Department of Health and Safety Convergence Science, Korea University, Anam-ro 145, Seongbuk-gu, Seoul 02841, Korea.
Int J Environ Res Public Health. 2020 May 6;17(9):3236. doi: 10.3390/ijerph17093236.
In existing risk analysis techniques like the hazard and operability study (HAZOP) and the safety integrity level (SIL), design for operator safety is not considered. The health, safety, and environment (HSE) engineering depicts a detailed design directly related to the operator safety. However, the human risk had not been comprehensively analyzed. This paper proposes HSE-HAZOP as a technique for examining the systematic and efficient application of HSE engineering by exploiting the HAZOP systematic risk analysis technique and a quantitative risk derivation method, which is an advantage of the SIL. The analysis consists of four steps: the HSE-HAZOP preparation phase, risk analysis phase, risk assessment phase, and risk reduction phase. One part of a solution styrene butadiene rubber (SSBR) plant was used for a case study. In this case study, the items that handle with heptanoic acid were the study scope. After the risk assessment, we introduced the HSE engineering technique that should be applied for the risk reduction. Since there is no existing risk analysis method for HSE engineering, this proposed HSE-HAZOP is meaningful because it suggests systematic analysis method of the operator safety.
在现有的风险分析技术(如危害与可操作性研究 (HAZOP) 和安全完整性等级 (SIL))中,并未考虑操作员安全的设计。健康、安全与环境 (HSE) 工程描绘了与操作员安全直接相关的详细设计。然而,人类风险并未得到全面分析。本文提出了 HSE-HAZOP,它通过利用 HAZOP 系统风险分析技术和 SIL 的定量风险推导方法,来检查 HSE 工程的系统和有效应用,这是 SIL 的一个优势。分析包括四个步骤:HSE-HAZOP 准备阶段、风险分析阶段、风险评估阶段和风险降低阶段。丁苯橡胶 (SSBR) 工厂的一部分被用于案例研究。在该案例研究中,处理庚酸的项目是研究范围。在风险评估之后,我们引入了应应用于降低风险的 HSE 工程技术。由于没有现有的 HSE 工程风险分析方法,因此提出的 HSE-HAZOP 具有意义,因为它提出了操作员安全的系统分析方法。