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Determination of toxic products emissions of polymers thermal decomposition using fluidised bed reactor and FTIR analysis

机译:流体化床反应器和FTIR分析测定聚合物热分解的有毒型饮料

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The paper presents original method of quantitative and qualitative determination of gaseous products of polymers thermal decomposition. It is used to determine the toxic potential of emitted gases, based on their emission E (g/g) by determining the FED dose or toxicological index W-LC50M. The method is based on the use of a fluidized bed reactor equipped with a resistive heating jacket, which allows to conduct decomposition of a tested material at a strictly assumed temperature. To identify the types of gaseous compounds and their emission, infrared spectroscopy with Fourier transformation, FTIR was used. The proposed method of measuring the thermal decomposition products concentrations allows mimic the conditions of the fire at different stages of its development. FTIR spectra are recorded every 5 s, which enables identifying toxic gases as a function of burning time, in a precisely determined temperature. Using the library of reference spectra it is possible to determine both inorganic and organic compounds concentrations present in thermal decomposition products of the tested composites. The use of a fluidized bed reactor together with the FTIR analyser operating on-line allows for a much more accurate determination of the emissions of organic and inorganic gaseous products at the assumed temperature, compared to the methods currently used. Silicone rubber composites filled with polyhedral oligomeric silsesquioxanes (POSS) were used for the tests. The effect of POSS, also in a synergistic system with melamine polyphosphate (MPP) on toxicity of gaseous thermal decomposition products of tested composites at temperatures of 500, 600, 700 and 800 degrees C was determined.
机译:本文介绍了聚合物热分解的质量和定性测定原始方法。它用于通过测定喂食剂量或毒理指数W-LC50M,基于它们的发射E(G / g)来确定发出气体的毒势。该方法基于使用配备有电阻加热夹套的流化床反应器,这允许在严格地假设的温度下对测试材料进行分解。为了鉴定气态化合物的类型及其发射,使用具有傅立叶变换的红外光谱,FTIR。所提出的测量热分解产物浓度的方法允许模仿其发育的不同阶段的火灾条件。每隔5秒记录FTIR光谱,这使得能够在精确确定的温度下作为燃烧时间的函数识别有毒气体。使用参考光谱库可以确定测试复合材料的热分解产物中存在的无机和有机化合物浓度。与当前使用的方法相比,使用流化床反应器与操作在线运行的FTIR分析仪一起使用更准确地确定有机和无机气态产物的排放。用含有多面体低聚SilsesquioXanes(POSS)的硅橡胶复合材料用于测试。在500,600,700和800℃的温度下,对三聚氰胺多磷酸盐(MPP)对三聚氰胺多磷酸盐(MPP)的协同体系的疗效进行了效果。

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