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Thermal decomposition of nano-enabled thermoplastics: Possible environmental health and safety implications

机译:纳米热塑性塑料的热分解:可能对环境健康和安全产生影响

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摘要

Nano-enabled products (NEPs) are currently part of our life prompting for detailed investigation of potential nano-release across their life-cycle. Particularly interesting is their end-of-life thermal decomposition scenario. Here, we examine the thermal decomposition of a widely used NEP, namely thermoplastic nanocomposites, and assess the properties of the byproducts (released aerosol and residual ash) and possible environmental health and safety implications. We focus on establishing a fundamental understanding on the effect of thermal decomposition parameters, such as polymer matrix, nanofiller properties, decomposition temperature, on the properties of byproducts using a recently-developed lab-based experimental integrated platform. Our results indicate that thermoplastic polymer matrix strongly influences size and morphology of released aerosol, while there was minimal but detectable nano-release, especially when inorganic nanofillers were used. The chemical composition of the released aerosol was found not to be strongly influenced by the presence of nanofiller at least for the low, industry-relevant loadings assessed here. Furthermore, the morphology and composition of residual ash was found to be strongly influenced by the presence of nanofiller. The findings presented here on thermal decomposition/incineration of NEPs raise important questions and concerns regarding the potential fate and transport of released engineered nanomaterials in environmental media and potential environmental health and safety implications.
机译:纳米产品(NEP)目前是我们生活的一部分,促使人们对其整个生命周期中潜在的纳米释放进行详细研究。特别有趣的是它们的寿命终止热分解方案。在这里,我们检查了广泛使用的NEP(即热塑性纳米复合材料)的热分解,并评估了副产品的特性(释放的气溶胶和残留的灰分)以及可能对环境健康和安全造成的影响。我们致力于使用最近开发的基于实验室的实验集成平台,对热分解参数(如聚合物基体,纳米填料性质,分解温度)对副产物的性质的影响建立基本的了解。我们的结果表明,热塑性聚合物基质强烈影响释放的气溶胶的尺寸和形态,而纳米释放却极少但可检测,特别是当使用无机纳米填料时。至少对于此处评估的与工业相关的低负载量,发现释放的气溶胶的化学成分不受纳米填料的强烈影响。此外,发现残留灰分的形态和组成受纳米填料的存在强烈影响。此处介绍的关于NEP的热分解/焚化的研究结果引起了重要的问题,涉及释放的工程纳米材料在环境介质中的潜在命运和运输以及对环境健康和安全的潜在影响。

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