创造安全的未来:材料监管是化学的可持续发展使命

Stephen A. Matlin, Sarah E. Cornell, Klaus Kümmerer, Peter G. Mahaffy and Goverdhan Mehta
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引用次数: 0

摘要

作为物质转化的科学,化学提供了知识、创新和实践,这些都是当前面临多重环境危机(包括污染、气候变化和生物多样性丧失)和迫在眉睫的“关键”材料短缺等挑战时实现可持续发展的基础。本文介绍了化学和化学科学采用材料管理作为中心任务的案例,其目的是改造和利用地球上可用的物质资源库存,以确保所有生命所依赖的人类和地球的物理和生物系统的可持续性。研究了这一任务的影响,包括化学对扩展管理地球物理和生物材料和系统所需的知识、过程和产品的贡献。该任务包括支持稳定日益受到人为影响的地球系统所必需的能量转换。概述了化学的材料管理使命如何与可持续发展框架相互联系,这些框架提供了广泛的原则和目标,包括联合国的可持续发展目标和地球边界与人类安全框架,以及特定的化学运动和方向(包括绿色,可持续,循环和一个世界化学)和使能工具(例如系统思维,材料循环和生命周期评估)为化学对可持续性的贡献提供指导概念、途径和能力。通过与产品类型、可持续性工具和可持续性运动相关的三个案例研究,举例说明了材料管理任务的效用。强调化学专业需要跨学科合作,以帮助制定政策和实践,实现可持续的未来。这包括与其他方面共同参与谈判进程,就影响可持续性的目标、政策和方案达成全球协议。目前正在进行的关键工作包括努力寻找减少温室气体排放的机制,以将全球变暖限制在联合国设定的到2050年不超过工业化前水平1.5°C的目标内,并建立一个联合国化学品科学政策小组。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Inventing a secure future: material stewardship as chemistry's mission for sustainability

Inventing a secure future: material stewardship as chemistry's mission for sustainability

As the science of transformation of matter, chemistry provides knowledge, innovation and practice that are fundamental to the current efforts to achieve sustainability in the face of challenges that include multiple environmental crises (including pollution, climate change and biodiversity loss) and looming shortages of ‘critical’ materials. This article presents the case for chemistry and the chemical sciences adopting material stewardship as a central mission, whose aim is to transform and use the Earth's available stock of material resources in ways consistent with ensuring sustainability for people and for the physical and biological systems of the planet on which all life depends. The implications of this mission are examined, including for chemistry's contributions to extending knowledge, processes and products required for stewarding the Earth's physical and biological materials and systems. The mission includes supporting energy transitions necessary to stabilise Earth systems that are increasingly perturbed by anthropogenic effects. An overview is presented of how chemistry's mission of material stewardship interconnects with sustainability frameworks providing broad principles and goals, including the UN's Sustainable Development Goals and the Planetary Boundaries and Human Security frameworks, as well as with specific chemistry movements and orientations (including green, sustainable, circular and one-world chemistry) and enabling tools (e.g. systems thinking, material circularity and life cycle assessment) that provide guiding concepts, pathways and capacities for chemistry's contributions towards sustainability. The utility of the material stewardship mission is exemplified through three case studies, related to a product type, a sustainability tool, and a sustainability movement. The need is emphasised for the chemistry profession to work across disciplines to help shape policy and practice towards a sustainable future. This includes engaging with others in the processes of negotiation that shape global agreements on goals, policies and programmes that impact on sustainability. Critical ones currently in progress include the efforts to find mechanisms to reduce greenhouse gas emissions to limit global warming to the UN's target of not more than 1.5 °C above pre-industrial levels by 2050, and to establish a UN Science-Policy Panel on chemicals.

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