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电动势法测量容器内液面高度 被引量:2
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作者 葛谣 李萌 +3 位作者 魏涵 毕传光 卢开成 于要伟 《中国冶金》 CAS 北大核心 2020年第2期6-12,共7页
高炉长寿、大型、高效化是高炉炼铁的主流趋势,炉缸是影响高炉长寿的关键性环节。为实现对炉缸内部环境长期稳定的监测,冶金研究人员尝试了诸多方法,例如热电偶测温、冷却壁水温监测法、超声波无损检测技术等,但这些方法均存在弊端。根... 高炉长寿、大型、高效化是高炉炼铁的主流趋势,炉缸是影响高炉长寿的关键性环节。为实现对炉缸内部环境长期稳定的监测,冶金研究人员尝试了诸多方法,例如热电偶测温、冷却壁水温监测法、超声波无损检测技术等,但这些方法均存在弊端。根据高炉炉缸的结构特点,实验室设计了一个炉缸试验装置及其配套的EMF(电动势)测量系统。通过实验室试验得出EMF信号与液面高度、温度、传感材质等参数之间的关系,然后通过现场鱼雷罐工业试验验证了EMF信号与液面的关系。6种信号线中,钼丝和镀银铜线适合做信号线。 展开更多
关键词 EMF监测 液面信息 鱼雷罐 传感材质 高炉
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Suppression of Sn^(2+) and Lewis acidity in SnS_(2)/black phosphorus heterostructure for ppb-level room temperature NO_(2) gas sensor 被引量:4
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作者 Tingting Liang Zhengfei Dai +2 位作者 Yaoda Liu Xu Zhang Haibo Zeng 《Science Bulletin》 SCIE EI CSCD 2021年第24期2471-2478,M0003,共9页
The selective detection of harmful gases is of great significance to human health and air quality,triggering the need for special customizations of sensing material structure.In this study,we prepared a novel Sn S_(2)... The selective detection of harmful gases is of great significance to human health and air quality,triggering the need for special customizations of sensing material structure.In this study,we prepared a novel Sn S_(2)/black phosphorus(BP)two-dimensional(2D)-2D heterostructure via the in situ hydrothermal growth of Sn S_(2)nanosheets on exfoliated BP lamellae for NO_(2)sensing applications.In the Sn S_(2)/BP composite,the holes with high oxidizability in p-type BP could oxidize Sn^(2+)into Sn^(4+),thus inhibiting the formation of Lewis acidic S vacancies.This Sn^(2+)/Lewis acidity suppression of the composite was further confirmed by X-ray photoelectron spectroscopy and acidic double-layer capacitance analyses,and promoted the adsorption and detection of acidic NO_(2).Owing to its valence and Lewis acidity engineering,the Sn S_(2)/BP heterostructure sensor could detect trace levels of NO_(2)as low as 100 ppb(parts per billion)with high response,fast response/recovery,good stability,and selectivity at room temperature.The high absorption energy of NO_(2)(à0.74 e V),as indicated by the density functional theory calculations,suggests that NO_(2)was chemically adsorbed on the Sn S_(2)/BP surface,which was also evidenced by the in situ Raman spectroscopy results.This work opens up interesting opportunities for the rational design of highly efficient NO_(2)gas sensors through Lewis acidity modification and interface engineering. 展开更多
关键词 Phosphorene Sn S_(2) Interface engineering Surface Lewis acidity Nitrogen dioxide detection
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