Juan Martín Hernández, Emmanuel Marie de la Fournière, Cinthia Paula Ramos, Mario Ernesto Debray, Rita Rosa Plá, Raquel Clara Jasan, Rodrigo Invernizzi, Luis Germán Rodríguez Brizuela, Martha Susana Cañas
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After three months, elemental distribution in samples was analyzed by microparticle-induced X-ray emission (microPIXE), and elemental concentration was determined by specific techniques: Ca and Fe by instrumental neutron activation analysis, Mn by inductively coupled plasma atomic emission spectrometry and S by a turbidimetric method. A differential distribution of S and Ca in thalli transplanted in-mine sites was detected compared to that of samples transplanted outside-mine sites. An overlap of Fe and S in the upper cortex of the apothecium section was observed, leading to infer a mineral association of both elements. Similar association was observed for Ca and S. In addition to these results, the significantly higher concentration detected for S and Mn in in-mine site samples suggests a contribution of Fe, S, Ca and Mn of mining origin to the content and distribution of these elements in <i>P. hypoleucites</i>. MicroPIXE complemented with Mössbauer spectroscopy analysis determined the presence of pyrite particles together with other iron-bearing minerals displaying different degrees of oxidation. These results point to a mining origin of the airborne particulate matter trapped by the lichen thalli transplanted to Bajo de la Alumbrera. These findings indicate that <i>P. Hypoleucites</i> acts as an excellent air quality biomonitor in the Bajo de la Alumbrera mine area.</p></div>","PeriodicalId":8377,"journal":{"name":"Archives of Environmental Contamination and Toxicology","volume":"86 2","pages":""},"PeriodicalIF":3.7000,"publicationDate":"2024-02-07","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Contribution of Mine-Derived Airborne Particulate Matter to Ca, Fe, Mn and S Content and Distribution in the Lichen Punctelia hypoleucites Transplanted to Bajo de la Alumbrera Mine, Catamarca (Argentina)\",\"authors\":\"Juan Martín Hernández, Emmanuel Marie de la Fournière, Cinthia Paula Ramos, Mario Ernesto Debray, Rita Rosa Plá, Raquel Clara Jasan, Rodrigo Invernizzi, Luis Germán Rodríguez Brizuela, Martha Susana Cañas\",\"doi\":\"10.1007/s00244-024-01053-1\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><p>The aim of this work was to relate the contribution of mine-derived airborne particulate matter to Ca, Fe, Mn and S content and distribution in <i>Punctelia hypoleucites</i> transplanted to Bajo de la Alumbrera, an important open-pit mine in Catamarca, Argentina. Lichen samples were transplanted to four monitoring sites: two sites inside the mine perimeter and two sites outside the mine. After three months, elemental distribution in samples was analyzed by microparticle-induced X-ray emission (microPIXE), and elemental concentration was determined by specific techniques: Ca and Fe by instrumental neutron activation analysis, Mn by inductively coupled plasma atomic emission spectrometry and S by a turbidimetric method. A differential distribution of S and Ca in thalli transplanted in-mine sites was detected compared to that of samples transplanted outside-mine sites. An overlap of Fe and S in the upper cortex of the apothecium section was observed, leading to infer a mineral association of both elements. Similar association was observed for Ca and S. 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引用次数: 0
摘要
这项研究的目的是将移植到阿根廷卡塔马卡省的一个重要露天矿 Bajo de la Alumbrera 的 Punctelia hypoleucites 的 Ca、Fe、Mn 和 S 的含量和分布与矿源空气中的颗粒物质的贡献联系起来。地衣样本被移植到四个监测点:两个在矿区内,两个在矿区外。三个月后,通过微粒子诱导 X 射线发射(microPIXE)分析了样本中的元素分布,并通过特定技术测定了元素浓度:钙和铁采用仪器中子活化分析法,锰采用电感耦合等离子体原子发射光谱法,而 S 则采用浊度法。与移植到矿区外的样本相比,在矿区内移植的铊中发现了不同的 S 和 Ca 分布。在叶绿体切片的上部皮层中观察到铁和 S 的重叠,从而推断出这两种元素的矿物关联。除了这些结果之外,在矿区内的样本中检测到的 S 和 Mn 的浓度也明显较高,这表明矿区内的铁、S、Ca 和 Mn 对这些元素在白头翁中的含量和分布有一定的影响。显微聚氧乙烯醚(MicroPIXE)与莫斯鲍尔光谱分析相辅相成,确定了黄铁矿颗粒与其他氧化程度不同的含铁矿物的存在。这些结果表明,移植到 Bajo de la Alumbrera 的地衣所捕获的空气中的微粒物质来源于采矿。这些研究结果表明,P. Hypoleucites 是 Bajo de la Alumbrera 矿区一个极好的空气质量生物监测器。
Contribution of Mine-Derived Airborne Particulate Matter to Ca, Fe, Mn and S Content and Distribution in the Lichen Punctelia hypoleucites Transplanted to Bajo de la Alumbrera Mine, Catamarca (Argentina)
The aim of this work was to relate the contribution of mine-derived airborne particulate matter to Ca, Fe, Mn and S content and distribution in Punctelia hypoleucites transplanted to Bajo de la Alumbrera, an important open-pit mine in Catamarca, Argentina. Lichen samples were transplanted to four monitoring sites: two sites inside the mine perimeter and two sites outside the mine. After three months, elemental distribution in samples was analyzed by microparticle-induced X-ray emission (microPIXE), and elemental concentration was determined by specific techniques: Ca and Fe by instrumental neutron activation analysis, Mn by inductively coupled plasma atomic emission spectrometry and S by a turbidimetric method. A differential distribution of S and Ca in thalli transplanted in-mine sites was detected compared to that of samples transplanted outside-mine sites. An overlap of Fe and S in the upper cortex of the apothecium section was observed, leading to infer a mineral association of both elements. Similar association was observed for Ca and S. In addition to these results, the significantly higher concentration detected for S and Mn in in-mine site samples suggests a contribution of Fe, S, Ca and Mn of mining origin to the content and distribution of these elements in P. hypoleucites. MicroPIXE complemented with Mössbauer spectroscopy analysis determined the presence of pyrite particles together with other iron-bearing minerals displaying different degrees of oxidation. These results point to a mining origin of the airborne particulate matter trapped by the lichen thalli transplanted to Bajo de la Alumbrera. These findings indicate that P. Hypoleucites acts as an excellent air quality biomonitor in the Bajo de la Alumbrera mine area.
期刊介绍:
Archives of Environmental Contamination and Toxicology provides a place for the publication of timely, detailed, and definitive scientific studies pertaining to the source, transport, fate and / or effects of contaminants in the environment. The journal will consider submissions dealing with new analytical and toxicological techniques that advance our understanding of the source, transport, fate and / or effects of contaminants in the environment. AECT will now consider mini-reviews (where length including references is less than 5,000 words), which highlight case studies, a geographic topic of interest, or a timely subject of debate. AECT will also consider Special Issues on subjects of broad interest. The journal strongly encourages authors to ensure that their submission places a strong emphasis on ecosystem processes; submissions limited to technical aspects of such areas as toxicity testing for single chemicals, wastewater effluent characterization, human occupation exposure, or agricultural phytotoxicity are unlikely to be considered.