RM - Resumos em livros de actas
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Percorrer RM - Resumos em livros de actas por Domínios Científicos e Tecnológicos (FOS) "Ciências Naturais::Ciências da Terra e do Ambiente"
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- 3D predictive modelling using Artificial Neural Network Analysis in the Neves-Corvo deposits [Resumo]Publication . Batista, Maria Joao; Represas, Patricia; Carvalho, João; Araújo, Vítor; Marques, Fábio; Xavier Matos, João Manuel; Morais, Igor; Albardeiro, Luís; Inverno, Carlos; de Oliveira, Daniel Pipa Soares; Dias, P.ABSTRACT: This study focuses on mineral and lithological vectoring to target new VMS deposits in the Neves-Corvo district, Portugal. Neves-Corvo is a world-class deposit in the Iberian Pyrite Belt, discovered in 1977 by ground gravity survey and one of Europe’s important copper-zinc producers. The deposit is hosted in volcano-sedimentary sequences within a moderately folded and thrust-faulted setting. Previous studies show differences between massive sulphide ores and stockwork ores, especially in trace-element associations. These geochemical particularities, combined with decades of exploration data, make the area well suited for advanced statistical and multivariate analysis. This study will apply an Artificial Neural Network Analysis (ANNA) methodology to the geochemical data, interpolated from boreholes, and a 3D rock density model, obtained by a constrained inversion of gravity data, to identify patterns that other methods might overlook, thereby improving targeting for new VMS mineralization. ANNA can extract trends from complex datasets and perform non-parametric analysis that do not assume a-priori relationships between variables. Therefore, instead of relying on linear or quadratic regressions approaches, this study employs the so-called black box to determine a mathematical function that can adequately approximate the representation of dependent and independent variables. In this study, the number of variables is considerably smaller than the number of training cases available. The training progresses iteratively, using the previous outputs to carefully and progressively adjust the predictors in an iterative manner, allowing for a continuous validation (based in a set of data taken from the total data before training to monitor the performance of the training in each cycle or iteration) of the different scenarios. The geological model was produced, and the drill-hole density database was used to constrain the 3D gravity inversion. All information was laid in a 5mx5mx5m 3D mesh, eliminating the blocks with missing data. The formatted data was then inputted into in STATISTICA’s ANNA software. The variables considered for the first step of ANNA were Cu, Zn, rock density, gravity inversion and Cu/Zn ratio for the Lombador, Neves Graça, Corvo and Zambujal deposits. From the training and validation procedures, it was possible to conclude that using gravity inversion as target and Cu/Zn and rock density as input data produced the more accurate prediction map.
- AfricaMaVal : Mineral Potential Mapping Study of European Critical Raw Materials (ECRM) of Africa [Resumo]Publication . Fullgraf, Thomas; Marques Prazeres, Cátia; Gonçalves, Pedro; Callec, Yannick; Fortes, Carla; Represas, Patricia; Vella, Alex; Guillaneau, Jean-Claude; de Oliveira, Daniel Pipa SoaresABSTRACT: The AfricaMaVal project, a 3.5-year initiative coordinated by the French Geological Survey (BRGM), fosters sustainable EU–Africa partnerships in the critical raw materials (CRM) sector. With 18 partners from 11 countries, it promotes responsible mineral sourcing for European industries while supporting Africa’s sustainable development. Work Package 1 (WP1), “Supply Potential,” led by the Portuguese Geological Survey (LNEG), assesses and maps African supply potential for European Critical Raw Materials (ECRM) through a harmonized, INSPIRE-compliant database. BRGM has developed machine learning (ML) algorithms for mineral resource assessment over the past 20 years, applied at scale since 2022. Within WP1, prospectivity maps for selected ECRMs were generated in ten countries, drawing on BRGM datasets, including 1:10M geological and structural maps and over 55,000 mineral occurrences.
- Atlas of European ornamental stone resourcesPublication . Heldal, Tom; Carvalho, Jorge; Dedić, Željko; Laskarides, KostasABSTRACT: Ornamental stone is today a raw material produced with great skills all over Europe, SME's and larger enterprises exploiting the vast diversity of European ornamental stone resources. Today's European stone industry is not only large and important but also highly dispersed throughout Europe, making a backbone industry for particularly rural areas. In Italy alone, there are more than 1000 stone quarrying enterprises and the sector in total employed more than 50 000 in 2011. Ornamental stone has contributed significantly in shaping our rural and urban landscapes, through its use in our built heritage from different historical periods. Yet, the actual use of local and regional stone resources in Europe is under threat due to sterilization of resources by urbanisation, infrastructure development and other land uses. Consequently, important resources are “unknowingly” lost for future production, and so are vital geological knowledge and skills for producing them. Loss of such resources will not only make it more difficult to maintain and restore our architectural heritage, but also prevent the use of traditional materials in the future.
- Characterization and recovery of critical raw materials using innovative techniques – case study of the XTRACT project: São Domingos Mine, Portugal [Resumo]Publication . Morais, Igor; Solá, A. Rita; Albardeiro, Luís; Silva, Teresa; Hedrich, Sabrina; Vargas, Sergio Alejandro Camargo; Sáez Blázquez, Cristina; Almeida, Bruno; Kuusiniemi, Pasi; Arancibia, MarioABSTRACT: The Iberian Pyrite Belt (IPB) is one of the world’s most significant provinces of Volcanogenic Massive Sulfide (VMS) deposits, hosting both world class orebodies and medium sized systems such as the São Domingos Mine. This deposit consists of a steeply dipping, E–W elongated mass of cupriferous pyrite with associated zinc and lead sulfides, emplaced within a tectonically complex volcanic sequence overlain by thick turbidites and the allochthonous Phyllite Quartzite Group. Historical exploitation from the mid 19th to the 20th century, involving incineration, smelting, heap leaching and cementation, generated extensive waste dumps, slags and leaching piles. These materials remain enriched in potentially toxic elements (Zn, Pb, Sb, Cu, As, Hg, Cd), and ongoing sulfide oxidation and Fe hydrolysis promote acid mine drainage, enhancing metal mobility and creating persistent environmental contamination hotspots. Modern assessment of these legacy wastes requires advanced analytical and monitoring technologies. High resolution geochemical mapping, supported by drone based remote sensing, enables precise delineation of critical raw material enrichment zones and accurate estimation of waste volumes and tonnage. Emerging geophysical tools, including the Airborne Geophysical Electromagnetic System and integrated ground and air borne remote sensing platforms for tailings content assessment, provide detailed subsurface information on conductivity, internal heterogeneity and structural controls. Muon tomography offers unique density imaging capabilities for detecting cavities, collapse zones and remnant sulfide bodies in inaccessible areas. For sustainable metal recovery, bioleaching technologies represent an eco-efficient approach capable of mobilizing Cu, Zn, Co and other strategic elements from low grade materials. The integration of these state-of-the-art methodologies positions São Domingos as an exemplary natural laboratory for developing innovative strategies in mine waste valorization and environmental risk mitigation, directly supporting the overarching objective of the XTRACT project: establishing a sustainable ecosystem for innovative resource recovery and complex ore extraction within a low impact, circular economy mining paradigm.
- Ciencia ciudadana en el análisis de peligros geológicos en el Área Atlántica [Resumo]Publication . Montoya-Montes, Isabel; Galindo, Inés; Sanchez, Nieves; Jaud, Marion; Le Dantec, Nicolas; Pinto, Cláudia; Ferreira, M. A.; Parker, Kieran; Lemon, Kirstin; Rodrigues, Domingos; Quental, Lídia; Ramalho, Elsa; Gonçalves, Pedro; Cruz-Pérez, N.; Ortega, A.; Holohan, Eoghan; Correia, Vítor; Jeremias, Filipe Telmo; Gomes, Rui CarrilhoRESUMEN: La participación ciudadana constituye la piedra angular común de los cinco Observatorios piloto de peligros geológicos (movimientos en masa, terremotos, inundaciones fluviales y costeras, riesgos geotécnicos y erosión costera) implementados en cuatro países del Área Atlántica en el marco del proyecto AGEO INTERREG, con varias iniciativas de divulgación llevadas a cabo para mejorar la concienciación de los ciudadanos sobre los peligros geológicos. En este contexto, el logro notable de AGEO reside en el desarrollo de herramientas estandarizadas capaces de satisfacer las numerosas necesidades de estos pilotos, de modo que tanto los ciudadanos como los colaboradores expertos tengan acceso a canales de comunicación que les permitan informar sobre la ocurrencia de eventos de peligros geológicos. Además, la utilización de productos y servicios de emergencia del programa europeo Copernicus asume un papel importante en el establecimiento y funcionamiento de los Observatorios. Debido a su adaptabilidad en todo el variado espectro de pilotos de AGEO, estas herramientas prometen una integración perfecta en posibles futuros observatorios ciudadanos de riesgos geológicos y por tanto una contribución a la mejora de los sistemas de gestión de riesgos.
- Geochemical and mineralogical characterization of manganese deposits in the Iberian Pyrite Belt - preliminary study [Resumo]Publication . Morais, Igor; Albardeiro, Luís; Silva, Teresa; de Oliveira, Daniel Pipa SoaresABSTRACT: The Iberian Pyrite Belt (IPB), traditionally recognized for its extensive volcanogenic massive sulfide deposits, also hosts a diverse set of manganese (Mn) occurrences whose genesis remains comparatively less explored. These deposits, distributed across distinct stratigraphic and structural contexts, represent an important record of the paleoenvironmental evolution and metallogenetic processes that shaped the region. In this preliminary study, several typologies of Mn deposits were sampled and analyzed, including stratiform levels interbedded within volcano sedimentary sequences, hydrothermal alteration zones peripheral to VMS systems, and horizons enriched through supergene processes associated with intense sulfide weathering. This diversity of geological settings allowed the assessment of internal variability within the deposits and the identification of the main geological controls governing Mn concentration. Mineralogical characterization revealed the presence of multiple primary and secondary phases, including oxides, hydroxides, carbonates, silicates and amorphous Mn–Fe–rich materials, as well as alteration products formed under oxidizing conditions. This mineralogical complexity indicates that Mn deposits in the IPB do not result from a single process, but rather from the interaction between hydrothermal, sedimentary and supergene mechanisms. From a geochemical perspective, the samples exhibit high Mn contents accompanied by significant concentrations of Fe, Ba and Si, in addition to trace elements that act as sensitive indicators of paleoenvironmental conditions. The observed geochemical relationships point to depositional environments influenced by low temperature hydrothermal circulation, accumulation in restricted basins under reducing conditions, and subsequent enrichment through oxidation and supergene leaching. These patterns are consistent with hybrid metallogenetic models characteristic of Mn enriched VMS systems. Overall, the results highlight the substantial typological variability and the mineralogical and geochemical complexity of Mn deposits in the IPB, reinforcing both their scientific relevance and their economic potential in the context of the energy transition. Future work should integrate isotopic analyses and high-resolution textural investigations to further elucidate the evolution of these deposits and their potential for resource development.
- Geochemistry of historical smelting slags from S. Domingos (Iberian Pyrite Belt) and implications for metal recovery [Resumo]Publication . Silva, Teresa; Morais, Igor; Albardeiro, Luís; Solá, A. Rita; de Oliveira, Daniel Pipa SoaresABSTRACT: The historical mining area of S. Domingos, located in the Iberian Pyrite Belt (IPB), southwestern Portugal, hosts significant accumulations of mining wastes including, smelting slags, iron oxides, milled blocks of pyrite and other residues resulting from centuries of processing Cu-rich massive sulfide ores. Polymetallic sulfide exploitation in this region dates to pre-Roman times and continued until 1966. These slags represent an important record of historical metallurgical practices and a potential secondary resource for critical and strategic raw materials (CRM/SRM) and other valuable metals. This study investigates the geochemical composition and mineralogical characteristics of historical smelting slags, to access not only their potential to metal recovery, but also their associated environmental risks. The slags are heterogeneous and chemically unstable waste products, typically Fe-rich, and dominated by fayalite, Fe2+2SiO4 (the iron-rich member of the olivine mineral group) together with glassy matrices. Fayalite is the result of the reaction of iron oxide with silica at high temperatures and host a range of metals including As, Ba, Co, Cu, Sn, Pb, Sr and Zn. Weathering processes promote metal mobilization of these elements, contributing to local contamination and to the development of acid mine drainage (AMD) products in the surrounding areas. Geochemical assessment indicates that significant quantities of valuable metals remain trapped within these historical slags due to inefficient recovery during earlier smelting technologies. Studies across the IPB suggest that mining wastes may contain significant valuable reserves of metals such as Fe, Zn, Cu and Pb, as well as CRM and other important trace metals. Consequently, these residues represent potentially promising targets for reprocessing using advanced metallurgical or hydrometallurgical technologies. Detailed geochemical characterization provides insights supporting the development of sustainable recovery strategies within a circular economy framework for historic mining districts of the Iberian Pyrite Belt. The results underscore the dual importance of recovering the S. Domingos slags as potential secondary mineral resources, while also mitigating the environmental impact associated with AMD.
- Mapping critical raw materials in Portugal [Resumo]Publication . de Oliveira, Daniel Pipa Soares; Gonçalves, Pedro; Filipe, Augusto; Santos, Sara; Albardeiro, Luís; Morais, Igor; Xavier Matos, João Manuel; Salgueiro, RuteABSTRACT: Reliable and secure access to Critical and Strategic Raw Materials (CRM/SRM) is a strategic requirement for the European Union, underpinning industrial competitiveness, technological innovation, and the transition toward a climate-neutral economy. In response to increasing supply risks, high import dependency, and growing demand driven by renewable energy systems and e-mobility, this work presents the second Critical Raw Materials Deposits Map of mainland Portugal, compiled at a scale of 1:700000. The map integrates geological, spatial, and mineral resource data derived primarily from the SIORMINP database (Information System of Portuguese Occurrences and Mineral Resources), developed and maintained by LNEG. This database currently contains over 2453 documented mineral occurrences, including 1214 strategic and critical mineral occurrences associated with EU-defined critical raw materials, which were systematically identified and evaluated. Key commodities represented include tungsten, lithium, antimony, titanium, rare earth elements, cobalt, tantalum-niobium, feldspar, nickel, and copper, among others. The systematic integration of these datasets provides a robust framework for national and European-scale mineral intelligence. A comprehensive scientific and cartographic methodology was applied, combining official geological mapping, the tectonostratigraphic domains of the Iberian Massif, and shaded-relief terrain visualization. The mineral occurrences were classified according to deposit type, size, structural orientation, and mineralization source, allowing visualization of both spatial distribution and metallogenic context. Cartographic design followed established visual variables theory to convey multidimensional geological information while maintaining clarity at the chosen scale. The resulting map represents a significant advance in national mineral intelligence, supporting mineral exploration targeting, resource assessment, land-use planning, and evidence-based policy decision-making. It also contributes to pan-European datasets, promoting data harmonization and international comparability. Conceived as a dynamic product, the map is designed to be periodically updated in line with revisions to the EU Critical Raw Materials list. Overall, this work demonstrates the value of integrated geological and cartographic approaches in strengthening raw material supply knowledge at both national and European scales.
- Use of mining wastes for high-tech thermoelectric applications : The case of START project in Iberian Pyrite Belt [Resumo]Publication . Morais, Igor; de Oliveira, Daniel Pipa Soares; Silva, Teresa; Albardeiro, Luís; Salgueiro, Rute; Neves, FilipeABSTRACT: Europe aims to become the first climate neutral continent by 2050, which means rapidly implementing a green transition to which the European Union (EU) is strongly committed through the European Green Deal. This green transition leverages unprecedented pressure on the intensive use of mineral resources. In this context the START project “Sustainable Energy Harvesting Systems Based on Innovative Mine Waste Recycling” emerged with the objective to use mining waste as a source of raw materials for the development of advanced energy conversion devices. Thermoelectric materials (TE) are functional materials that can directly convert thermal energy into electricity.
