CAS Key Laboratory of Separation Sciences for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 457 Zhongshan Road, Dalian, 116023, China; University of Chinese Academy of Sciences, Beijing, 100039, China.
CAS Key Laboratory of Separation Sciences for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 457 Zhongshan Road, Dalian, 116023, China.
Talanta. 2020 Jan 15;207:120283. doi: 10.1016/j.talanta.2019.120283. Epub 2019 Aug 21.
A flame photometric detector with a silicon photodiode assembly instead of a photomultiplier tube for sulfur detection was developed and evaluated. The photosensitive area of photodiode, the optical design, and band-pass filters, were optimized. It was found that the optimal photosensitive area of the photodiode was 100 (mm), and three focus lenses combined with a broad band-pass filter of 378/52 nm and a QB21 glass yielded the best result. This design fully utilized the wide emission spectrum of S*, the response characteristics of silicon photodiode, and effective absorption of strong emission spectrums of OH* at wavelength around 310 nm by QB21 glass. The limits of detection for nine kinds of sulfur containing compounds were between 5.8 × 10 to 9.5 × 10 g s. This mode provided a linear response of 3 orders of magnitude for compounds being tested and a selectivity of sulfur over carbon of 10. It is demonstrated for the first time that the overall performance of the flame photometric detector integrated with a silicon photodiode assembly work at room temperature was comparable to a conventional detector coupled with a photomultiplier tube, with advantages of short equilibration time, robust to electromagnetic interference and vibration, and low cost. The new detector can find wide application in gas chromatography and on-line monitoring instruments for sulfur measurement.
开发并评价了一种使用硅光电二极管组件代替光电倍增管的火焰光度检测器用于硫检测。对光电二极管的光敏面积、光学设计和带通滤波器进行了优化。研究发现,光电二极管的最佳光敏面积为 100(mm),三个聚焦透镜与 378/52nm 的宽带通滤波器和 QB21 玻璃相结合,可获得最佳效果。该设计充分利用了 S的宽发射光谱、硅光电二极管的响应特性以及 QB21 玻璃对波长约为 310nm 的 OH强发射光谱的有效吸收。九种含硫化合物的检出限在 5.8×10 到 9.5×10 g s 之间。该模式为被测试化合物提供了 3 个数量级的线性响应,硫对碳的选择性为 10。这是首次证明集成硅光电二极管组件的火焰光度检测器在室温下的整体性能可与传统的与光电倍增管耦合的检测器相媲美,具有平衡时间短、抗电磁干扰和振动、成本低等优点。该新型检测器可广泛应用于气相色谱和在线硫测量监测仪器中。