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A risk reduction approach for academic research labs: A case study on naphthenic corrosion

机译:学术研究实验室的风险降低方法 - 以环烷腐蚀为例

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摘要

Academic research and development (R&D) labs are a significant part of academic life. But there can be physical, environmental, and experiment quality risks associated to this activity. Academic labs can present specific experiments, which have associated risks for researchers. Academic labs are also characterized by a high turnover of students and many of them are not fully aware of the level of physical and environmental risks of their activity. Accidents in academic labs with injuries and loss of life are facts that have to be tackled through risk management approaches. The objective of this paper is to present an integrated management approach, tackling risk management and analysis methods. HAZOP (Hazard and Operability Study) and PFMEA (Process Failure Mode and Effects Analysis) enabled, respectively, the analysis of safety and environmental risks. By quantifying the level of risk according to the type of experiment and the research context, it is possible to provide safety to the system. The resulting Digital Poka-Yoke - a mistake-proofing approach - has brought about the desired quality of results in experiments. The proposed approach was validated through a case study monitoring naphthenic corrosion experiments conducted by the Lab of Surface Electrochemistry and Corrosion (LSEC) at the Federal University of Parana (UFPR). As a consequence, this approach is currently in use at this lab.
机译:学术研发(研发)实验室是学术生活的重要组成部分。但是可以存在与此活动相关的物理,环境和实验质量风险。学术实验室可以提出具体实验,这对研究人员有相关的风险。学术实验室的特点也是学生的高营业额,其中许多人并不完全了解其活动的身体和环境风险水平。患有伤害和生命丧失的学术实验室的事故是必须通过风险管理方法解决的事实。本文的目的是展示综合管理方法,解决风险管理和分析方法。 HAZOP(危险和可操作性研究)和PFMEA(工艺破坏模式和效果分析)分别使安全和环境风险分析。通过量化根据实验类型和研究背景的风险水平,可以向系统提供安全性。由此产生的数字Poka-yoke - 一种错误的方法 - 已经带来了实验中所需的结果。通过案例研究验证了所提出的方法,验证了在联邦ParaNa(UFPR)的表面电化学和腐蚀(LSEC)的实验室进行的环烷笔腐蚀实验进行了核查。因此,此实验室目前正在使用这种方法。

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