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循环经济中的技术轨迹:将专利分析与可持续发展目标相联系。

Technological trajectories in circular economy: Bridging patent analytics with sustainable development goals.

作者信息

Maghsoudi Mehrdad, Mohammadi Navid, Soghi Mahdi, Sabet Mohammad

机构信息

Shahid Beheshti University, Tehran, Iran.

University of Tehran, Tehran, Iran.

出版信息

J Environ Manage. 2025 Apr;379:124752. doi: 10.1016/j.jenvman.2025.124752. Epub 2025 Mar 5.

Abstract

This study examines key technologies in the circular economy through patent mining and expert evaluations. We identified eleven distinct technology clusters, including Smart Fluid Management Systems, Circular Chemical Processing, and Structural Design for Circularity. Using the S-curve model, we analyzed the maturity stages of these technologies, revealing a mix of mature and emerging technologies. For example, Energy Storage and Electrical Systems have reached maturity, while Circular Chemical Processing and Waste Treatment are still in the growth phase. These findings highlight the varying levels of technological development and the potential for targeted research and investment. To assess sustainability, we used the TOPSIS method, which ranks technologies based on their alignment with the Sustainable Development Goals (SDGs). Our results indicate that Circular Chemical Processing, Thermal Management, and Structural Design for Circularity are key areas for innovation, offering significant potential to contribute to global sustainability goals. The study emphasizes the need for integrated solutions, suggesting that technological progress will be driven by synergies between different technology clusters. It calls for cross-sector collaboration to maximize the impact of these technologies. By combining insights on technological maturity and sustainability alignment, this research provides a strategic roadmap for advancing circular economy practices. It offers guidance for industry stakeholders and policymakers on prioritizing investments in technologies that support long-term sustainability and resource efficiency. In conclusion, this study provides a comprehensive framework for understanding and advancing circular economy technologies, offering valuable insights for accelerating the transition toward a sustainable, circular economy.

摘要

本研究通过专利挖掘和专家评估来考察循环经济中的关键技术。我们识别出了11个不同的技术集群,包括智能流体管理系统、循环化学加工以及循环结构设计。利用S曲线模型,我们分析了这些技术的成熟阶段,发现既有成熟技术,也有新兴技术。例如,储能和电气系统已趋于成熟,而循环化学加工和废物处理仍处于增长阶段。这些发现凸显了技术发展的不同水平以及针对性研究和投资的潜力。为评估可持续性,我们使用了TOPSIS方法,该方法根据技术与可持续发展目标(SDGs)的契合度对其进行排名。我们的结果表明,循环化学加工、热管理以及循环结构设计是创新的关键领域,具有为全球可持续发展目标做出重大贡献的巨大潜力。该研究强调了综合解决方案的必要性,表明技术进步将由不同技术集群之间的协同效应驱动。它呼吁跨部门合作以最大化这些技术的影响。通过结合对技术成熟度和可持续性契合度的见解,本研究为推进循环经济实践提供了一份战略路线图。它为行业利益相关者和政策制定者在优先投资支持长期可持续性和资源效率的技术方面提供了指导。总之,本研究为理解和推进循环经济技术提供了一个全面的框架,为加速向可持续循环经济转型提供了宝贵的见解。

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