Xu Tingting, Xiao Bo, Fu Gensheng, Yang Sicheng, Wang Xun
School of Environmental Science & Engineering, Huazhong University of Science & Technology Wuhan 430074 China
China Urban Construction Design & Research Institute Co., Ltd. (CUCD) China.
RSC Adv. 2019 Nov 28;9(67):39064-39075. doi: 10.1039/c9ra08936e. eCollection 2019 Nov 27.
The chemical looping hydrogen (CLH) production was conducted in a fluidized bed reactor with the modified iron ore oxygen carriers (OCs) using simulated biomass pyrolysis gas (BPG) as fuel. Both carbon capture efficiency and hydrogen yield increased with the elevated reaction temperature in the fuel reactor (FR). As the reduction time in the FR increased, the carbon capture efficiency decreased but the hydrogen yield increased. An FR temperature of 900 °C and reduction time of 40 min in the FR were optimal conditions for CLH production. At this condition, the carbon capture efficiency for the NiO-iron ore, CuO-iron ore CeO-iron ore and iron ore were 83.29%, 82.75%, 70.05% and 40.46%, respectively. The corresponding hydrogen yield and hydrogen purity were 8.89 mmol g and 99.02%, 7.78 mmol g and 99.68%, 6.25 mmol g and 99.52%, and 2.45 mmol g and 97.46%, respectively. The presence of NiFeO, CuFeO and CeFeO in the modified iron ore samples enhanced the reactivity of the iron ore and promoted its reduction. Both NiO-iron ore and CeO-iron ore exhibited good cycle performance, while the sintering of the CuO-iron ore resulted in a decrease in the reactivity. Compared with the CuO-iron ore and CeO-iron ore, the NiO-iron ore was more appropriate for hydrogen production due to its high hydrogen yield and good cycle performance.
采用改性铁矿石氧载体,以模拟生物质热解气(BPG)为燃料,在流化床反应器中进行化学链制氢(CLH)实验。燃料反应器(FR)中,随着反应温度升高,碳捕集效率和氢气产率均增加。随着FR中还原时间的增加,碳捕集效率降低,但氢气产率增加。FR温度为900℃、还原时间为40 min是CLH生产的最佳条件。在此条件下,NiO-铁矿石、CuO-铁矿石、CeO-铁矿石和铁矿石的碳捕集效率分别为83.29%、82.75%、70.05%和40.46%。相应的氢气产率和氢气纯度分别为8.89 mmol/g和99.02%、7.78 mmol/g和99.68%、6.25 mmol/g和99.52%、2.45 mmol/g和97.46%。改性铁矿石样品中NiFeO、CuFeO和CeFeO的存在增强了铁矿石的反应活性,促进了其还原。NiO-铁矿石和CeO-铁矿石均表现出良好的循环性能,而CuO-铁矿石的烧结导致反应活性下降。与CuO-铁矿石和CeO-铁矿石相比,NiO-铁矿石因其高氢气产率和良好的循环性能更适合制氢。