Operationalization of the safe and sustainable by design framework for chemicals and materials: challenges and proposed actions.

IF 3 4区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Elisabetta Abbate, Ad M J Ragas, Carla Caldeira, Leo Posthuma, Irantzu Garmendia Aguirre, Anne Chloe Devic, Lya G Soeteman-Hernández, Mark A J Huijbregts, Serenella Sala
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引用次数: 0

Abstract

The production and use of chemicals and materials have both advantages and drawbacks for human and ecosystem health. This has led to a demand for carefully guided, safe, and sustainable innovation in the production of chemicals and materials, taking into consideration their entire life cycle. The European Commission's Joint Research Centre (JRC) has released the Safe and Sustainable by Design (SSbD) framework, which aims to support this objective. The SSbD framework consists of two components that are intended to be iteratively implemented throughout the innovation process: (1) the application of design principles phase, and (2) the safety and sustainability assessment phase. However, the operationalization of the framework is currently challenging. This article maps the challenges and proposes ways to address them effectively. The mapping, which is based on a literature review and stakeholder opinions, resulted in 35 challenges. The highest priority challenge is "integration of SSbD framework into the innovation process." To begin addressing this issue, this article recommends conducting a scoping analysis to define the SSbD study. This can be achieved through implementing a tiered approach that aligns with the objectives of the innovation and the growing expertise that comes with it. The second priority challenge is "data availability, quality and uncertainty." This can be supported by using Findability, Accessibility, Interoperability, and Reuse (FAIR) principles and by optimizing in silico methods at early stages of the innovation process. An infrastructure for data and communication is necessary to effectively engage with the entire value chain. The third priority challenge is "integration of safety and sustainability aspects," which requires a clear definition of how to integrate those aspects in the SSbD context, and harmonization, as far as possible, of input data, assumptions, and scenario construction. This review is the first step in accelerating the operationalization of the novel SSbD concept and framework into industrial practice.

化学品和材料的安全和可持续设计框架的运作:挑战和建议的行动。
化学品和材料的生产和使用对人类和生态系统的健康既有好处也有坏处。这导致了对化学品和材料生产中精心指导、安全和可持续创新的需求,并考虑到它们的整个生命周期。欧盟委员会联合研究中心(JRC)发布了旨在支持这一目标的安全与可持续设计(SSbD)框架。SSbD框架由两个组成部分组成,旨在在整个创新过程中迭代实施:(1)设计原则的应用阶段,(2)安全性和可持续性评估阶段。然而,该框架的运作目前具有挑战性。本文描绘了这些挑战,并提出了有效解决这些挑战的方法。这种基于文献综述和利益相关者意见的映射产生了35个挑战。最重要的挑战是“将SSbD框架集成到创新过程中”。为了开始解决这个问题,本文建议进行范围分析来定义SSbD研究。这可以通过实施与创新目标和随之而来的不断增长的专业知识相一致的分层方法来实现。第二个首要挑战是“数据的可用性、质量和不确定性”。这可以通过使用可查找性、可访问性、互操作性和重用(FAIR)原则以及在创新过程的早期阶段优化计算机方法来支持。数据和通信基础设施是有效参与整个价值链的必要条件。第三个首要挑战是“安全性和可持续性方面的整合”,这需要对如何在SSbD环境中整合这些方面有一个清晰的定义,并尽可能地协调输入数据、假设和场景构建。这项审查是加速将新的SSbD概念和框架应用于工业实践的第一步。
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来源期刊
Integrated Environmental Assessment and Management
Integrated Environmental Assessment and Management ENVIRONMENTAL SCIENCESTOXICOLOGY&nbs-TOXICOLOGY
CiteScore
5.90
自引率
6.50%
发文量
156
期刊介绍: Integrated Environmental Assessment and Management (IEAM) publishes the science underpinning environmental decision making and problem solving. Papers submitted to IEAM must link science and technical innovations to vexing regional or global environmental issues in one or more of the following core areas: Science-informed regulation, policy, and decision making Health and ecological risk and impact assessment Restoration and management of damaged ecosystems Sustaining ecosystems Managing large-scale environmental change Papers published in these broad fields of study are connected by an array of interdisciplinary engineering, management, and scientific themes, which collectively reflect the interconnectedness of the scientific, social, and environmental challenges facing our modern global society: Methods for environmental quality assessment; forecasting across a number of ecosystem uses and challenges (systems-based, cost-benefit, ecosystem services, etc.); measuring or predicting ecosystem change and adaptation Approaches that connect policy and management tools; harmonize national and international environmental regulation; merge human well-being with ecological management; develop and sustain the function of ecosystems; conceptualize, model and apply concepts of spatial and regional sustainability Assessment and management frameworks that incorporate conservation, life cycle, restoration, and sustainability; considerations for climate-induced adaptation, change and consequences, and vulnerability Environmental management applications using risk-based approaches; considerations for protecting and fostering biodiversity, as well as enhancement or protection of ecosystem services and resiliency.
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