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High-temperature Carbonate/mgo Composite Materials As Thermal Storage Media For Double-walled Solar Reformer Tubes

机译:高温碳酸盐/氧化镁复合材料作为双壁太阳能转化炉管的储热介质

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摘要

The composite materials of molten alkali-carbonate/MgO-ceramics are examined as thermal storage media in a tubular reformer using a double-walled reactor tube of a laboratory scale. The concept of a double-walled reformer tube is proposed as a solar tubular reformer and involves packing a molten salt/ceramic composite material in the annular region between the internal catalyst tube and the exterior solar absorber wall. The composite materials of Na_2CO_3, K_2CO_3, and Li_2CO_3 with magnesia are tested as thermal storage media. The reforming performances of the composite materials are tested in the cooling mode of the double-walled reactor tube. The experimental result obtained under feed gas mixture of CH_4/CO_2 = 1:3 at 1 atm shows that the use of 80 wt%Na_2CO_3/20 wt%MgO composite material successfully delayed the cooling time of the catalyst bed by 5-19 min in comparison to the case without a composite material. In addition, the Li_2CO_3/MgO and Na_2CO_3/MgO composite materials relatively revealed good performances: they prolonged the cooling time by over 10 min in the gas hourly space velocity (GHSV) range of 5000-12,500 h~(-1). The application of the reactor tubes to solar tubular reformers is expected to realize stable operation of the solar reforming process under fluctuating insolation during cloud passage.
机译:使用实验室规模的双壁反应器管,在管状重整器中检查熔融的碱式碳酸盐/ MgO-陶瓷的复合材料作为储热介质。提出了双壁重整管的概念作为太阳能管重整器,其涉及将熔融盐/陶瓷复合材料填充在内部催化剂管和外部太阳能吸收器壁之间的环形区域中。测试了Na_2CO_3,K_2CO_3和Li_2CO_3与氧化镁的复合材料作为储热介质。在双壁反应器管的冷却模式下测试了复合材料的重整性能。在1 atm的CH_4 / CO_2 = 1:3的进料气体混合物下获得的实验结果表明,使用80 wt%Na_2CO_3 / 20 wt%MgO复合材料成功地将催化剂床的冷却时间延迟了5-19分钟。与没有复合材料的情况相比。此外,Li_2CO_3 / MgO和Na_2CO_3 / MgO复合材料具有相对较好的性能:在5000-12,500 h〜(-1)的气体时空速(GHSV)范围内,它们将冷却时间延长了10分钟以上。期望将反应器管应用于太阳能管式重整器在云通过期间的日照波动下实现太阳能重整过程的稳定操作。

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