聚合物纳米复合材料的热降解、可燃性和潜在毒性

J. Lopez‐Cuesta, C. Longuet, C. Chivas‐Joly
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引用次数: 7

摘要

摘要:由于纳米技术的进步,近年来开发了许多基于纳米材料的新型产品。它们的目的是提供新的功能或修改现有的产品。本章研究了各种纳米复合聚合物的热降解和可燃性,以及燃烧它们的潜在风险。利用锥形量热计、FTIR、冷凝核计数器(CNC)分析仪和/或级联撞击器模拟了不同的火灾场景,以产生在不同辐射水平和易燃环境下排放的气溶胶。给出了试验条件和影响参数。在热降解过程中,原始超细颗粒与烟灰或其他超细颗粒的结合会直接影响人体健康。因此,需要对释放的纳米物体和超细颗粒的形态和组成进行更多的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermal degradation, flammability, and potential toxicity of polymer nanocomposites
Abstract: Many new nanomaterial-based products have been developed recently, due to advances in nanotechnology. These are designed to offer new functionalities or to modify existing products. This chapter examines the thermal degradation and flammability of various nanocomposite polymers and the potential risks of burning them. Different fire scenarios have been simulated with a cone calorimeter coupled with FTIR, condensation nuclei counter (CNC) analysers, and/or cascade impactors in order to produce aerosols emitted at different radiation levels and flammable atmospheres. The testing conditions and influential parameters are presented. Combinations of pristine ultrafine particles with soot or other ultrafine particles during thermal degradation can directly affect human health. Hence, more research is needed into the morphology and composition of the released nano-objects and ultrafine particles.
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