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◆ ACS Sustainable Resource Management2026-02-06· Carbon footprint

Corporate Carbon Footprint and Scope 3 Emissions in Stainless Steel Electric Arc Furnace Steelmaking: A Step To Tackle Climate Change

Luca Testini, Alessandro Misul, Vincenzo Morreale, Philippe Brocard, Livia Persico, Davide Mombelli, Giovanni Dotelli

原始摘要(英文原文)· Original abstract
Abstract Electric Arc Furnace (EAF) steelmaking is generally less carbon-intensive than primary production routes; however, stainless steel production involves significant upstream Scope 3 emissions that are critical for comprehensive carbon accounting. This study presents a corporate carbon footprint (CF) analysis, based on primary data, of an EAF steelworks producing stainless steel long products, conducted according to ISO 14064:2019, GHG Protocol guidelines, and relevant Product Category Rules. A cradle-to-gate analysis quantified Scopes 1, 2, and 3 emissions for a functional unit of 1 ton of stainless steel produced. The total CF was determined to be 4.57 ton CO2,eq/tonSS, with Scope 3 emissions as the dominant contribution at approximately 70%. Upstream raw material production, primarily ferroalloys for chromium and nickel, drives ≈80% of Scope 3 emissions. Scope 1 emissions (14.7% of total CF) and Scope 2 emissions (15.1% of total CF) constituted smaller yet notable shares. A sensitivity analysis was conducted on Scope 1, Scope 2, and Scope 3 emissions, illustrating the main defossilization levers available to steelmakers. This reinforced the importance of Scope 3 emissions embedded in raw materials creating a shift for meaningful defossilization in scrap-based stainless steel production, which must be realized at the value chain level, overcoming the single steelmaking site.
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Corporate Carbon Footprint and Scope 3 Emissions in Stainless Steel Electric Arc Furnace Steelmaking: A Step To Tackle Climate Change — 科研速览 Science Skim