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Sustainable nanotechnology decision support system: bridging risk management, sustainable innovation and risk governance

机译:可持续纳米技术决策支持系统:桥接风险管理,可持续创新和风险治理

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摘要

The significant uncertainties associated with the (eco)toxicological risks of engineered nanomaterials pose challenges to the development of nanoenabled products toward greatest possible societal benefit. This paper argues for the use of risk governance approaches to manage nanotechnology risks and sustainability, and considers the links between these concepts. Further, seven risk assessment and management criteria relevant to risk governance are defined: (a) life cycle thinking, (b) triple bottom line, (c) inclusion of stakeholders, (d) risk management, (e) benefitrisk assessment, (f) consideration of uncertainty, and (g) adaptive response. These criteria are used to compare five well-developed nanotechnology frameworks: International Risk Governance Council framework, Comprehensive Environmental Assessment, Streaming Life Cycle Risk Assessment, Certifiable Nanospecific Risk Management and Monitoring System and LICARA NanoSCAN. A Sustainable Nanotechnology Decision Support System (SUNDS) is proposed to better address current nanotechnology risk assessment and management needs, and makes. Stakeholder needs were solicited for further SUNDS enhancement through a stakeholder workshop that included representatives from regulatory, industry and insurance sectors. Workshop participants expressed the need for the wider adoption of sustainability assessment methods and tools for designing greener nanomaterials.
机译:与工程纳米材料的(生态)毒理学风险相关的重大不确定性,对实现最大可能的社会效益的纳米产品的开发提出了挑战。本文主张使用风险治理方法来管理纳米技术风险和可持续性,并考虑这些概念之间的联系。此外,定义了与风险治理相关的七项风险评估和管理标准:(a)生命周期思维,(b)三重底线,(c)利益相关者的参与,(d)风险管理,(e)利益风险评估, )考虑不确定性,以及(g)自适应响应。这些标准用于比较五个发达的纳米技术框架:国际风险管理委员会框架,全面的环境评估,流式生命周期风险评估,可认证的纳米特异性风险管理和监控系统以及LICARA NanoSCAN。为了更好地解决当前的纳米技术风险评估和管理需求,提出了可持续纳米技术决策支持系统(SUNDS)。通过利益相关方研讨会(包括监管,行业和保险部门的代表),征求了利益相关方的需求,以进一步提高SUNDS。讲习班的与会者表示需要更广泛地采用可持续性评估方法和工具来设计更绿色的纳米材料。

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