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Techno-Ecological Synergy: A Framework for Sustainable Engineering

机译:技术 - 生态协同:可持续工程的框架

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摘要

Even though the importance of ecosystems in sustaining all human activities is well-known, methods for sustainable engineering fail to fully account for this role of nature. Most methods account for the demand for ecosystem services, but almost none account for the supply. Incomplete accounting of the very foundation of human well-being can result in perverse outcomes from decisions meant to enhance sustainability and lost opportunities for benefiting from the ability of nature to satisfy human needs in an economically and environmentally superior manner. This paper develops a framework for understanding and designing synergies between technological and ecological systems to encourage greater harmony between human activities and nature. This framework considers technological systems ranging from individual processes to supply chains and life cycles, along with corresponding ecological systems at multiple spatial scales ranging from local to global. The demand for specific ecosystem services is determined from information about emissions and resource use, while the supply is obtained from information about the capacity of relevant ecosystems. Metrics calculate the sustainability of individual ecosystem services at multiple spatial scales and help define necessary but not sufficient conditions for local and global sustainability. Efforts to reduce ecological overshoot encourage enhancement of life cycle efficiency, development of industrial symbiosis, innovative designs and policies, and ecological restoration, thus combining the best features of many existing methods. Opportunities for theoretical and applied research to make this framework practical are also discussed.
机译:尽管众所周知生态系统在维持人类所有活动中的重要性,但可持续工程方法无法充分说明自然的这种作用。大多数方法都说明了对生态系统服务的需求,但几乎没有方法说明了供应。对人类福祉的根本基础的不完整评估可能导致旨在增强可持续性的决策产生不正当结果,而丧失了从自然界中以经济和环境优势方式满足人类需求的能力所带来的机会。本文建立了一个框架,用于理解和设计技术与生态系统之间的协同作用,以鼓励人类活动与自然之间的更大和谐。该框架考虑了从单个过程到供应链和生命周期的技术系统,以及从本地到全球的多个空间尺度上的相应生态系统。对特定生态系统服务的需求是根据有关排放和资源使用的信息确定的,而供应则是根据有关生态系统的能力的信息获得的。度量标准可在多个空间尺度上计算单个生态系统服务的可持续性,并有助于为本地和全球可持续性定义必要但不充分的条件。减少生态过冲的努力鼓励提高生命周期效率,发展工业共生,创新设计和政策以及生态恢复,从而结合了许多现有方法的最佳功能。还讨论了使该框架可行的理论和应用研究的机会。

著录项

  • 作者

    Bakshi BR; Ziv G; Lepech MD;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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