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Laser pyrolysis micro-spectroscopy for modelling fire-induced degradation of ethylene-vinyl acetate systems

机译:激光热解显微光谱法用于模拟火灾引起的乙烯-乙酸乙烯酯系统的降解

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摘要

A recently developed laser pyrolysis (LP)-Raman/ATR micro-spectroscopic method was applied for analyzing the degradation of polymer systems. The concept behind the method is to combine the micro-scale modelling of fire circumstances with analytical monitoring of the chemical changes in the solid phase of the sample. Samples were irradiated with the infrared beam of a CO_2 laser. The chemical changes were determined by micro-Raman/ATR spectroscopy methods in 200 ms intervals. The applicability of the method is demonstrated here through the pyrolysis of EVA and EVA composites containing metal-modified clays. Rapid depth profiling of few milligrams of sample is feasible with Raman detection, while the ATR sensor is applicable for analysis of fluorescent samples such as Fe coated sepiolite. The acceleration effect of montmorillonite and sepiolite minerals on the degradation of EVA is more pronounced if their surface is coated with Fe atoms. The effects of laser and the cone heater on the ratio of characteristic Raman bands of the polymer are compared and found to be in good correlation.
机译:最近开发的激光热解(LP)-拉曼/ ATR显微光谱法用于分析聚合物体系的降解。该方法背后的概念是将火灾情况的微观模型与对样品固相中化学变化的分析监控相结合。用CO_2激光的红外线束照射样品。通过微拉曼/ ATR光谱法以200毫秒的间隔确定化学变化。该方法的适用性在此通过热解EVA和包含金属改性粘土的EVA复合材料而得到证明。通过拉曼检测,可以实现几毫克样品的快速深度分析,而ATR传感器可用于分析荧光样品,例如涂有Fe的海泡石。如果蒙脱石和海泡石矿物的表面覆盖有Fe原子,则它们对EVA降解的促进作用更加明显。比较了激光和锥形加热器对聚合物特征拉曼带比例的影响,发现它们之间具有良好的相关性。

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