CO2 Dissociation and Upgrading from Two-Step Solar Thermochemical Processes Based on ZnO/Zn and SnO2/SnO Redox Pairs

被引:64
作者
Abanades, Stephane [1 ]
Chambon, Marc [1 ]
机构
[1] CNRS, Proc Mat & Solar Energy Lab PROMES, F-66120 Font Romeu, France
关键词
WATER-SPLITTING CYCLE; HYDROGEN-PRODUCTION; CARBON-DIOXIDE; THERMAL REDUCTION; DECOMPOSITION; MAGNETITE; ZN/ZNO;
D O I
10.1021/ef101092u
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This study addresses the solar thermochemical CO2 splitting via ZnO/Zn and SnO2/SnO two-step cycles. This process targets the recycling and upgrading of CO2 emisions for the production of solar fuels. Reactive Zn- and SnO-rich nanopowders were first synthesized in a high-temperature solar chemical reactor. Their reactivity was then investigated to demonstrate that the produced nanoparticles react efficiently with CO2, which generates CO and the initial m:,tal oxide that can be recycled. While thermodynamics predict the formation of carbon at low temperatures and a narrow temperature range, in which CO formation is favored, experimental studies were performed in both thermogravimetry and a fixed-bed reactor to demonstrate that the CO2-splitting reaction is able to produce CO with high chemical conversions. The Zn oxidation with CO2 was almost complete and fast from 360 degrees C, whereas the SnO oxidation required both higher temperatures (around 800 degrees C) and reaction duration to reach significant conversion (about 85%). Complete SnO conversion was achieved during dynamic thermogravimetric runs up to 1100 degrees C. The reaction rates increased with the inlet CO2 mole fraction. The fixed-bed configuration appeared suitable for efficient conversion of the solar-produced Zn metallic powders.
引用
收藏
页码:6667 / 6674
页数:8
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