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Impact of Basalt Filler and Ceramizable Additives on the Toxicity of Gaseous Products Emitted from Thermal Decomposition of Silicone Rubber Composites

机译:玄武岩填料和可陶瓷添加剂对硅橡胶复合材料热分解产生的气态产物毒性的影响

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摘要

The article illustrates the impact of basalt filler in the form of flakes and fibres on the toxicity of gaseous products that formed during the thermal decomposition of silicone rubber composites. The values of specific emissions of gases were determined with the help of the IR spectroscopy and further applied to calculate the toxicometric index. The presented method of measuring the concentrations of gaseous products resulting from thermal decomposition consists in the application of a fluidised bed reactor, which makes it possible to conduct the decomposition of a sample at a precisely assumed temperature value and imitate the conditions of a real fire. At a temperature lower than 700 °C, the gases resulting from the thermal decomposition of composites are particularly toxic due to the presence of significant concentrations of formaldehyde that does not undergo oxidation to more stable inorganic products. At a temperature of 600 °C the toxicity of gases for the samples with ceramizable additives and without them was similar. In the first case, there appeared to be a positive synergistic effect of mineral and basalt additives, and the basalt additives themselves increased the toxicity of gases. At higher temperatures of decomposition, the exponentially increasing rate of the oxidation reaction in the gaseous phase results in the lack of significant differences between the toxicity of gases for the samples with and without basalt additives. The toxicometric index value at temperatures of 700 °C and 800 °C was by one or two orders of magnitude higher, respectively, than the one that was observed in the temperature range of 500–600 °C, as inorganic components appear in the place of formaldehyde.
机译:该文章说明了片状和纤维状玄武岩填料对硅橡胶复合材料热分解过程中形成的气态产物毒性的影响。借助于IR光谱法确定气体的比排放值,并将其进一步用于计算毒理学指数。所提出的测量由热分解产生的气态产物浓度的方法在于流化床反应器的应用,这使得可以在精确假定的温度值下进行样品分解并模仿真实火灾的条件。在低于700°C的温度下,由于复合物热分解而产生的气体特别有毒,这是因为存在着大量的甲醛,而甲醛不会被氧化成更稳定的无机产品。在600°C的温度下,使用可陶瓷添加剂和不使用可陶瓷添加剂的样品的气体毒性相似。在第一种情况下,矿物质和玄武岩添加剂似乎具有积极的协同作用,而玄武岩添加剂本身会增加气体的毒性。在较高的分解温度下,气相中氧化反应的指数增长速率导致在含和不含玄武岩添加剂的样品中,气体的毒性之间没有显着差异。在700°C和800°C的温度下,毒理学指数值分别比在500–600°C的温度范围内观察到的高1或2个数量级,因为该位置出现了无机成分。甲醛。

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