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CO-COMBUSTION OF BIOMASS IN A NATURAL GAS-FIRED FURNACE

机译:天然气炉中生物质的共燃烧

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The co-combustion of pulverized-biomass in a natural gas-fired large-scale laboratory furnace is investigated experimentally. The biomass fuels used included pine sawdust, pine shells, pine branches, and olive stones. For comparison purposes, the co-combustion tests have also included the study of natural gas/pulverized-coal flames. For each solid-fuel, flue-gas data were obtained for pollutant emissions and particle burnout as a function of the solid-fuel corking ratio. Ratios up to 20% (energy basis) were used in the experiments. Subsequently, in order to improve the understanding of the processes that occur during the co-combustion of natural gas and solid fuels, the study focused on detailed in-flame measurements of major gas species, including NO_x, and gas temperatures for three representative furnace operating conditions. The results show that (1) cofiring of biomass fuels, compared with pure natural gas firing, has no significant effect on NO_x emissions provided that the fuel-bound nitrogen is low because of the positive impact of the reduced in-flame temperatures of the cofiring in the thermal NO formation that serves to attenuate, to some extent, the fuel NO formation associated with biomass fuels; (2) cofiring of biomass fuels, compared with pure natural gas firing, may have an important impact on CO and hydrocarbon emissions if particle sizes are too large because this extends the volatilization process downstream into regions with relatively low temperatures; and (3) cofiring of biomass fuels, compared with cofiring of coal, allows for much larger particle sizes without a deleterious effect on particle burnout performance due to its higher content of volatile matter.
机译:实验研究了粉状生物质在天然气大型实验室炉中的共燃烧。使用的生物质燃料包括松木屑,松壳,松枝和橄榄石。为了比较,混合燃烧试验还包括对天然气/煤粉火焰的研究。对于每种固体燃料,都获得了污染物排放量和颗粒燃尽的烟气数据,该数据是固体燃料焦化比的函数。实验中使用了高达20%(基于能量)的比率。随后,为了更好地了解天然气和固体燃料共燃烧过程中发生的过程,该研究着重于详细测量了主要气体种类的火焰中测量值,包括三种代表性炉子的NO_x和气体温度条件。结果表明:(1)与纯天然气燃烧相比,生物燃料的共燃烧对NO_x排放没有显着影响,但前提是由于共燃烧降低的燃烧温度的积极影响,燃料结合氮较低在热NO形成中,其在一定程度上减弱了与生物质燃料相关的燃料NO形成; (2)如果颗粒尺寸太大,则与纯天然气燃烧相比,生物质燃料的共烧可能会对一氧化碳和碳氢化合物的排放产生重要影响,因为这会将下游的挥发过程扩展到温度较低的区域; (3)与煤的共烧相比,生物质燃料的共烧可以产生更大的颗粒尺寸,但由于其挥发物含量较高,因此不会对颗粒的燃尽性能产生不利影响。

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