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首页> 外文期刊>International journal of hydrogen energy >H_2 generation via solar assisted CaO/Ca thermochemical H_2O splitting cycle
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H_2 generation via solar assisted CaO/Ca thermochemical H_2O splitting cycle

机译:H_2通过太阳能辅助CAO / CA Thermochemical H_2O分裂循环

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This investigation reports the thermodynamic evaluation of a solar assisted CaO-based H2O splitting (Ca-WS) cycle. An HSC Chemistry 9.9 software was utilized for performing the thermodynamic equilibrium as well as efficiency analysis. Results associated with the equilibrium analysis indicate that the thermal reduction of the CaO (TR-Ca) was improved from 0 to 100% with an upsurge in the thermal reduction temperature (T-H) from 1900 K to 2230 K. The water splitting (WS) reaction was feasible at all temperatures above 300 K. However, to keep the Ca in the solid phase it was carried out at T-H = 1050 K. Due to the rise in the individual enthalpies of the Ca and O-2, the solar energy required to run the reactor (Q(solar-reactor-Ca-WS)) and heater (Q(solar-reactor-Ca-WS)) was increased by 775.5 kW and 69.5 kW as the T-H rose from 1900 K to 2230 K. The solar energy required to run the Ca-WS cycle (Q(solar-cycle-Ca-WS)) was also enhanced by 1568.2 kW due to the similar increment in the T-H. The solar-to-fuel energy conversion efficiency associated with the Ca-WS cycle (eta(solar-to-fuel-Ca-WS)) was first increased up to 19.5% and then decreased to 17.1% as a function of the rise in T-H from 1900 K to 2230 K. Overall, the Ca-WS cycle can achieve the maximum possible eta(solar-to-fuel-Ca-WS) (19.5%) at T-H and T-L equal to 2040 K and 1050 K. For the identical operating conditions, the eta(solar-to-fuel-Ca-WS) was further increased up to 38.5% due to the employment of heat recuperation. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本研究报告了太阳能辅助CAO基H2O分裂(CA-WS)循环的热力学评估。 HSC化学9.9软件用于进行热力学平衡以及效率分析。与平衡分析相关的结果表明,CaO(Tr-Ca)的热还原从0到100%提高,在1900k至2230k的热还原温度(Th)中的高度升高。水分裂(WS)在300k以上的所有温度下,反应是可行的。然而,为了将Ca保持在固相中,它在Th = 1050 K中进行。由于CA和O-2的个体焓的增加,所需的太阳能运行反应器(Q(太阳能反应器-CA-WS))和加热器(Q(太阳能反应器-CA-WS))增加了775.5千瓦和69.5千瓦作为TH从1900 K玫瑰至2230 K的运行CA-WS周期所需的太阳能也是由于TH类似的增量而增强了1568.2 kW。与CA-WS周期相关的太阳能 - 燃料能量转换效率(ETA(太阳能到燃料-CA-WS))首先增加高达19.5%,然后减少至17.1%,以至于增加总共从1900 k到2230 K.总的来说,CA-WS周期可以在TH和TL等于2040 k和1050 K的TH实现最大可能的ETA(太阳能 - 燃料-CA-WS)(19.5%)。由于采用热恢复,相同的操作条件,ETA(太阳能 - 燃料-CA-WS)进一步增加了38.5%。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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