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Revitalization of air using a potassium superoxide plate in hypoxic space: Performance and kinetic model under natural convection conditions

机译:在低氧空间中使用超氧化钾板使空气恢复活力:自然对流条件下的性能和动力学模型

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Potassium superoxide-based oxygen supply systems demonstrate a tremendous potential for applications associated with mine emergency rescue. In this study, the air revitalization performance of a potassium superoxide plate operating under natural convection conditions was investigated by a series of passive tests in a sealed chamber. Reaction resistance analysis based on experimental data revealed that increasing air temperature and humidity accelerates oxygen generation but reduces the system respiratory quotient as a result of the increased resistance of internal diffusion. Increasing the amount of plates or using them in combination with a carbon dioxide absorption curtain is a practical, effective method for meeting requirements of both oxygen generation rate and system respiratory quotient in underground refuge. Kinetics model that predicted the mean oxygen generation rate, carbon dioxide absorption rate, system respiratory quotient and total thermal output (Q) was also derived from experimental data in this study. Predicted results were found to be in good agreement with experimental data. The proposed model can aid in the design of air revitalization systems used in refuge stations for underground mines.
机译:基于过氧化钾的氧气供应系统在与矿山紧急救援相关的应用中显示出巨大的潜力。在这项研究中,通过在密封室内进行一系列被动测试,研究了在自然对流条件下运行的超氧化钾板的空气再生性能。基于实验数据的反应阻力分析表明,由于内部扩散阻力的增加,空气温度和湿度的升高会加速氧气的产生,但会降低系统的呼吸商。增加板的数量或将其与二氧化碳吸收帘结合使用是一种实用,有效的方法,可以满足地下避难所中氧气产生速率和系统呼吸商的要求。动力学模型预测了平均氧气产生速率,二氧化碳吸收速率,系统呼吸商和总热输出(Q),也从本研究的实验数据中得出。发现预测结果与实验数据非常吻合。所提出的模型可以帮助设计用于地下矿井的避难站的空气活化系统。

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