Permchart W, Kouprianov V I
Joint Graduate School of Energy and Environment, King Mongkut's University of Technology Thonburi, Bangkok 10140, Thailand.
Bioresour Technol. 2004 Mar;92(1):83-91. doi: 10.1016/j.biortech.2003.07.005.
This paper summarizes the results of an experimental study on combustion of three distinct biomass fuels (sawdust, rice husk and pre-dried sugar cane bagasse) in a single fluidized-bed combustor (FBC) with a conical bed using silica sand as the inert bed material. Temperature, CO, NO and O2 concentrations along the combustor height as well as in flue (stack) gas were measured in the experimental tests. The effects of fuel properties and operating conditions (load and excess air) on these variables were investigated. Both CO and NO axial profiles were found to have a maximum whose location divides conventionally the combustor volume into formation (lower) and reduction (upper) regions for these pollutants. Based on CO emission and unburned carbon content in fly ash, the combustion efficiency of the conical FBC was quantified for the selected biomass fuels fired under different operating conditions.
本文总结了在一个以硅砂作为惰性床料的单锥型流化床燃烧器(FBC)中,对三种不同生物质燃料(锯末、稻壳和预干燥甘蔗渣)燃烧进行的实验研究结果。在实验测试中,测量了沿燃烧器高度以及烟道(烟囱)气体中的温度、一氧化碳、一氧化氮和氧气浓度。研究了燃料特性和运行条件(负荷和过量空气)对这些变量的影响。发现一氧化碳和一氧化氮的轴向分布都有一个最大值,该最大值的位置通常将燃烧器体积分为这些污染物的生成(下部)和还原(上部)区域。基于一氧化碳排放和飞灰中未燃碳含量,对在不同运行条件下燃烧所选生物质燃料时锥型流化床燃烧器的燃烧效率进行了量化。