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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Inhibition of exothermic runaway of batch reactors for the homogeneous esterification using nano-encapsulated phase change materials
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Inhibition of exothermic runaway of batch reactors for the homogeneous esterification using nano-encapsulated phase change materials

机译:使用纳米包封相变材料抑制分批反应器的放热失控

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Reaction inhibition is a promising option as an emergency measure to mitigate hazards caused by exothermic runaway reactions. The applications of phase change materials (PCMs) as inhibitors of runaway reactions have been influenced by thermal energy storage technologies. In this work, nano-PCMs powders with silica shells were fabricated using the sol-gel method at alkaline conditions. The prepared nano-PCMs had perfect core-shell microstructures and spherical morphologies, with an average encapsulated PCM particle diameter of 717.34 nm. In addition, the nano-PCMs exhibited high latent heats of fusion (129.1 J g(-1)), which could inhibit the uncontrolled self-heating caused by runaway reactions through conversion of the heats of reaction to the latent heats of PCMs. The homogeneous esterification of propionic anhydride with n-butanol catalyzed by sulfuric acid was chosen as target reaction with risk of exothermic runaway. Inhibition experiments was conducted in a batch reactor coupled with an in situ FTIR spectrometer. The heat transfer performance of reactant flow was studied to analyze the mechanism of thermal runaway inhibition with nano-PCMs. The results revealed that thermal runaway can be halted by applying nano-PCMs and that the reaction can proceed to completion steadily. The effect of Re on heat transfer performance was enlarged with addition of nano-PCMs. The enhancement in the heat transfer coefficient for PCM slurry was proved. Furthermore, the effectiveness of the thermal runaway inhibition can be significantly influenced by the warning temperature, stirring rate, and mass of added nano-PCMs. The applications of nano-PCMs for runaway reaction inhibition holds great potential for use in industrial processes.
机译:反应抑制是一种有前途的选择,作为缓解由放热失控反应引起的危害的应急措施。相变材料(PCM)作为失控反应的抑制剂的应用受到热能储存技术的影响。在这项工作中,使用碱性条件下的溶胶 - 凝胶法制造具有二氧化硅壳的纳米PCMS粉末。制备的纳米PCM具有完美的核心壳微观结构和球形形态,平均包封的PCM粒径为717.34nm。此外,纳米PCMS表现出高潜热的融合(129.1Jg(-1)),这可以通过转化对PCM的潜热的反应热量来抑制失控的反应引起的不受控制的自加热。选择丙酸酐与硫酸正丁醇的丙酸酐均匀酯化作为靶反应,与放热失控的风险。在与原位FTIR光谱仪偶联的批量反应器中进行抑制实验。研究了反应物流的传热性能,分析了纳米PCM的热失控抑制机理。结果表明,通过施加纳米PCM可以停止热失控,并且反应可以稳定地完成。加入纳米PCMS扩大了RE对传热性能的影响。证明了PCM浆料的传热系数的增强。此外,热失控抑制的有效性可以通过警告温度,搅拌速率和添加的纳米PCM的质量显着影响。纳米PCM对失控反应抑制的应用具有巨大的工业过程中使用的潜力。

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