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Toxic Combustion Product Yields as a Function of Equivalence Ratio and Flame Retardants in Under-Ventilated Fires: Bench-Large-Scale Comparisons

机译:在通风不足的火灾中,有毒燃烧产物的产量与当量比和阻燃剂的关系:大型试验台比较

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In large-scale compartment fires; combustion product yields vary with combustion conditions mainly in relation to the fuel:air equivalence ratio (Φ) and the effects of gas-phase flame retardants. Yields of products of inefficient combustion; including the major toxic products CO; HCN and organic irritants; increase considerably as combustion changes from well-ventilated (Φ < 1) to under-ventilated (Φ = 1–3). It is therefore essential that bench-scale toxicity tests reproduce this behaviour across the Φ range. Yield data from repeat compartment fire tests for any specific fuel show some variation on either side of a best-fit curve for CO yield as a function of Φ. In order to quantify the extent to which data from the steady state tube furnace (SSTF [1]; ISO TS19700 [2]) represents compartment fire yields; the range and average deviations of SSTF data for CO yields from the compartment fire best-fit curve were compared to those for direct compartment fire measurements for six different polymeric fuels with textile and non-textile applications and for generic post-flashover fire CO yield data. The average yields; range and standard deviations of the SSTF data around the best-fit compartment fire curves were found to be close to those for the compartment fire data. It is concluded that SSTF data are as good a predictor of compartment fire yields as are repeat compartment fire test data.
机译:在大型车厢火灾中;燃烧产物的产率随燃烧条件的变化而变化,这主要与燃料:空气当量比(Φ)和气相阻燃剂的作用有关。低效燃烧产物的产量;包括主要有毒产品一氧化碳;六氯环己烷和有机刺激物;当燃烧从通风良好(Φ<1)变为通风不良(Φ= 1-3)时,燃烧效率会大大提高。因此,至关重要的是,台式毒性试验必须在整个Φ范围内重现这种行为。对于任何特定燃料,重复隔室燃烧测试的产率数据均显示,CO产率的最佳拟合曲线的两侧均随Φ的变化而变化。为了量化稳态管式炉(SSTF [1]; ISO TS19700 [2])中的数据代表隔室着火量的程度;比较了来自舱室防火最佳拟合曲线的CO产量的SSTF数据的范围和平均偏差,与用于纺织和非纺织应用的六种不同聚合物燃料以及直接闪络后火灾CO产量数据的直接舱室火灾测量的SSTF数据的范围和平均偏差。平均产量;发现最佳拟合舱室着火曲线周围的SSTF数据的范围和标准偏差与舱室着火数据的范围和标准偏差接近。结论是,SSTF数据与重复隔室着火测试数据一样,可以很好地预测隔室着火率。

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