Performing Hazard Analyses and Setting Triggers for Reevaluation in Lab-Scale Chemical Reactions

实验室安全 工作(物理) 危害 过程(计算) 比例(比率) 平面图(考古学) 工艺安全 在制品 化学实验室 生物危害 计算机科学 工程管理 化学安全 工程类 风险分析(工程) 医学 运营管理 化学 机械工程 核医学 历史 量子力学 有机化学 考古 病理 物理 操作系统
作者
Tracy M. Mattox,Anne L. Pham,Michael D. Connolly,Liana M. Klivansky,Rohan Dhall,Jeffrey J. Urban
出处
期刊:Journal of Chemical Education [American Chemical Society]
卷期号:100 (3): 1219-1226 被引量:2
标识
DOI:10.1021/acs.jchemed.3c00017
摘要

Laboratory chemical synthesis research typically lacks the preplanned hazard responses found in production-scale industrial laboratories. Chemical safety management is a known challenge in education-based facilities, which is concerning for academic and national laboratory environments working with inexperienced student researchers. At the Molecular Foundry, a U.S. Department of Energy (DOE) user facility, a chemical safety management form has been developed that follows DOE's Integrated Safety Management (ISM) process, which evaluates the risks and hazards associated with all forms of work. An ISM form for chemical synthesis is described here in detail. It is regularly used to guide chemical safety discussions between researchers and supervisors, to plan accident responses, and to establish triggers, at which point a reevaluation of the work is needed. The form makes it straightforward to know what limits researchers may work within and makes it clear which procedure changes will require a new safety assessment and discussion before work continues. The ISM form for synthesis is being successfully used in three fields of chemistry: Inorganic, Organic, and Biological. The form has also been adapted for liquid sample preparation in electron microscopy. Upper management, supervisors, students, and general users are engaged in this process. It is hoped that sharing this knowledge will enable educational institutions and other laboratories to develop similar methods to help researchers and supervisors understand the hazards as well as the working limits of any protocol, helping researchers to work more independently and safely within the laboratory.
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