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Thermochemical hydrogen production from a two-step solar-driven water-splitting cycle based on cerium oxides

机译:基于氧化铈的两步太阳能驱动的水分解循环产生的热化学氢

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摘要

A new thermochemical cycle for H_2 production based on CeO_2/Ce_2O_3 oxides has been successfully demonstrated. It consists of two chemical steps: (1) reduction, 2CeO_2→ Ce_2O_3 + 0.5O_2; (2) hydrolysis, Ce_2O_3 + H_2O→ 2CeO_2 + H_2. The thermal reduction of Ce(Ⅳ) to Ce(Ⅲ) (endothermic step) is performed in a solar reactor featuring a controlled inert atmosphere. The feasibility of this first step has been demonstrated and the operating conditions have been defined (T= 2000℃, P = 100-200 mbar). The hydrogen generation step (water-splitting with Ce(Ⅲ) oxide) is studied in a fixed bed reactor and the reaction is complete with a fast kinetic in the studied temperature range 400-600℃. The recovered Ce(Ⅳ) oxide is then recycled in first step. In this process, water is the only material input and heat is the only energy input. The only outputs are hydrogen and oxygen, and these two gases are obtained in different steps avoiding a high temperature energy consuming gas-phase separation. Furthermore, pure hydrogen is produced (it is not contaminated by carbon products like CO, CO_2), thus it can be used directly in fuel cells. The results have shown that the cerium oxide two-step thermochemical cycle is a promising process for hydrogen production.
机译:已经成功地证明了基于CeO_2 / Ce_2O_3氧化物的H_2生产新的热化学循环。它包括两个化学步骤:(1)还原,2CeO_2→Ce_2O_3 + 0.5O_2; (2)水解,Ce_2O_3 + H_2O→2CeO_2 + H_2。在具有受控惰性气氛的太阳能反应器中,将Ce(Ⅳ)热还原为Ce(Ⅲ)(吸热步骤)。已经证明了第一步的可行性,并定义了操作条件(T = 2000℃,P = 100-200 mbar)。在固定床反应器中研究了制氢步骤(与氧化铈(Ⅲ)水分解),并且在所研究的温度范围(400-600℃)下,反应以快速动力学完成。然后将回收的Ce(Ⅳ)氧化物第一步回收。在此过程中,水是唯一的物质输入,而热量是唯一的能量输入。唯一的输出是氢气和氧气,并且这两种气体是通过不同的步骤获得的,从而避免了高温耗能的气相分离。此外,会产生纯氢(它不会被碳产物(如CO,CO_2)污染),因此可以直接用于燃料电池中。结果表明,氧化铈两步热化学循环是一种有前途的制氢工艺。

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