College of Mechanical and Electrical Engineering, Henan Agricultural University, Zhengzhou 450002, China.
Bioresour Technol. 2012 Oct;121:335-41. doi: 10.1016/j.biortech.2012.06.055. Epub 2012 Jun 27.
The severity factor is a common term used in steam explosion (SE) pretreatment that describes the combined effects of the temperature and duration of the pretreatment. However, it ignores the duration of the explosion process. This paper describes a new parameter, the explosion power density (EPD), which is independent of the severity factor. Furthermore, we present the adoption of a 5m(3) SE model for a catapult explosion mode, which completes the explosion within 0.0875 s. The explosion duration ratio of this model to a conventional model of the same volume is 1:123. The comparison between the two modes revealed a qualitative change by explosion speed, demonstrating that this real explosion satisfied the two requirements of consistency, and suggested a guiding mechanism for the design of SE devices.
严重度因子是蒸汽爆炸(SE)预处理中常用的术语,用于描述预处理的温度和持续时间的综合影响。然而,它忽略了爆炸过程的持续时间。本文提出了一个新的参数,爆炸动力密度(EPD),它独立于严重度因子。此外,我们采用了一个 5m³ 的 SE 模型来模拟弹射爆炸模式,该模型在 0.0875 秒内完成了爆炸。与相同体积的传统模型相比,该模型的爆炸持续时间比为 1:123。两种模式的比较结果表明,爆炸速度发生了质的变化,这表明真实爆炸满足了一致性的两个要求,并为 SE 设备的设计提供了一种指导机制。