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用于在高温电化学系统中捕获空气中的 Cr 和 S 污染物的锶锰氧化物捕集剂。

Strontium Manganese Oxide Getter for Capturing Airborne Cr and S Contaminants in High-Temperature Electrochemical Systems.

机构信息

Department of Materials Science and Engineering , University of Connecticut , Storrs , Connecticut 06269 , United States.

Materials Science Center , National Renewable Energy Laboratory , Golden , Colorado 80401 , United States.

出版信息

ACS Appl Mater Interfaces. 2019 Sep 25;11(38):34878-34888. doi: 10.1021/acsami.9b09677. Epub 2019 Sep 10.

Abstract

Traces (ppm to ppb level) of airborne contaminants such as CrO(OH) and SO irreversibly degrade the electrochemical activity of air electrodes in high-temperature electrochemical devices such as solid oxide fuel cells by retarding oxygen reduction reactions. The use of getter has been proposed as a cost-effective strategy to mitigate the electrode poisoning. However, owing to the harsh operating conditions (i.e., exposure to heat and moisture), the long-term durability of getter materials remains a considerable challenge. In this study, we report our findings on strontium manganese oxide (SMO) as a robust getter material for cocapture of airborne Cr and S contaminants. The SMO getter with a 3D honeycomb architecture, fabricated via slurry dip-coating, successfully maintains the electrochemical activity of solid oxide cells under the flow of gaseous Cr and S species, validating the getter's capability of capturing traces of Cr and S contaminants. Investigations found that both Sr and Mn cations contribute to the absorption reaction and that the reaction processes are accompanied by morphological elongation in the form of SrSO nanorods and SrCrO whiskers, which favors continued absorption and reaction of incoming S and Cr contaminants. The SMO getter also displays robust stability at high temperatures and in humid environments without phase transformation and hydrolysis. These results demonstrate the feasibility of the use of SMO getter under severe operating conditions representative of high-temperature electrochemical systems.

摘要

空气中的污染物如 CrO(OH) 和 SO 的痕迹(ppm 到 ppb 水平)通过减缓氧还原反应,不可逆地降低高温电化学设备(如固体氧化物燃料电池)中空气电极的电化学活性。使用吸气剂已被提议作为一种经济有效的策略来减轻电极中毒。然而,由于苛刻的操作条件(即暴露于热和湿气),吸气剂材料的长期耐久性仍然是一个相当大的挑战。在本研究中,我们报告了我们关于氧化锶锰 (SMO) 作为一种用于同时捕获空气中 Cr 和 S 污染物的强大吸气剂材料的发现。通过浆料浸渍涂层制造的具有 3D 蜂窝结构的 SMO 吸气剂,成功地在气态 Cr 和 S 物种的流动下保持了固体氧化物电池的电化学活性,验证了吸气剂捕获痕量 Cr 和 S 污染物的能力。研究发现,Sr 和 Mn 阳离子都有助于吸收反应,并且反应过程伴随着 SrSO 纳米棒和 SrCrO 晶须的形态伸长,这有利于继续吸收和反应进入的 S 和 Cr 污染物。SMO 吸气剂在高温和潮湿环境中也表现出稳定的性能,没有相变和水解。这些结果表明,在代表高温电化学系统的恶劣操作条件下,SMO 吸气剂的使用是可行的。

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