首页> 外文会议>International Conference on Fluidized Bed Combustion; 20050522-25; Toronto(CA) >OPPORTUNITIES FOR IMPLEMENTATION OF FBC BOILERS IN ROMANIA
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OPPORTUNITIES FOR IMPLEMENTATION OF FBC BOILERS IN ROMANIA

机译:在罗马尼亚实施FBC锅炉的机会

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The evolution and current status of fluidized bed technology in Romania are presented. After a period of about 10 years when the FBC technology was rejected as a solution for power generation, due to the new environmental restrictions, the market is open again. Potential users are especially industrial units with high energy consumption, having combustibile wastes resulting from the technological processes. Two case studies are presented. The first is the utility from the city of Motru, producing thermal agent for hte town district heating. It is currently equipped with one FB boiler (11.6 MWt hot water) and two pulverized coal boilers (50 t/h steam). The equipment is more than 40 years old, and is no longer acceptable in terms of thermal efficiency and pollutant emmissions. Taking into consideration the important biomass resources from the area, it was decided to build a new CFB boiler firing a mixture of local fuels - lignite and biomass waste. The second case study is ELECTROCARBON S.A. Slatina, the second important polluter from Olt county, producing carbon electrodes for use in metallurgy. Carbon waste resulting from the technological process have been deposited for many years in a nearby landfill, amounting to about 1.2 million tons. In spite of its high calorific value, because of the low volatile content and the grinding difficulties, little use was found for this material. Investigations are carried out to burn it in a fluidized bed boiler located near the site, that would replace two existing heat recovery steam generators producing electricity for the internal consumption.
机译:介绍了罗马尼亚流化床技术的发展历程和现状。由于新的环境限制,在FBC技术被拒绝用作发电解决方案大约10年之后,市场再次开放。潜在的用户尤其是具有高能耗的工业设备,其工艺过程会产生可燃废物。介绍了两个案例研究。第一个是Motru市的公用事业公司,该公司生产用于城镇集中供热的热能剂。目前,它配备了一个FB锅炉(11.6 MWt热水)和两个粉煤锅炉(50 t / h蒸汽)。该设备已有40多年的历史,在热效率和污染物排放方面已不再被接受。考虑到该地区重要的生物质资源,决定建造一台新的CFB锅炉,该锅炉燃烧褐煤和生物质废物等本地燃料的混合物。第二个案例研究是ELECTROCARBON S.A. Slatina,这是来自Olt县的第二个重要污染源,生产用于冶金的碳电极。该工艺过程产生的碳废物已经在附近的垃圾填埋场中沉积了多年,总计约120万吨。尽管其发热量高,但由于挥发物含量低且研磨困难,因此几乎没有使用该材料。进行了研究以将其在现场附近的流化床锅炉中燃烧,该锅炉将取代现有的两个余热回收蒸汽发生器,为内部消耗发电。

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