,电力锅炉燃料增强

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The successful experience in developing the advanced Foster Wheeler Atmospheric Circulating Fluidized Bed (ACFB) combustion system subsequently led to the development of the ACFB Gasification (ACFBG) Technology in the early 80*s. The driving force for the development work was the dramatic increase in oil price during this period. The primary advantage of the ACFBG technology is that it enables the substitution of expensive fuels (e.g. oil or gas) with cheaper solid fuels. Prior to this Lahti project, Foster Wheeler had supplied four waste wood fired commercial scale ACFBGs in the mid 80's to the pulp and paper industry with capacities from 17 - 35 MW{sub}th based on fuel input. These units are still in successful operation today. Lahden Lapooima Oy (LLOy) is a Finnish power company producing power and district heat for the City of Lahti. The company is jointly owned by the city of Lahti and by Fortum Oy, the largest utility power company in Finland. LLOy operates the Kymijavi Power Plant located nearby the city of Lahti in Southern Finland. To keep the energy prices as low as possible, Plant personnel are continuously looking for the most economical fuel sources, and simultaneously, trying to improve the environmental aspects of the energy production. Currently, about 300 GWh/a of different types of biofuels and refuse fuels are available in the Lahti area. On an annual basis, the available amount of biofuels and refuse fuels is enough to substitute for about 15 % of the fuels burned in the main boiler, equaling up to 30 % of the coal typically used. The aim of the LLOy Kymijavi Power Plant gasification project is a commercial scale demonstration of direct gasification of wet biofuel and the use of hot, raw and very low calorific gas directly in the existing coal fired boiler. The gasification of biofuels and co-combustion of gases in the existing coal-fired boiler offers many advantages such as: recycling of CO{sub}2, decreased SO{sub}2 and NO{sub}x emissions, efficient way to utilize biofuels and recycled refuse fuels, low investment and operation costs, and utilization of the existing power plant capacity. Furthermore, only small modifications were required in the boiler and process upsets in the gasifier do not shut down the power plant. The first two years of operation (1998 and 1999) have been excellent with good availability for the gasifier and its related components. During 1998 several measurements and tests with different fuel combinations were performed. This paper presents the project in detail as well as the most important results of the first measurements. The EU Thermie program has supported this project.
机译:在发展先进福斯特惠勒常压循环流化床(ACFB)燃烧系统,随后导致了ACFB气化(ACFBG)技术的发展,在80年代初期* S的成功经验。对于开发工作的驱动力是在此期间石油价格的急剧增加。所述ACFBG技术的主要优点是,它使昂贵燃料(例如油或气体)与便宜固体燃料的替代。本拉提项目之前,福斯特惠勒曾提供四个废液燃木商业规模ACFBGs在80年代中期到纸浆和造纸工业,容量从17 - 35兆瓦{}分次基于燃料输入。这些单位至今仍在成功运行。 Lahden Lapooima Oy公司(LLOY)是一家芬兰电力公司生产电力和集中供热的城市拉赫蒂。该公司联合城市拉赫蒂和复达欣Oy公司,最大的公用事业电力公司在芬兰拥有。 LLOY经营位于附近芬兰南部城市拉赫蒂的Kymijavi电厂。为了保持能源价格尽可能低,工厂人员不断寻求最经济的燃料来源,同时,努力提高能源生产的环保问题。目前,约300亿千瓦时/年不同类型的生物燃料和垃圾燃料在拉赫蒂地区都可用。在年度基础上,生物燃料和垃圾燃料的使用量足以代替对燃料的15%,在主要的锅炉中燃烧,相当于高达通常使用煤炭的30%。在LLOY Kymijavi电厂气化工程的目的是湿的生物燃料的直接气化并直接在现有的燃煤使用热,原材料和非常低的热气体的商业规模示范燃煤锅炉。生物燃料和气体在现有燃煤锅炉提供共同燃烧的气化许多优点,例如:回收CO的{子} 2,SO下降{子} 2和NO {子} x排放,利用生物燃料有效的方式和回收垃圾燃料,较低的投资和运营成本,以及现有电厂的产能利用率。此外,还要求在气化炉锅炉和工艺故障只小的修改不关闭电厂。在头两年的运作(1998年和1999年)一直优秀的具有良好的可用性气化炉及其相关组件。 1998年期间进行了几次测量和具有不同燃料组合的测试。本文详细介绍了项目,以及第一次测量的最重要结果。欧盟兆卡方案支持这个项目。

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