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Optimised production of tailored syngas from municipal solid waste (MSW) by sorption-enhanced gasification

机译:通过吸附增强气化优化从市政固体废物(MSW)的定制合成气的生产

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摘要

Sorption-enhanced gasification (SEG) is a promising indirect gasification route for the production of synthetic fuels since it allows the H-2, CO and CO2 content of the resulting syngas to be adjusted. This SEG process has been successfully demonstrated at pilot scale for lignocellulosic biomass and other agricultural and forest waste products, mainly focusing on H-2-rich gas production. Within this work, the potential application of the SEG process to a material derived from municipal solid waste (MSW) as feedstock is experimentally demonstrated in a 30 kWth bubbling fluidised-bed (BFB) gasifier. The influence of the sorbent-to-biomass ratio, steam excess and gasification temperature has been carefully analysed in order to understand their effect on SEG performance. Moreover, main conditions able to affect the resulting syngas composition, specifically in terms of H-2, CO and CO2 content, have been indicated. Gasification temperature turned out to be the variable that most influenced syngas composition due to the limiting mechanisms associated with the carbonation of the CaO used as bed material. This operating variable also determined biomass conversion, together with solids residence time in the gasifier, resulting in a wide variation of fixed carbon conversion under the studied conditions. Finally, tar yield and composition were evaluated as a function of temperature and the sorbent-to-biomass ratio used, resulting in tar contents as low as 7 g/Nm(3) (dry gas), consisting mainly of 1-ring aromatic compounds.
机译:吸附增强气化(SEG)是用于生产合成燃料的有前途的间接气化路线,因为它允许所得合成气的H-2,CO和CO 2含量进行调节。该SEG过程已成功地证明了木质纤维素生物质和其他农业和森林废品的试点规模,主要关注H-2丰富的天然气生产。在这项工作中,SEG方法的潜在应用在30 kwth鼓泡流化床(BFB)气化器中实验证明了作为原料的城市固体废物(MSW)的材料。已经仔细分析了吸附剂至生物质比,蒸汽过量和气化温度的影响,以了解它们对SEG性能的影响。此外,已经指出了能够影响所得合成气组合物的主要条件,具体就H-2,CO和CO 2含量而言。气化温度原位是由于与用作床材料的CaO的碳酸化相关的限制机制,是最大影响的合成气组成的变量。该操作变量也确定生物质转化,以及气化器中的固体停留时间,导致研究条件下固定碳转化的宽变化。最后,评价焦油产量和组合物作为温度的函数和使用的吸附剂 - 生物质比,导致焦油含量低至7g / nm(3)(干燥气体),主要由1环芳族化合物组成。

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