Inorganic iodine and bromine speciation in Arctic snow at picogram-per-grams levels by IC-ICP-MS
            
                
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Title
 
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Inorganic iodine and bromine speciation in Arctic snow at picogram-per-grams levels by IC-ICP-MS
 
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Other Titles
 
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IC-ICP-MS를 통해 그램당 피코그램 수준으로 북극 눈의 무기 요오드 및 브롬 종분화
 
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Authors
 
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Frassati  Stefano
Barbaro  Elena
Rossetti  Claudia
Cozzi  Giulio
Turetta  Clara
Scoto  Federico
Roman  Marco
Feltracco  Matteo
Kim, Kitae
Barbante  Carlo
Gambaro  Andrea
Spolaor  Andrea 
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Keywords
 
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Halogen speciation; Ion chromatography; Arctic snow; ICP-MS
 
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Issue Date
 
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2024
 
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Citation
 
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Frassati  Stefano, et al. 2024. "Inorganic iodine and bromine speciation in Arctic snow at picogram-per-grams levels by IC-ICP-MS". JOURNAL OF ANALYTICAL SCIENCE AND TECHNOLOGY, 15(1): 0-0.
 
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Abstract
 
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Iodine and bromine play central roles in polar atmospheric chemistry: iodine influences the atmospheric oxidative capacity and can generate cloud condensation nuclei, while bromine participates in ozone depletion reactions, known as bromine explosions. Here we present a very sensitive analytical method for Br and I speciation by coupling the ion chromatography system (IC) with an inductively coupled plasma sector field mass spectrometer (ICP-SFMS). We achieved sub-picogram-per gram (pg g-1) as limits of detection (LODs) ranging from 0.4 pg g-1 for I-, 0.8 pg g-1 for IO3-, 4 pg g-1 for Br-, and 1 pg g-1 for BrO3-, respectively. These values represent a decrease of up to 30 times compared to the LODs reported in other studies. The method was validated using deep snow samples from the Svalbard Islands, collected at the end of the polar night to quantify various oxidized compounds during their seasonal minimum. In the future, this method could prove useful in the paleoclimatic study of ice cores and snow, as well as in ice chemistry research.
 
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URI
 
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https://repository.kopri.re.kr/handle/201206/16279
 
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DOI
 
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http://dx.doi.org/10.1186/s40543-024-00462-0
 
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Type
 
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Article
 
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Station
 
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해당사항없음
 
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Indexed
 
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SCIE
 
- Appears in Collections  
 - 2023-2023, Investigation of ice microstructure properties for developing low-temperature purification and environment/energy materials (23-23) / Kim, Kitae (PE23120)
 
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