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Modeling of Off-Gas Emissions from Wood Pellets During Marine Transportation

机译:海上运输过程中木粒产生的气体排放模型

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After a fatal accident during the discharge of wood pellets at Helsingborg, emissions from pellets during marine transportation became a concern for the safe handling and storage of wood pellets. In this paper, a two-compartment model has been developed for the first time to predict the concentrations of CO, CO2, CH4, and O2 inside the cargo ship and the time and rate of forced ventilation required before the safe entry into the stairway adjacent to the storage hatch. The hatch and stairway are treated as two perfectly mixed tanks. The gas exchange rate between these two rooms and the gas exchange rate with the atmosphere are fitted to satisfy a measured tracer final concentration of 33 p.p.m.v. in the stairway and an average final hatch to stairway CO, CO2, and CH4 concentration ratio of 1.62 based on measurement from five other hatch and stairway systems. The reaction kinetics obtained from a laboratory unit using a different batch of pellets, however, need to be scaled in order to bring the prediction to close agreement with onboard measured emission data at the end of voyage. Using the adjusted kinetic data, the model was able to predict the general trend of data recorded in the first 12.5 days of the voyage. Further validation, however, requires the data recorded over the whole journey. The model was applied to predict the effect of ocean temperature on the off-gas emissions and the buildup of concentrations in the hatch and stairway. For safe entry to the cargo ship, the current model predicted that a minimal ventilation rate of 4.4 hr−1 is required for the stairway's CO concentration to lower to a safe concentration of 25 p.p.m.v. At 4.4 hr−1, 10 min of ventilation time is required for the safe entry into the stairway studied.
机译:在赫尔辛堡(Helsingborg)运送木屑颗粒期间发生致命事故之后,海上运输过程中的木屑颗粒排放成为安全处理和储存木屑颗粒的一个问题。本文首次建立了一个两室模型来预测货船内CO,CO2,CH4和O2的浓度以及在安全进入相邻楼梯间之前强制通风的时间和速率到存储舱口。舱口和楼梯被视为两个完美混合的坦克。设置这两个房间之间的气体交换率和与大气的气体交换率,以满足示踪剂最终浓度为33 p.p.m.v的要求。根据其他五个舱口和楼梯系统的测量,最终舱口与楼梯之间的平均CO,CO2和CH4浓度比为1.62。但是,需要缩放从实验室装置使用不同批次的小球获得的反应动力学,以便使预测与航行结束时机载测量的排放数据接近一致。使用调整后的动力学数据,该模型能够预测出航头12.5天所记录数据的总体趋势。但是,进一步的验证需要在整个旅程中记录数据。该模型用于预测海洋温度对废气排放以及舱口和楼梯中浓度增加的影响。为了安全地进入货船,当前模型预测,楼梯的一氧化碳浓度降至安全的25 p.p.m.v所需的最低通风速率为4.4 hr-1。在4.4 hr-1时,安全进入研究的楼梯需要10分钟的通风时间。

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