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Analysis of trace elements in air particulate matters by non-suppressed ion chromatography
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作者 Feng Yingsheng(Y.S.Fung) and Tan Weiming (W.M.Tam)Department of Chemistry,Hong Kong University,Hong Kong 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 1991年第1期29-39,共11页
The application of non-suppressed ion chromatography for monitoring of trace elements in air particulate matter was studied in the present investigation. The results indicate that the use of microwave acid digestion m... The application of non-suppressed ion chromatography for monitoring of trace elements in air particulate matter was studied in the present investigation. The results indicate that the use of microwave acid digestion method is superior in comparison with the conventional thermal acid digestion method as it leads to higher recovery, better reproducibility, lower volatility loss, better protection against environmental contamination and much less digestion time (5 minutes vs. 24 hours). The use of eluent as extractant is shown to reduce the water dip problem in the chro-matogram. The addition of chelating agent in the eluent coupled with UV detection is shown to provide satisfactory chromatographic separation and good sensitivity for the analysis of transition metals present in the air particulate matter. Using the U.S. National Bureau of Standards Reference Material 1648 Urban Particulate Matter as standard for checking, the analytical procedure is shown to give good recovery and reproducibility for the detection of the following cations and anions in air particulate matter: Fe2 Cu, Mn, Pb, Zn, Mg, Na, HN4+, Cl-, NO3- and SO42-. Field test was also performed to check the applicability of the method and the results obtained were discussed in the present paper. 展开更多
关键词 non-suppressed ion chromatography air particulate matter trace metals analysis anions analysis microwave digestion.
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离子排斥色谱用于厌氧消化处理的水中脂肪族羧酸的分析(英文)
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作者 Kazuaki ITO Jun SAKAMOTO +7 位作者 Kazuya NAGAOKA Yohichi TAKAYAMA Takashi KANAHORI Hiroshi SUNAHARA Tsuneo HAYASHI Shinji SATO Takeshi HIROKAWA Kazuhiko TANAKA 《色谱》 CAS CSCD 北大核心 2012年第4期369-373,共5页
The analysis of seven aliphatic carboxylic acids(formic,acetic,propionic,iso-butyric,n-butyric,iso-valeric and n-valeric acid) in anaerobic digestion process waters for biogas production was examined by ion-exclusion ... The analysis of seven aliphatic carboxylic acids(formic,acetic,propionic,iso-butyric,n-butyric,iso-valeric and n-valeric acid) in anaerobic digestion process waters for biogas production was examined by ion-exclusion chromatography with dilute acidic eluents(benzoic acid,perfluorobutyric acid(PFBA) and sulfuric acid) and non-suppressed conductivity/ultraviolet(UV) detection.The columns used were a styrene/divinylbenzene-based strongly acidic cation-exchange resin column(TSKgel SCX) and a polymethacrylate-based weakly acidic cation-exchange resin column(TSKgel Super IC-A/C).Good separation was performed on the TSKgel SCX in shorter retention times.For the TSKgel Super IC-A/C,peak shape of the acids was sharp and symmetrical in spite of longer retention times.In addition,the mutual separation of the acids was good except for iso-and n-butyric acids.The better separation and good detection was achieved by using the two columns(TSKgel SCX and TSKgel Super IC-A/C connected in series),lower concentrations of PFBA and sulfuric acid as eluents,non-suppressed conductivity detection and UV detection at 210 nm.This analysis was applied to anaerobic digestion process waters.The chromatograms with conductivity detection were relatively simpler compared with those of UV detection.The use of two columns with different selectivities for the aliphatic carboxylic acids and the two detection modes was effective for the determination and identification of the analytes in anaerobic digestion process waters containing complex matrices. 展开更多
关键词 ion-exclusion chromatography(IEC) strongly and weakly acidic cation-exchange resin columns perfluorobutyric and sulfuric acids eluents non-suppressed conductivity and ultraviolet(UV) detections aliphatic carboxylic acids anaerobic digestion process waters
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