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Experimental Investigation of Syngas Production through Gasification of Biomass Char in a Fluidized Bed Reactor

机译:流化床反应器中生物质焦气化生产合成气的实验研究

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This work deals with the gasification of the biomass char in a fixed bed gasifier and ultimately the production of syngas. Gasification of biomass is an endothermal process of thermal conversion that transforms solid fuel into gas. A limited supply of air serves as the oxidizing agent. The resultant gas consists of Carbon dioxide and monoxide, hydrogen, methane; minimal quantities of higher levels of hydrocarbons, nitrogen, oxygen, contaminating agents, including small chips, tars, ash etc. The hydrogen gas thus produced is a future fuel since this is a renewable energy source and acts as an alternative fuel. The syngas produced has many applications in the present scenario. The biomass air-steam gasification properties in a fluidized bed have been investigated in this paper. A number of experiments were conducted to study the effects on gas composition, gas emission, vapor decomposition and low heating (LHV) from reactor temperature, vapor to biomass ratio (S / B) and biomass particle size. The fuel gas production ranged from 1.43 to 2.57 Nm3/kg of biomass and the LHV of the fuel gas between 170.1 and 7772.95 kJ/Nm3. The results show that hydrogen production was driven by a higher temperature. A smaller particle has also been shown to be more favorable for higher LHV gas and yields.
机译:这项工作涉及固定床气化炉中生物质炭的气化以及最终生产合成气。生物质的气化是热转化的内热过程,将固体燃料转化为气体。有限的空气供应用作氧化剂。生成的气体由二氧化碳和一氧化碳,氢气,甲烷组成;产生的氢气是未来的燃料,因为它是可再生能源,可作为替代燃料,因此可将其用作未来的燃料。在当前情况下,产生的合成气具有许多应用。本文研究了流化床中生物质气化气的性质。进行了许多实验,以研究反应器温度,蒸气与生物质之比(S / B)和生物质粒径对气体成分,气体排放,蒸气分解和低热(LHV)的影响。燃料气体的产量范围为1.43至2.57 Nm3 / kg生物量,燃料气体的LHV在170.1至7772.95 kJ / Nm3之间。结果表明,氢气的产生是由较高的温度驱动的。还显示出较小的颗粒对于较高的LHV气体和产率更有利。

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