Matches in SemOpenAlex for { <https://semopenalex.org/work/W2943531585> ?p ?o ?g. }
- W2943531585 endingPage "44" @default.
- W2943531585 startingPage "34" @default.
- W2943531585 abstract "This work presents the first Sm–Nd and Sr isotope TIMS data on the fine-grained fraction (<74 μm) of iron-rich deposits related to the November 5th, 2015 Mariana accident, caused by the rupture of the Fundão dam, an iron tailings pond operated by SAMARCO Mining. The failure of the Fundão dam provoked the gravitational flow of approximately 62 Mi m3 of a quartz and iron oxide-rich slurry composed of water, fine sand and silt, that flowed into the Gualaxo do Norte and Carmo rivers, and eventually along the whole Doce River. Samples were collected between 5 and 80 km downstream from the Fundão Dam, along the Santarém creek and the Gualaxo do Norte and Carmo rivers. XRD analyses show that samples are >90% composed of quartz and iron oxides (hematite, goethite and magnetite), with minor phyllosilicates (kaolinite and mica). Owing to sediment transport processes, heavy (hematite, goethite, magnetite) to light (quartz, phyllosilicates) mineral fractionation is observed. As with XRD data, major and trace element compositions also closely match those of the original Paleoproterozoic Cauê Formation BIF iron ore. The studied samples yielded δNd between −17.0 and −19.7 pptt (part per ten thousand), with the exception of one sample, with δNd of −23.2 pptt. Strontium 87Sr/86Sr ratios show variability between 0.7351 and 0.7729. The TDM ages scatter between 1.94 Ga and 2.75 Ga, with a negative correlation with phyllosilicate contents, indicating that the latter has preferential provenance from younger, more juvenile sources than the Cauê Fm itabirites. This interpretation is corroborated by two component mixing models of Nd and Sr isotope ratios, where the Nd–Sr isotopic signatures of the studied samples are compatible with >98% of the Cauê Fm itabirite component, mixed with a Neoproterozoic juvenile mafic rocks component, such as those from the ophiolitic assemblages of the distal Macaúbas Group, or tholeiitic mafic rocks of the Pedro Lessa suite. The reported Sm–Nd and Sr isotope compositions closely match those of the original iron ore and contrast with either those of the upriver or downriver Precambrian to Ordovician bedrock units. The firstly defined isotope signature can thus be potentially used as a proxy for ongoing suspended sediment dispersion studies farther downstream along the Doce River and in adjacent marine environment." @default.
- W2943531585 created "2019-05-09" @default.
- W2943531585 creator A5011280935 @default.
- W2943531585 creator A5012762129 @default.
- W2943531585 creator A5037017278 @default.
- W2943531585 creator A5041042729 @default.
- W2943531585 creator A5044779850 @default.
- W2943531585 creator A5050882195 @default.
- W2943531585 creator A5078272243 @default.
- W2943531585 date "2019-07-01" @default.
- W2943531585 modified "2023-10-17" @default.
- W2943531585 title "Sm–Nd and Sr isotope fingerprinting of iron mining tailing deposits spilled from the failed SAMARCO Fundão dam 2015 accident at Mariana, SE-Brazil" @default.
- W2943531585 cites W1198008732 @default.
- W2943531585 cites W1866036676 @default.
- W2943531585 cites W1953697892 @default.
- W2943531585 cites W1969185546 @default.
- W2943531585 cites W1972993222 @default.
- W2943531585 cites W1973518565 @default.
- W2943531585 cites W1978220484 @default.
- W2943531585 cites W1982210769 @default.
- W2943531585 cites W1982646204 @default.
- W2943531585 cites W1991964081 @default.
- W2943531585 cites W1993463767 @default.
- W2943531585 cites W2009738031 @default.
- W2943531585 cites W2011001616 @default.
- W2943531585 cites W2017002868 @default.
- W2943531585 cites W2018682723 @default.
- W2943531585 cites W2031596370 @default.
- W2943531585 cites W2045341149 @default.
- W2943531585 cites W2048409595 @default.
- W2943531585 cites W2055274306 @default.
- W2943531585 cites W2055965478 @default.
- W2943531585 cites W2064991810 @default.
- W2943531585 cites W2068136474 @default.
- W2943531585 cites W2073426602 @default.
- W2943531585 cites W2088223235 @default.
- W2943531585 cites W2090358791 @default.
- W2943531585 cites W2095074518 @default.
- W2943531585 cites W2099711342 @default.
- W2943531585 cites W2101782242 @default.
- W2943531585 cites W2123004271 @default.
- W2943531585 cites W2157517475 @default.
- W2943531585 cites W2182510427 @default.
- W2943531585 cites W2220964083 @default.
- W2943531585 cites W2267873332 @default.
- W2943531585 cites W2751919366 @default.
- W2943531585 cites W2804304463 @default.
- W2943531585 cites W2889429378 @default.
- W2943531585 cites W4237315527 @default.
- W2943531585 cites W4252427140 @default.
- W2943531585 cites W62216186 @default.
- W2943531585 doi "https://doi.org/10.1016/j.apgeochem.2019.04.021" @default.
- W2943531585 hasPublicationYear "2019" @default.
- W2943531585 type Work @default.
- W2943531585 sameAs 2943531585 @default.
- W2943531585 citedByCount "18" @default.
- W2943531585 countsByYear W29435315852020 @default.
- W2943531585 countsByYear W29435315852021 @default.
- W2943531585 countsByYear W29435315852022 @default.
- W2943531585 countsByYear W29435315852023 @default.
- W2943531585 crossrefType "journal-article" @default.
- W2943531585 hasAuthorship W2943531585A5011280935 @default.
- W2943531585 hasAuthorship W2943531585A5012762129 @default.
- W2943531585 hasAuthorship W2943531585A5037017278 @default.
- W2943531585 hasAuthorship W2943531585A5041042729 @default.
- W2943531585 hasAuthorship W2943531585A5044779850 @default.
- W2943531585 hasAuthorship W2943531585A5050882195 @default.
- W2943531585 hasAuthorship W2943531585A5078272243 @default.
- W2943531585 hasConcept C114793014 @default.
- W2943531585 hasConcept C127313418 @default.
- W2943531585 hasConcept C147789679 @default.
- W2943531585 hasConcept C150394285 @default.
- W2943531585 hasConcept C151730666 @default.
- W2943531585 hasConcept C161222754 @default.
- W2943531585 hasConcept C17409809 @default.
- W2943531585 hasConcept C178790620 @default.
- W2943531585 hasConcept C185592680 @default.
- W2943531585 hasConcept C199289684 @default.
- W2943531585 hasConcept C2777781897 @default.
- W2943531585 hasConcept C2777787761 @default.
- W2943531585 hasConcept C2779131772 @default.
- W2943531585 hasConcept C2779870107 @default.
- W2943531585 hasConcept C2780049196 @default.
- W2943531585 hasConcept C2780191927 @default.
- W2943531585 hasConcept C2816523 @default.
- W2943531585 hasConcept C5166401 @default.
- W2943531585 hasConceptScore W2943531585C114793014 @default.
- W2943531585 hasConceptScore W2943531585C127313418 @default.
- W2943531585 hasConceptScore W2943531585C147789679 @default.
- W2943531585 hasConceptScore W2943531585C150394285 @default.
- W2943531585 hasConceptScore W2943531585C151730666 @default.
- W2943531585 hasConceptScore W2943531585C161222754 @default.
- W2943531585 hasConceptScore W2943531585C17409809 @default.
- W2943531585 hasConceptScore W2943531585C178790620 @default.
- W2943531585 hasConceptScore W2943531585C185592680 @default.
- W2943531585 hasConceptScore W2943531585C199289684 @default.
- W2943531585 hasConceptScore W2943531585C2777781897 @default.
- W2943531585 hasConceptScore W2943531585C2777787761 @default.