Development of a nano-specific safe-by-design module to identify risk management strategies.

IF 1.8 4区 医学 Q3 PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH
Hasnae Ben Jeddi, Henk Goede, Remy Franken, Eugene van Someren, Neeraj Shandilya, Ruby Vermoolen, Josephine Steck, Sebastien Artous, Jorge Salvador Hermosilla, Wouter Fransman
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引用次数: 0

Abstract

This article describes the development of a Safe-by-Design (SbD) module and its integration into an easy-to-use tool, named the Nano Exposure Quantifier-Safe-by-Design (NEQ-SbD) tool. The NEQ-SbD tool guides its user to lower the exposure to nanomaterials at the worksite where nanomaterials are manipulated or handled during a wide range of activities. This allows the tool user with an informed decision to assess airborne exposure and to select, compare, and identify appropriate risk management measures (RMM). The SbD module was developed using various information sources that can support and guide the SbD process, including the (i) RMM effectiveness based on analyses of an Exposure Control Efficacy Library (ECEL), (ii) RMM performance using a Computational Fluid Dynamics (CFD) model, (iii) e-cards based on a qualitative analysis of RMM information sources, and (iv) guidance for SbD strategy using an exposure directionality assessment. This information has been integrated in the user interface of the SbD module and NEQ-SbD tool to facilitate the SbD decision-making process. The SbD concept applied in the integrated NEQ-SbD tool introduces a comparison between a baseline exposure assessment and an (improved) SbD exposure assessment. The integrated NEQ-SbD tool consists of 4 modules including (i) a baseline exposure assessment, (ii) baseline results, (iii) SbD assessment, and (iv) SbD comparative results. The main purpose of the SbD module lies in guiding the user to the most sensitive (exposure) parameters and allowing a side-by-side comparison of potentially suitable RMMs. The integrated NEQ-SbD tool also offers a tiered approach and seamlessly shifts from a tier-1 to tier-2 uncertainty of an exposure assessment. The SbD module is illustrated using a worked example for the transfer of nano powders, showing the possibility of identifying SbD solutions for both safe-by-process and safe-by-material design purposes. The NEQ-SbD tool is a valuable tool for the SbD of nanomaterials and as a decision-making tool to support SbD risk management strategies that lead to minimizing health risks associated with occupational exposures.

开发纳米特定安全设计模块,以确定风险管理策略。
本文介绍了一个安全设计(SbD)模块的开发,并将其集成到一个易于使用的工具中,该工具名为纳米暴露量化器-安全设计(NEQ-SbD)工具。NEQ-SbD工具指导其用户在工作现场降低对纳米材料的暴露,在广泛的活动中,纳米材料被操纵或处理。这使得工具用户能够做出明智的决定来评估空气暴露,并选择、比较和确定适当的风险管理措施(RMM)。SbD模块是利用可支持和指导SbD过程的各种信息源开发的,包括(i)基于暴露控制功效库(ECEL)分析的RMM有效性,(ii)使用计算流体动力学(CFD)模型的RMM性能,(iii)基于RMM信息源定性分析的电子卡片,以及(iv)使用暴露方向性评估的SbD策略指导。这些信息已集成到SbD模块和NEQ-SbD工具的用户界面中,以促进SbD决策过程。综合NEQ-SbD工具中应用的SbD概念引入了基线暴露评估和(改进的)SbD暴露评估之间的比较。综合NEQ-SbD工具由4个模块组成,包括(i)基线暴露评估,(ii)基线结果,(iii) SbD评估和(iv) SbD比较结果。SbD模块的主要目的在于指导用户找到最敏感的(曝光)参数,并允许并排比较可能合适的RMMs。集成的NEQ-SbD工具还提供了分层方法,可以无缝地从暴露评估的第一级不确定性转换为第二级不确定性。SbD模块使用纳米粉末转移的一个工作示例来说明,展示了确定SbD解决方案的可能性,以实现工艺安全和材料安全的设计目的。NEQ-SbD工具是纳米材料SbD的宝贵工具,也是支持SbD风险管理战略的决策工具,从而最大限度地减少与职业接触相关的健康风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Annals Of Work Exposures and Health
Annals Of Work Exposures and Health Medicine-Public Health, Environmental and Occupational Health
CiteScore
4.60
自引率
19.20%
发文量
79
期刊介绍: About the Journal Annals of Work Exposures and Health is dedicated to presenting advances in exposure science supporting the recognition, quantification, and control of exposures at work, and epidemiological studies on their effects on human health and well-being. A key question we apply to submission is, "Is this paper going to help readers better understand, quantify, and control conditions at work that adversely or positively affect health and well-being?" We are interested in high quality scientific research addressing: the quantification of work exposures, including chemical, biological, physical, biomechanical, and psychosocial, and the elements of work organization giving rise to such exposures; the relationship between these exposures and the acute and chronic health consequences for those exposed and their families and communities; populations at special risk of work-related exposures including women, under-represented minorities, immigrants, and other vulnerable groups such as temporary, contingent and informal sector workers; the effectiveness of interventions addressing exposure and risk including production technologies, work process engineering, and personal protective systems; policies and management approaches to reduce risk and improve health and well-being among workers, their families or communities; methodologies and mechanisms that underlie the quantification and/or control of exposure and risk. There is heavy pressure on space in the journal, and the above interests mean that we do not usually publish papers that simply report local conditions without generalizable results. We are also unlikely to publish reports on human health and well-being without information on the work exposure characteristics giving rise to the effects. We particularly welcome contributions from scientists based in, or addressing conditions in, developing economies that fall within the above scope.
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