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具有创新应用的高灵敏度非色散红外气体传感器,用于监测锂离子电池热失控产生的二氧化碳排放。

Highly Sensitive Non-Dispersive Infrared Gas Sensor with Innovative Application for Monitoring Carbon Dioxide Emissions from Lithium-Ion Battery Thermal Runaway.

作者信息

Luo Liang, Chen Jianwei, Hui Aisn Gioronara, Liu Rongzhen, Zhou Yao, Liang Haitong, Wang Ziyuan, Luo Haosu, Fang Fei

机构信息

Department of Engineering Mechanics, Tsinghua University, Beijing 100084, China.

Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 201800, China.

出版信息

Micromachines (Basel). 2024 Dec 29;16(1):36. doi: 10.3390/mi16010036.

Abstract

The safety of power batteries in the automotive industry is of paramount importance and cannot be emphasized enough. As lithium-ion battery technology continues to evolve, the energy density of these batteries increases, thereby amplifying the potential risks linked to battery failures. This study explores pivotal safety challenges within the electric vehicle sector, with a particular focus on thermal runaway and gas emissions originating from lithium-ion batteries. We offer a non-dispersive infrared (NDIR) gas sensor designed to efficiently monitor battery emissions. Notably, carbon dioxide (CO) gas sensors are emphasized for their ability to enhance early-warning systems, facilitating the timely detection of potential issues and, in turn, improving the overall safety standards of electric vehicles. In this study, we introduce a novel CO gas sensor based on the advanced pyroelectric single-crystal lead niobium magnesium titanate (PMNT), which exhibits exceptionally high pyroelectric properties compared to commercially available materials, such as lithium tantalate single crystals and lead zirconate titanate ceramics. The specific detection rate of PMNT single-crystal pyroelectric infrared detectors is more than four times higher than lithium tantalate single-crystal infrared detectors. The PMNT single-crystal NDIR gas detector is used to monitor thermal runaway in lithium-ion batteries, enabling the rapid and highly accurate detection of gases released by the battery. This research offers an in-depth exploration of real-time monitoring for power battery safety, utilizing the cutting-edge pyroelectric single-crystal gas sensor. Beyond providing valuable insights, the study also presents practical recommendations for mitigating the risks of thermal runaway in lithium-ion batteries, with a particular emphasis on the development of effective warning systems.

摘要

汽车行业中动力电池的安全性至关重要,怎么强调都不为过。随着锂离子电池技术不断发展,这些电池的能量密度增加,从而放大了与电池故障相关的潜在风险。本研究探讨了电动汽车领域关键的安全挑战,特别关注锂离子电池引发的热失控和气体排放。我们提供一种非色散红外(NDIR)气体传感器,旨在有效监测电池排放。值得注意的是,二氧化碳(CO)气体传感器因其能够增强预警系统、便于及时检测潜在问题进而提高电动汽车整体安全标准而受到重视。在本研究中,我们介绍了一种基于先进热释电单晶铌镁钛酸铅(PMNT)的新型CO气体传感器,与钽酸锂单晶和锆钛酸铅陶瓷等商用材料相比,它具有极高的热释电性能。PMNT单晶热释电红外探测器的比探测率比钽酸锂单晶红外探测器高出四倍多。PMNT单晶NDIR气体探测器用于监测锂离子电池中的热失控,能够快速且高精度地检测电池释放的气体。本研究利用前沿的热释电单晶气体传感器,对动力电池安全的实时监测进行了深入探索。该研究不仅提供了有价值的见解,还针对减轻锂离子电池热失控风险提出了实用建议,特别强调了有效预警系统的开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61e9/11767918/130d25ac96f1/micromachines-16-00036-g001.jpg

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