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March 4, 2026Scientific Reports1 citationsOpen Access

Blockchain-enabled traceability evaluation framework for mineral resource development and utilization: a fuzzy comprehensive assessment approach

GMGuodong MaHBHongxi BaiWZWei Zhao

Key Points

  • The research aims to develop a blockchain-enabled framework to improve traceability in mineral resource development.
  • Developed a four-layer architecture for data management
  • Constructed a hierarchical indicator system for evaluation
  • Applied Analytic Hierarchy Process for weight determination
  • Utilized fuzzy comprehensive evaluation for performance assessment
  • Conducted empirical case study with Huaxin Mining Group for validation.
  • Achieved a comprehensive traceability score of 81.2 (Good grade)
  • Demonstrated 96.8% data accuracy with blockchain compared to 82.4% in traditional methods
  • Reduced trace-back efficiency from 127.3 minutes to 4.7 minutes
  • Indicated a 47.3% contribution ratio of blockchain technology towards traceability improvement.

Abstract

Abstract Effective traceability management in mineral resource development faces persistent challenges including information asymmetry, data falsification, and verification difficulties across complex value chains. This paper proposes a comprehensive blockchain-enabled traceability evaluation framework integrating distributed ledger technology with systematic assessment methodologies. A four-layer architecture encompassing data acquisition, blockchain storage, analysis processing, and evaluation application is designed to ensure data integrity throughout the mineral lifecycle. A hierarchical indicator system spanning five dimensions—traceability breadth, depth, precision, timeliness, and data credibility—is constructed, with the Analytic Hierarchy Process employed for weight determination and fuzzy comprehensive evaluation applied for performance assessment. Empirical validation through case study analysis of Huaxin Mining Group demonstrates the framework’s practical applicability, yielding a comprehensive traceability score of 81.2 (Good grade). Comparative analysis reveals that blockchain-based systems achieve 96.8% data accuracy versus 82.4% for traditional approaches, with trace-back efficiency improving from 127.3 min to 4.7 min. The blockchain technology contribution ratio reaches 47.3% toward maximum traceability improvement. These findings provide theoretical foundations and practical guidance for advancing transparent and accountable mineral resource governance.

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Cite This Study

Ma et al. (2026) studied this question.

synapsesocial.com/papers/69a7cd2ad48f933b5eed94e5https://doi.org/10.1038/s41598-026-40195-1
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