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首页> 外文期刊>Environmental Science and Pollution Research >Risk assessment of occupational exposure to benzene using numerical simulation in a complex geometry of a reforming unit of petroleum refinery
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Risk assessment of occupational exposure to benzene using numerical simulation in a complex geometry of a reforming unit of petroleum refinery

机译:石油炼油改革单位复杂几何数值模拟职业暴露对苯对苯的风险评估

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There has been an increasing concern about the continuous and the sudden release of volatile organic pollutants from petroleum refineries and occupational and environmental exposures. Benzene is one of the most prevalent volatile compounds, and it has been addressed by many authors for its potential toxicity in occupational and environmental settings. Due to the complexities of sampling and analysis of benzene in routine and accidental situations, a reliable estimation of the benzene concentration in the outdoor setting of refinery using a computational fluid dynamics (CFD) could be instrumental for risk assessment of occupational exposure. In the present work, a computational fluid dynamic model was applied for exposure risk assessment with consideration of benzene being released continuously from a reforming unit of a refinery. For simulation of benzene dispersion, GAMBIT, FLUENT, and CFD post software are used as preprocessing, processing, and post-processing, respectively. Computational fluid dynamic validation was carried out by comparing the computed data with the experimental measurements. Eventually, chronic daily intake and lifetime cancer risk for routine operations through the two seasons of a year are estimated through the simulation model. Root mean square errors are 0.19 and 0.17 for wind speed and concentration, respectively. Lifetime risk assessments of workers are 0.4–3.8 and 0.0096–0.25 per 1000 workers in stable and unstable atmospheric conditions, respectively. Exposure risk is unacceptable for the head of shift work, chief engineer, and general workers in 141?days (38.77%) in a year. The results of this study show that computational fluid dynamics is a useful tool for modeling of benzene exposure in a complex geometry and can be used to estimate lifetime risks of occupation groups in a refinery setting.
机译:对石油炼油厂和职业和环境暴露的挥发性有机污染物的连续和突然释放越来越大。苯是最普遍的挥发性化合物之一,许多作者已经解决了职业和环境环境的潜在毒性。由于常规和意外情况下苯的采样和分析的复杂性,使用计算流体动力学(CFD)的炼油厂室外设定中的苯浓度可靠地估计,可能是职业暴露的风险评估的乐器。在本作工作中,施加计算流体动力学模型用于从炼油厂的重整单元中连续释放苯的曝光风险评估。对于苯分散,Gambit,Fluent和CFD后软件的仿真分别用作预处理,加工和后处理。通过将计算的数据与实验测量进行比较来执行计算流体动态验证。最终,通过模拟模型估算了通过一年的两个赛季的慢性每日摄入和终身癌症风险常规操作。对于风速和浓度,根均方误差分别为0.19和0.17。终身风险评估分别为每1000名工人在稳定和不稳定的大气条件下为0.4-3.8和0.0096-0.25。曝光风险对于641天的转移工作,总工程师和普通工人的危险是不可接受的,这是一年的一天(38.77%)。该研究的结果表明,计算流体动力学是用于在复杂几何形状中建模苯暴露的有用工具,可用于估计炼油厂环境中占用群的寿命风险。

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