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PHA Guidance for Correlating H2S Concentrations in Process Streams to Severity of Adverse Health Outcomes in the Event of a Leak

机译:PHA指导在泄漏时将H2S浓度与过程流中的浓度相关,以对不利健康结果的严重程度

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Process hazard analysis (PHA) teams are responsible for determining and categorizing the potential impact of a loss of containment. For streams containing hydrogen sulfide (H?S), the health and safety consequences of a worker being exposed to H?S are a function of airborne concentration in the breathing zone and duration of exposure. PHA teams often do not have the technical knowledge to link the known concentration of H?S in the process stream to an adverse health outcome. This paper describes the methodology and the assumptions made in developing such guidance. H2S concentration in the stream was correlated to concentration of H2S in the breathing zone. Vapor releases used dispersion modeling, while liquid releases required additional modeling to determine the amount of H2S liberated from the released liquid. Modeling was done on different process streams under a variety of conditions. Concentration in the breathing zone was linked to the most probable health and safety outcome by surveying relevant literature published by private and government sources. This correlated the stream concentration of H2S directly to the consequence categorization used in the PHA. Results were summarized, providing simplified guidance that is valid over a wide range of process conditions and release scenarios.
机译:过程危险分析(PHA)团队负责确定和分类遏制损失的潜在影响。对于含有硫化氢(H 2)的流,将工人暴露于H = S的健康和安全后果是呼吸区中的空气浓度和暴露持续时间的函数。 PHA团队往往没有技术知识,以将过程流中已知的H·S浓度链接到不利的健康结果。本文介绍了在制定这种指导方面所做的方法和假设。流中的H 2 S浓度与呼吸区中H2S的浓度相关。蒸汽释放使用过分散模拟,而液体释放需要额外的建模以确定从释放的液体中释放的H2的量。在各种条件下在不同的过程流中进行建模。呼吸区的浓度与私营和政府来源出版的相关文献进行了联系。这将H2S的流浓度直接与PHA中使用的后果分类相关联。结果总结了,提供了在广泛的过程条件和发布方案范围内有效的简化指导。

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