Skip to main content
U.S. flag

An official website of the United States government

Mass-balance-consistent geological stock accounting: A new approach toward sustainable management of mineral resources

January 2, 2024

Global resource extraction raises concerns about environmental pressures and the security of mineral supply. Strategies to address these concerns depend on robust information on natural resource endowments, and on suitable methods to monitor and model their changes over time. However, current mineral resources and reserves reporting and accounting workflows are poorly suited for addressing mineral depletion or answering questions about the long-term sustainable supply. Our integrative review finds that the lack of a robust theoretical concept and framework for mass-balance (MB)-consistent geological stock accounting hinders systematic industry-government data integration, resource governance, and strategy development. We evaluate the existing literature on geological stock accounting, identify shortcomings of current monitoring of mine production, and outline a conceptual framework for MB-consistent system integration based on material flow analysis (MFA). Our synthesis shows that recent developments in Earth observation, geoinformation management, and sustainability reporting act as catalysts that make MB-consistent geological stock accounting increasingly feasible. We propose first steps for its implementation and anticipate that our perspective as “resource realists” will facilitate the integration of geological and anthropogenic material systems, help secure future mineral supply, and support the global sustainability transition.

Publication Year 2024
Title Mass-balance-consistent geological stock accounting: A new approach toward sustainable management of mineral resources
DOI 10.1021/acs.est.3c03088
Authors Mark U. Simoni, Johannes A. Drielsma, Magnus Ericsson, Andrew G. Gunn, Sigurd Heiberg, Tom A. Heldal, Nedal T. Nassar, Evi Petavratz, Daniel B. Müller
Publication Type Article
Publication Subtype Journal Article
Series Title Environmental Science and Technology
Index ID 70256115
Record Source USGS Publications Warehouse
USGS Organization National Minerals Information Center