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通过掺杂氢氧化物降低疏水性二氧化硅气凝胶的可燃性。

Reducing the flammability of hydrophobic silica aerogels by doping with hydroxides.

机构信息

School of Resource and Safety Engineering, Central South University, Changsha, 410083, PR China.

Civil and Infrastructure Engineering Discipline, School of Engineering, RMIT University, Melbourne, VIC, 3000, Australia.

出版信息

J Hazard Mater. 2019 Jul 5;373:536-546. doi: 10.1016/j.jhazmat.2019.03.112. Epub 2019 Mar 28.

Abstract

In this work, we utilized Al(OH) (AH) and Mg(OH) (MH) as dopants to reduce the flammability of hydrophobic silica aerogels (SA) and the related thermal properties and flame retardance were investigated detailedly. The TG-DSC analyses showed the thermostability of SA in MH/SA reached 512.4 °C and that for AH/SA was just 426.1 °C, both of which were higher than that of pure SA, 399.5 °C. It was known from cone calorimeter tests that the heat release rate, peak heat release rate and total heat release of AH/SA and MH/SA decreased significantly compared to that of pure SA. The time to ignition (TTI) of MH/SA was dramatically extended, reaching 20˜38 s, which was far longer than those of pure SA (˜6 s) and AH/SA (3˜8 s). The reduction in CO concentration, CO production rate and cumulative CO production verified the decreased smoke toxicity of AH/SA and MH/SA. It was further indicated that the flame-retardant effect of AH and MH correlated with their inhibitory effect on the pyrolysis of SA, while MH showed much better flame-retardant performance than that of AH. The research outcomes provide an inspiration to reduce the flammability of SA and benefit their expansion in thermal insulation field.

摘要

在这项工作中,我们利用 Al(OH) (AH) 和 Mg(OH) (MH) 作为掺杂剂来降低疏水性二氧化硅气凝胶 (SA) 的可燃性,并详细研究了相关的热性能和阻燃性。TG-DSC 分析表明,MH/SA 中的 SA 的热稳定性达到 512.4°C,而 AH/SA 的热稳定性仅为 426.1°C,均高于纯 SA 的 399.5°C。从锥形量热仪测试可知,与纯 SA 相比,AH/SA 和 MH/SA 的热释放率、峰值热释放率和总热释放明显降低。MH/SA 的点火时间 (TTI) 显著延长,达到 20˜38s,远长于纯 SA (˜6s) 和 AH/SA (3˜8s)。CO 浓度、CO 生成率和 CO 总生成量的降低验证了 AH/SA 和 MH/SA 的烟雾毒性降低。进一步表明,AH 和 MH 的阻燃效果与其对 SA 热解的抑制作用有关,而 MH 的阻燃性能明显优于 AH。研究结果为降低 SA 的可燃性并促进其在隔热领域的应用提供了启示。

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