马来西亚锅炉操作的风险管理框架和实践

Mohd Fahmi Mohd Yusof, Roslina Mohammad
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摘要

锅炉操作被认为是最危险的工作环境之一。由于锅炉厂的工作性质,工人面临着许多安全隐患。工作环境通常是炎热和嘈杂的,包括几个主要的设备和操作,在其过程中,总是有压伤、电击和烧伤、锅炉火灾和爆炸以及接触危险化学品的危险。在锅炉运行中执行的许多活动是复杂的;这些操作是危险的,可能会导致事故。本研究旨在制定和提出在马来西亚锅炉厂危险工作环境中工作的风险管理框架,以预防和控制事故,并实施适当的安全和健康管理。其次,根据马来西亚锅炉的工作性质,采用Bowtie风险评估、危害和可操作性研究(HAZOP)、失效模式和影响分析(FMEA)等几种方法,分析锅炉运行的风险因素和危害。结果表明,锅炉分区的危险源危险率分为极端危险度(8%)、高危险度(14%)、中危险度(35%)和低危险度(43%)。基于锅炉部门危害类型的风险评估有从高到低的风险等级,分别是机械危害(25%)、电气危害(10%)、化学危害(6%)和物理危害(59%)。开发的风险管理框架和改进的风险评估技术可以解决锅炉运行安全和风险管理中可持续性方面的整合问题。
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Risk management framework and practices for boiler operations in Malaysia
Boiler operations had a reputation for being one of the most hazardous work environments. Workers in the boiler plant face many safety risks due to the nature of the job. The work environment is often hot and noisy, consisting of several major equipment and operations involved in its process, and there is always a risk for crushing injuries, electrical shocks and burns, boiler fires and explosions, and contact with hazardous chemicals. Numerous activities performed in boiler operations are complex; these operations are hazardous and can cause accidents. This study aims to develop and propose risk management frameworks for working in a hazardous working environment at the boiler plant in Malaysia to prevent and control accidents and implement adequate safety and health management. Next, to analyze the risk factors and hazards for boiler operations based on the nature of work at the boilers in Malaysia using several methods: Bowtie Risk Assessment, Hazard and Operability Study (HAZOP), Failure Mode and Effect Analysis (FMEA). The result showed that the rate based on hazard sources in the boiler division has Extreme Risk levels (8%), High (14%), Medium (35%), and Low (43%). Risk assessment based on the type of hazard in the boiler division has risk levels ranging from high to the lowest score is the danger of Mechanical (25%), Electrical hazard (10%), chemical hazards (6%), and physical hazards (59%). The developed risk management framework with enhanced risk assessment techniques may solve the integration of sustainability aspects in boiler operations safety and risk management.
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