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Water Footprint and Land Requirement of Solar Thermochemical Jet-Fuel Production

机译:太阳能热化学喷气燃料生产的水足迹和土地需求

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摘要

The production of alternative fuels via the solar thermochemical pathway has the potential to provide supply security and to significantly reduce greenhouse gas emissions. H2O and CO2 are converted to liquid hydrocarbon fuels using concentrated solar energy mediated by redox reactions of a metal oxide. Because attractive production locations are in arid regions, the water footprint and the land requirement of this fuel production pathway are analyzed. The water footprint consists of 7.4 liters per liter of jet fuel of direct demand on-site and 42.4 liters per liter of jet fuel of indirect demand, where the dominant contributions are the mining of the rare earth oxide ceria, the manufacturing of the solar concentration infrastructure, and the cleaning of the mirrors. The area-specific productivity is found to be 33 362 liters per hectare per year of jet fuel equivalents, where the land coverage is mainly due to the concentration of solar energy for heat and electricity. The water footprint and the land requirement of the solar thermochemical fuel pathway are larger than the best power-to-liquid pathways but an order of magnitude lower than the best biomass-to-liquid pathways. For the production of solar thermochemical fuels arid regions are best-suited, and for biofuels regions of a moderate and humid climate.
机译:通过太阳热化学途径生产代用燃料具有提供供应安全性和显着减少温室气体排放的潜力。使用由金属氧化物的氧化还原反应介导的集中太阳能将H2O和CO2转化为液态烃燃料。因为有吸引力的生产地点在干旱地区,所以分析了该燃料生产途径的水足迹和土地需求。水足迹包括现场直接需求的每升喷气燃料7.4升和间接需求的每升喷气燃料42.4升,其中主要贡献是稀土氧化物二氧化铈的开采,太阳能集热的制造基础设施和镜子清洁。发现该地区的特定生产力为每年每公顷喷气燃料当量33至362升,其中土地覆盖率主要是由于太阳能集中在热能和电力上。太阳热化学燃料途径的水足迹和土地需求大于最佳的动力至液体途径,但比最佳的生物质至液体途径低一个数量级。对于太阳能热化学燃料的生产,干旱地区是最合适的,而气候温和潮湿的生物燃料地区则最适合。

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