Track 5: Cross-Cutting Themes

280 studies to serve as reference points for the development, deployment, and value assessment of the broader portfolio. 2.2 Development of initiatives In its operational strategy, Vale’s Circular Mining Program identified five key levers spanning all stages of the ferrous mining value chain: • Reduction in Waste Rock Generation: Enable the extraction and utilization of low-grade iron ores or ores containing contaminants, previously classified as waste rockd, thereby reducing waste generation and promoting more efficient use of mineral reserves. This is achieved primarily through the expanded application of technological solutions in mineral beneficiation and blending strategies. • Utilization of Waste Rock Stockpiles: Explore and develop pathways for the use of materials previously considered waste, such as ferriferous formation waste rock in stockpiles, while maintaining market quality standards and aligning with customer requirements. • Reduction in Tailings Generation: Advance techniques to minimize tailings generation by increasing the mass recovery of iron from currently produced tailings. This reduces the environmental impact associated with tailings disposal and maximizes the exploitation of existing reserves. Vale has invested in innovation and in the refinement of extraction and beneficiation technologies to support the lowest possible generation of tailings within its production processes. • Utilization of Tailings in Dams: Investigate the recovery of fine and ultrafine iron ore tailings deposited in stockpiles and dams, transforming this material into a product for direct commercialization or conversion into new products. • Development and Exploration of Co-products: Design processes to generate new products or co-products derived from waste rock and tailings, independent of the primary iron ore production chain. The development of each project, whether involving waste rocks, tailings, or coproducts, follows a structured mineral project development flow. This process requires, first, a detailed characterization of the chemical composition and contaminant profile of the materials, followed by an assessment of their behavior within processing plants and, in the case of coproducts, their potential applicability. Where material removal is necessary, geotechnical engineering projects must be

RkJQdWJsaXNoZXIy MTM0Mzk2