首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Allothermal steam gasification of biomass in cyclic multi-compartment bubbling fluidized-bed gasifier/combustor - New reactor concept
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Allothermal steam gasification of biomass in cyclic multi-compartment bubbling fluidized-bed gasifier/combustor - New reactor concept

机译:循环多室鼓泡流化床气化炉/燃烧室中生物质的同质蒸汽气化-新反应堆概念

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摘要

A new reactor concept of allothermal cyclic multi-compartment fluidized bed steam biomass gasification is proposed and analyzed numerically. The concept combines space and time delocalization to approach an ideal allothermal gasifier. Thermochemical conversion of biomass in periodic time and space sequences of steam biomass gasification and char/biomass combustion is simulated in which the exothermic combustion compartments provide heat into an array of interspersed endothermic steam gasification compartments. This should enhance unit heat integration and thermal efficiency and procure N-2-free biosyngas with recourse neither to oxygen addition in steam gasification nor contact between flue and syngas. The dynamic, one-dimensional, multi-component, non-isothermal model developed for this concept accounts for detailed solid and gas flow dynamics whereupon gasification/combustion reaction kinetics, thermal effects and freeboard-zone reactions were tied. Simulations suggest that allothermal operation could be achieved with switch periods in the range of a minute supporting practical feasibility for portable small-scale gasification units.
机译:提出了新的同温循环多室流化床蒸汽生物质气化反应器概念,并进行了数值分析。该概念结合了空间和时间的离域化,以接近理想的变热气化炉。模拟了蒸汽生物质气化和炭/生物质燃烧的周期性时间和空间序列中生物质的热化学转化,其中放热燃烧室将热量提供到散布着的吸热蒸汽气化室中。这应提高单元的热集成度和热效率,并通过不利用蒸汽气化中的氧气添加或烟道与合成气之间的接触来采购不含N-2的生物合成气。为此概念开发的动态,一维,多成分,非等温模型考虑了详细的固体和气体流动动力学,从而将气化/燃烧反应动力学,热效应和干馏区反应联系在一起。模拟表明,可以用一分钟范围内的切换时间来实现同温运行,从而支持便携式小型气化装置的实际可行性。

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