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Combustion characteristics of pelletized-biomass fuels: a thermogravimetric analysis and combustion study in a fluidized-bed combustor

机译:颗粒化生物质燃料的燃烧特性:流化床燃烧器的热重分析和燃烧研究

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This work aimed to investigate the combustion characteristics of rubberwood sawdust pellet (RSP), teak sawdust pellet (TSP), eucalyptus bark pellet (EBP), cassava rhizomes pellet (CRP), and their corresponding raw biomass. The experiments were performed in a thermogravimetric (TG) analyzer and a fluidized-bed combustor (FBC). Thermogravimetric analysis (TGA) was conducted in the temperature range of 30-1000 & DEG;C at a heating rate of 10 & DEG;C/min in a dry air atmosphere. The combustion experiments were conducted in a twin-cyclone FBC at 120 kilowatts (kW(th)) heat input with three values of excess air (EA): 40, 50, and 60%. The combustion reactivity of the pellets was lower than raw biomasses, as indicated by higher values of peak, ignition, and burnout temperatures, as well as a lower comprehensive performance index value. The activation energies of the biomass pellets were greater than the as-received biomasses, indicating that the biomass pellets required higher energy and temperature and a longer time for complete combustion. The pellet fuels had a higher residence time and better mixing of the fuel and bed particles, leading to higher combustion intensity in a fluidized bed. Carbon monoxide (CO), hydrocarbon (CxHy), and nitric oxide (NO) emissions of the combustor when firing the pellets were lower compared to the burning of as-received biomasses. When firing the pellets at optimal EA (about 40%), the combustor operated at high combustion efficiency of 99.0-99.8%. This study indicated that the biomass pellets have desirable combustion characteristics that could be used as alternative fuels for sustainable energy production.
机译:这项工作旨在调查燃烧rubberwood木屑颗粒的特征(负责)、柚木木屑颗粒(TSP),桉树树皮颗粒(EBP),木薯的根状茎颗粒(CRP)其对应的生物质原料。进行热重(TG)分析器和流化床燃烧室(流化床燃烧器)。进行了热重分析(TGA)30 - 1000 &度的温度范围内,C在加热速度10 &度;C /分钟干燥的空气的气氛。在进行twin-cyclone流化床燃烧器在120千瓦(千瓦(th)过剩的热量输入三个值空气(EA): 40、50个和60%。反应性的颗粒低于原始微生物,由更高的高峰值,表示点火,倦怠的温度,以及降低综合性能指标的价值。生物质颗粒的激活能量大于收到基生物量中,表明所需的生物质颗粒更高的能量和温度和较长的时间完全燃烧。更高的停留时间和更好的混合燃料和床颗粒,导致更高在流化床燃烧强度。一氧化碳(CO)、碳氢化合物(CxHy)和氮氧化(NO)排放燃烧室的点火颗粒燃烧相比要低收到基生物量中。最佳EA(大约40%),燃烧器操作高燃烧效率的99.0 - -99.8%。研究表明,生物质颗粒理想的燃烧特性被用作可持续的替代燃料能源生产。

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