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Encapsulated nano-heat-sinks for thermal management of heterogeneous chemical reactions

机译:封装nano-heat-sinks为热管理异构的化学反应

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摘要

This paper describes a new way to control temperatures of heterogeneous exothermic reactions such as heterogeneous catalytic reaction and polymerization by using encapsulated nanoparticles of phase change materials as thermally functional additives. Silica-encapsulated indium nanoparticles and silica encapsulated paraffin nanoparticles are used to absorb heat released in catalytic reaction and to mitigate gel effect of polymerization, respectively. The local hot spots that are induced by non-homogenous catalyst packing, reactant concentration fluctuation, and abrupt change of polymerization rate lead to solid to liquid phase change of nanoparticle cores so as to avoid thermal runaway by converting energies from exothermic reactions to latent heat of fusion. By quenching local hot spots at initial stage, reaction rates do not rise significantly because the thermal energy produced in reaction is isothermally removed. Nanoparticles of phase change materials will open a new dimension for thermal management of exothermic reactions to quench local hot spots, prevent thermal runaway of reaction, and change product distribution.
机译:本文描述了一种新的控制方法异构的高温放热异构催化反应等通过使用封装反应和聚合纳米颗粒的相变材料热功能添加剂。Silica-encapsulated铟纳米粒子和硅封装石蜡纳米颗粒用于在催化吸收热量释放反应并减轻凝胶的影响分别聚合。吸时所产生的催化剂包装、反应物浓度波动突变的聚合速率导致固体,液体纳米颗粒的相变核心,以避免热失控将能量从放热反应熔化潜热。点在初始阶段,反应速率大幅上升,因为热能产生的反应是等温地删除。纳米颗粒的相变材料就会打开热管理的新维度放热反应平息当地的热点,防止热失控的反应,和改变产品分布。

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