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分析化学工程课程以提高过程安全能力。

Analysis of chemical engineering curriculum to improve process safety competency.

作者信息

Sofri Salwa, Reddy Prasad D M, Bin Azri Mohammad Hazwan, Timbang Aisah

机构信息

Petroleum and Chemical Engineering Programme Area, Universiti Teknologi Brunei, Brunei Darussalam.

出版信息

Int J Occup Saf Ergon. 2023 Jun;29(2):642-650. doi: 10.1080/10803548.2022.2063499. Epub 2022 May 16.

Abstract

Continuous process safety (PS) development is the key to maintaining a good PS system, and its competency plays a substantial role. However, PS incompetency can still be demonstrated in several process-related accidents, particularly major catastrophic incidents. To mitigate this gap, universities' PS education is analysed. Because PS is an important element of chemical engineering (CE), this study seeks to identify the most prevalent PS subjects taught in the top 300 Quacquarelli Symonds ranking (2019) universities. Findings indicate that PS education remains insufficiently addressed in undergraduate CE curricula over the years. Twelve common topics, i.e., human factors; management of hazards, incidents, and risk; design; fire and explosion; legislation and standards; sustainability; process control; economics; toxicology; and software are identified. Notably, sustainability is acknowledged to be a new common PS topic, depicting its demand for industrial evolution. Ultimately, strengthening the collaboration between universities and industries is required to develop graduates' PS competency. ALARP: as low as reasonably practicable; CAD: computer-aided design; CE: chemical engineering; ETA: event tree analysis; FTA: fault tree analysis; FMEA: failure mode and effect analysis; HAZAN: hazard analysis; HAZID: hazard identification; HAZOP: hazard and operability; HSE: health, safety and environment; HYSYS: Hyprotech Systems; LCA: life cycle analysis; LOPA: layer of protection analysis; MS: Microsoft; ORP: occupational risk prevention; PC: personal computer; PHA: process hazard analysis; PS: process safety; PSM: process safety management; QS: Quacquarelli Symonds; SMS: safety management system.

摘要

持续的过程安全(PS)发展是维持良好PS系统的关键,其能力起着至关重要的作用。然而,在一些与过程相关的事故中,尤其是重大灾难性事件中,仍可表现出PS能力不足的情况。为了缩小这一差距,对大学的PS教育进行了分析。由于PS是化学工程(CE)的一个重要元素,本研究旨在确定在2019年QS排名前300的大学中教授的最普遍的PS主题。研究结果表明,多年来本科CE课程中对PS教育的关注仍显不足。确定了十二个常见主题,即人为因素;危害、事故和风险的管理;设计;火灾和爆炸;法规和标准;可持续性;过程控制;经济学;毒理学;以及软件。值得注意的是,可持续性被认为是一个新的常见PS主题,体现了其对产业发展的需求。最终,需要加强大学与行业之间的合作,以培养毕业生的PS能力。ALARP:尽可能合理可行;CAD:计算机辅助设计;CE:化学工程;ETA:事件树分析;FTA:故障树分析;FMEA:失效模式与效应分析;HAZAN:危害分析;HAZID:危害识别;HAZOP:危险与可操作性分析;HSE:健康、安全与环境;HYSYS:Hyprotech系统;LCA:生命周期分析;LOPA:保护层分析;MS:微软;ORP:职业风险预防;PC:个人计算机;PHA:过程危害分析;PS:过程安全;PSM:过程安全管理;QS:夸夸雷利·西蒙兹;SMS:安全管理系统

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