Gasified Residual/waste Biomass As Solid Oxide Fuel Cell Feed For Renewable Electricity Production

J. Jurewicz, N. Abatzoglou
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Abstract

Gasification of waste biomass, a renewable feedstock, is considered as a sustainable technology for producing environmentally friendly feed (biosyngas) for fuel cells. This work examines the contaminants contents (i.e. sulphur and halogens) of typical waste biomass sources and evaluates their nuisance to Solid Oxide Fuel Cells (SOFC) performance for the two most considered types of anodes: metal-ceramic composites (cermets) and composite oxides. The necessity and the extent of physico-chemical purification of the bio-syngas and its cost depend upon the chemical stability of the anode material. These needs as well as their associated costs are evaluated and a first assessment of the sustainability of such solutions is undertaken and commented.
气化残渣/废生物质作为固体氧化物燃料电池原料用于可再生电力生产
废弃生物质的气化是一种可再生原料,被认为是生产燃料电池的环保原料(生物合成气)的可持续技术。本研究考察了典型废弃生物质来源的污染物含量(即硫和卤素),并评估了它们对固体氧化物燃料电池(SOFC)性能的危害,主要用于两种最常用的阳极:金属陶瓷复合材料(金属陶瓷)和复合氧化物。生物合成气的物理化学净化的必要性、程度和成本取决于阳极材料的化学稳定性。对这些需要及其相关费用进行了评价,并对这些解决办法的可持续性进行了首次评价和评论。
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