详细信息
Simultaneous determination of trimethylamine, formaldehyde and benzene via the cataluminescence of In3LaTi2O10 nanoparticles ( EI收录)
文献类型:期刊文献
英文题名:Simultaneous determination of trimethylamine, formaldehyde and benzene via the cataluminescence of In3LaTi2O10 nanoparticles
作者:Zhou, Kaowen[1,2]; Xu, Jichao[1,3]; Gu, Chunxiu[1,2]; Hou, Chunjuan[1,2]; Ren, Huirong[1]
第一作者:周考文;Zhou, Kaowen
机构:[1] Biochemical Engineering College, Beijing Union University, Beijing, 100023, China; [2] Beijing Key Laboratory of Biomass Waste Resource Utilization, Beijing, 100023, China; [3] Qingdao Institute for Food and Drug Control, Qingdao, 266071, China
第一机构:北京联合大学生物化学工程学院
通讯机构:[1]Biochemical Engineering College, Beijing Union University, Beijing, 100023, China|[1141726]北京联合大学生物化学工程学院;[11417]北京联合大学;
年份:2017
卷号:184
期号:7
起止页码:2047-2053
外文期刊名:Microchimica Acta
收录:EI(收录号:20242616505846);Scopus(收录号:2-s2.0-85016596821)
语种:英文
外文关键词:Carbon dioxide - Catalytic oxidation - Formaldehyde - Indium compounds - Lanthanum compounds - Nanoparticles - Sulfur dioxide - Titanium compounds
摘要:The authors describe a cataluminescence (CTL) based sensing method via signals generated at the surface of In3LaTi2O10 nanoparticles for simultaneous determination of trimethylamine, formaldehyde and benzene in air. The analytical wavelengths are 340?nm, 440?nm and 600?nm, and the best surface temperature of the catalytic material is 275?°C. The limits of detection of this method are 0.3?mg?m?3 for trimethylamine, 0.07?mg?m?3 for formaldehyde, and 0.2?mg?m?3 for benzene. The linear ranges of CTL intensity versus gas/vapor concentration are from 1.0 to 65.1?mg?m?3 for trimethylamine, from 0.2 to 72.5?mg?m?3 for formaldehyde, and from 0.5 to 77.5?mg?m?3 for benzene. The recoveries after testing 10 standard samples ranged from 98.1% to 102.6% for trimethylamine, from 98.1% to 102.6% for formaldehyde, and from 97.7% to 103.8% for benzene. Gaseous ammonia, acetaldehyde, toluene, ethylbenzene, ethanol, sulfur dioxide and carbon dioxide do not interfere. The relative deviation of the CTL signals after 200?h of continuous detection of trimethylamine, formaldehyde and benzene is ? 2017, Springer-Verlag Wien.
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