Lie-Wen Xie, Hong-Rui Fan, Hui-Min Yu, Chao Huang, Lei Xu, Yue-Heng Yang, Shi-Tou Wu and Hao Wang
{"title":"A potential natural chalcopyrite reference material for in situ copper, iron, and sulfur isotope measurements†","authors":"Lie-Wen Xie, Hong-Rui Fan, Hui-Min Yu, Chao Huang, Lei Xu, Yue-Heng Yang, Shi-Tou Wu and Hao Wang","doi":"10.1039/D4JA00147H","DOIUrl":null,"url":null,"abstract":"<p >Chalcopyrite has been extensively utilized for tracing geological processes through its Cu, Fe and S isotopic compositions. However, the matrix-matched reference materials for micro-analysis are lacking. This study focused on assessing the feasibility of a natural chalcopyrite specimen (IGGCcp-1) as a matrix-matched reference material for <em>in situ</em> micro-analysis of Cu, Fe, and S isotopes. Electron probe microanalysis validated the uniform distribution of major elements within chalcopyrite grains, with no evidence of growth zoning. Random spot isotopic measurements using LA-MC-ICP-MS demonstrated remarkable consistency in <em>δ</em><small><sup>65</sup></small>Cu, <em>δ</em><small><sup>56</sup></small>Fe and <em>δ</em><small><sup>34</sup></small>S. These results indicated that the IGGCcp-1 specimen exhibited its suitability as a reference material. Using SN-MC-ICP-MS technique, the <em>δ</em><small><sup>65</sup></small>Cu value was accurately determined to be 0.43 ± 0.05‰ (2S, <em>N</em> = 30). Furthermore, the <em>δ</em><small><sup>56</sup></small>Fe<small><sub>IRMM-014</sub></small> and <em>δ</em><small><sup>57</sup></small>Fe<small><sub>IRMM-014</sub></small> values were recorded as −0.24 ± 0.04‰ (2S, <em>N</em> = 18) and −0.36 ± 0.09‰ (2S, <em>N</em> = 18), respectively. Additionally, the <em>δ</em><small><sup>34</sup></small>S<small><sub>VCDT</sub></small> measurement, performed with EA-IRMS, yielded a value of −0.28 ± 0.60‰ (2S, <em>N</em> = 10). These precisely measured isotope ratios established the recommended reference values for the IGGCcp-1 sample in future applications of Cu, Fe, and S isotope micro-analysis.</p>","PeriodicalId":81,"journal":{"name":"Journal of Analytical Atomic Spectrometry","volume":" 9","pages":" 2207-2219"},"PeriodicalIF":3.1000,"publicationDate":"2024-07-12","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Analytical Atomic Spectrometry","FirstCategoryId":"92","ListUrlMain":"https://pubs.rsc.org/en/content/articlelanding/2024/ja/d4ja00147h","RegionNum":2,"RegionCategory":"化学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q2","JCRName":"CHEMISTRY, ANALYTICAL","Score":null,"Total":0}
引用次数: 0
Abstract
Chalcopyrite has been extensively utilized for tracing geological processes through its Cu, Fe and S isotopic compositions. However, the matrix-matched reference materials for micro-analysis are lacking. This study focused on assessing the feasibility of a natural chalcopyrite specimen (IGGCcp-1) as a matrix-matched reference material for in situ micro-analysis of Cu, Fe, and S isotopes. Electron probe microanalysis validated the uniform distribution of major elements within chalcopyrite grains, with no evidence of growth zoning. Random spot isotopic measurements using LA-MC-ICP-MS demonstrated remarkable consistency in δ65Cu, δ56Fe and δ34S. These results indicated that the IGGCcp-1 specimen exhibited its suitability as a reference material. Using SN-MC-ICP-MS technique, the δ65Cu value was accurately determined to be 0.43 ± 0.05‰ (2S, N = 30). Furthermore, the δ56FeIRMM-014 and δ57FeIRMM-014 values were recorded as −0.24 ± 0.04‰ (2S, N = 18) and −0.36 ± 0.09‰ (2S, N = 18), respectively. Additionally, the δ34SVCDT measurement, performed with EA-IRMS, yielded a value of −0.28 ± 0.60‰ (2S, N = 10). These precisely measured isotope ratios established the recommended reference values for the IGGCcp-1 sample in future applications of Cu, Fe, and S isotope micro-analysis.