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September 10, 2025Logistics7 citationsOpen Access

A Comprehensive Survey of Artificial Intelligence and Robotics for Reducing Carbon Emissions in Supply Chain Management

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MMMariem MradUniversity of SfaxMFMohamed Amine FrikhaVrije Universiteit BrusselYBYounés BoujelbèneUniversity of Sfax

Key Points

  • AI-driven logistics optimization is frequently reported for reducing transportation emissions, confirming its efficacy.
  • Robotic automation enhances energy efficiency in warehousing, presenting a significant opportunity for emissions reduction.
  • Barriers such as high energy demands and data integration complexities hinder the progress of sustainable SCM practices.
  • Establishing standardized validation benchmarks is critical for guiding future research and successful implementation.

Abstract

Background: Artificial intelligence (AI) and robotics are increasingly pivotal for reducing carbon emissions in supply chain management (SCM); however, research exploring their combined potential from a sustainability perspective remains fragmented. This study aims to systematically map the research landscape and synthesize evidence on the applications, benefits, and challenges. Methods: A systematic scoping review was conducted on 23 peer-reviewed studies from the Scopus database, published between 2013 and 2024. Data were systematically extracted and analyzed for publication trends, application domains (e.g., transportation, warehousing), specific AI and robotic technologies, emissions reduction strategies, and implementation challenges. Results: The analysis reveals that AI-driven logistics optimization is the most frequently reported strategy for reducing transportation emissions. At the same time, robotic automation is commonly associated with improved energy efficiency in warehousing. Despite these benefits, the reviewed literature consistently identifies significant barriers, including the high energy demands of AI computation and complexities in data integration. Conclusions: This review confirms the transformative potential of AI and robotics for developing low-carbon supply chains. An evidence-based framework is proposed to guide practical implementation and identify critical gaps, such as the need for standardized validation benchmarks, to direct future research and accelerate the transition to sustainable SCM.

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Cite This Study

Mrad et al. (2025) studied this question.

synapsesocial.com/papers/68c1b19354b1d3bfb60e8c7ehttps://doi.org/10.3390/logistics9030104
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