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EXPERIMENTAL STUDY ON COMBUSTION CHARACTERISTIC OF BIOMASS MICRON FUEL

机译:生物质微米燃料燃烧特性的实验研究

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This study developed a new kind of biomass fuel with biomass (forestry residues, agriculture waste, energy crops and so on) crushed below certain particle size (micron level, ≤250 μm) to form biomass powder, biomass-micron-fuel (BMF). And effects of excess air coefficient, air-fuel ratio, and particle size of BMF on the combustion temperature were studied through a self-designed lab-scale cyclone combustion system. Results showed that temperature increased first and then decreased with the increasing air flow rate and best excess air coefficient occurred in the region of 1.05-1.18. Similarly, combustion temperature also increased first and then decreased as the fuel feed rate increased and 225 g/m~3-265 g/m~3 air-fuel ratio would guarantee the effective combustion of BMF. The influence of particle size on the combustion temperature was also determined under five different combustion conditions and results demonstrated that the smaller the particle size is, the higher the temperature will be.(CSPE)
机译:本研究开发了一种具有生物量(林业残留物,农业废物,能量作物等)的新种生物质燃料,低于某些粒度(微米水平,≤250μm)以形成生物质粉末,生物质 - 微米燃料(BMF) 。通过自行设计的实验室级旋风燃烧系统研究了多余空气系数,空气燃料比和BMF燃烧温度粒度的影响。结果表明,温度升高,随着空气流速的增加和最佳过量的空气系数发生在1.05-1.18。类似地,燃烧温度也首先增加,然后随着燃料进料速率的增加而降低,225g / m〜3-265g / m〜3空燃比将保证BMF的有效燃烧。粒度对燃烧温度的影响也在五种不同的燃烧条件下测定,结果表明粒径越小,温度越高。(CSPE)

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