首页> 外文会议>Proceedings of the ASME power conference 2009 >FLUIDIZED BED TECHNOLOGIES FOR BIOMASS COMBUSTION
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FLUIDIZED BED TECHNOLOGIES FOR BIOMASS COMBUSTION

机译:用于生物质燃烧的流化床技术

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Biomass, a renewable fuel source for generating energy, is available in large quantities in the USA. Typical biomass consists of wood chips, construction and demolition wood, bark, residual logging debris, saw dust, paper rejects, and paper and sewage sludge. Composition and moisture content of biomass vary greatly and affect its heating value. There are several combustion technologies available to generate power from biomass. Fluidized bed boilers are preferred, because of their ability to bum a wide variety of biomass fuels while achieving high combustion efficiency and low emissions.rnThis paper discusses basic design and operation features of bubbling (BFB) and circulating fluidized bed (CFB) boilers, both offering high fuel flexibility. In fluidized bed combustion, reactive biomass fuels are almost completely burned out because of close contact between the hot bed material and the fuel. In advanced BFB and CFB boilers, an open bottom design is used for ash and coarse material removal through the fluidizing air distribution system. This allows combustion of fuels containing large inert particles, such as rocks and metal pieces.rnIf limestone is added to the bed, SO_2 emissions are reduced. By using ammonia or urea in high temperaturernareas, Nox emissions are reduced. In order to achieve very low emissions, back-end flue gas treatment for SO_2, Nox, HCI, HF, and Hg is required. To treat flue gases, several technologies can be used - such as activated carbon and sodium bicarbonate or Trona injection, Turbosorp? circulating dry scrubber, and SCR. Normally the preferred particulate matter cleaning device is a baghouse since the filter cake allows further reactions between pollutants and sorbents.rnDifferent fluidized bed designs are shown and recommended for various biomass fuels. This paper describes design, fuels, and emissions for an advanced BFB boiler producing steam at a rate of 230,000 Ib/hr / 930 psig / 860 °F (29.0 kg/s / 64 barg / 460 ℃).
机译:生物质是一种可再生的发电能源,在美国有大量供应。典型的生物质包括木屑,建筑和拆除木材,树皮,残留的伐木碎屑,锯末,纸屑以及纸和污水污泥。生物质的组成和水分含量变化很大,并影响其热值。有几种可利用生物质发电的燃烧技术。流化床锅炉是首选,因为它能够燃烧多种生物质燃料,同时又能实现高燃烧效率和低排放。rn本文讨论了鼓泡(BFB)和循环流化床(CFB)锅炉的基本设计和运行特点。提供高燃油灵活性。在流化床燃烧中,由于热床材料与燃料之间的紧密接触,反应性生物质燃料几乎被完全燃尽。在先进的BFB和CFB锅炉中,采用开底设计,通过流化空气分配系统去除灰分和粗料。这样可以燃烧包含大块惰性粒子的燃料,例如岩石和金属碎片。如果在床中添加石灰石,则可以减少SO_2的排放。通过在高温环境中使用氨或尿素,可以减少氮氧化物的排放。为了实现极低的排放,需要对SO_2,NOx,HCl,HF和Hg进行后端烟气处理。为了处理烟道气,可以使用多种技术-例如活性炭和碳酸氢钠或Trona注入,Turbosorp®。循环干式洗涤塔和SCR。通常,首选的颗粒物清洁设备是集尘室,因为滤饼允许污染物和吸附剂之间进一步反应。rn显示并推荐了各种流化床设计,适用于各种生物质燃料。本文介绍了一种先进的BFB锅炉的设计,燃料和排放,该锅炉以230,000 Ib / hr / 930 psig / 860°F(29.0 kg / s / 64 barg / 460℃)的速度产生蒸汽。

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