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Thermal degradation of DNA-treated cotton fabrics under different heating conditions

机译:DNA处理的棉织物在不同加热条件下的热降解

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Our recent work has demonstrated that deoxyribose nucleic acid (DNA) can act as an effective flame retardant when applied to cotton fabrics as a thin coating. DNA acts as a Lewis acid and promotes the dehydration of cotton cellulose to form char, limiting the production of volatile species. Here, the effect of heating rates on thermal degradation behaviour has been studied in order to understand the thermo-oxidation behaviour under slow heating and fast (flash) pyrolysis. The low heating rate effect has been studied using thermogravimetry coupled with infrared spectroscopy and pyrolysis-combustion flow calorimetry, whereas high heating rate effect was obtained by performing thermogravimetry at 200-500 degrees C/min and flash-pyrolysis tests coupled with infrared spectroscopy. The information obtained by the latter has been successfully employed in order to (i) better explain the results collected from combustion tests and (ii) demonstrate that the type of the gaseous species and their evolution, as well as the char formation, as a consequence of the fabric thermo-oxidation, are independent of the adopted heating rate. (C) 2014 Elsevier B.V. All rights reserved.
机译:我们最近的工作表明,脱氧核糖核酸(DNA)作为薄涂层应用于棉织物时,可以作为有效的阻燃剂。 DNA充当路易斯酸,并促进棉纤维素脱水形成炭,从而限制了挥发性物质的产生。在这里,已经研究了升温速率对热降解行为的影响,以了解缓慢加热和快速(闪蒸)热解下的热氧化行为。使用热重分析法结合红外光谱法和热解-燃烧流动量热法研究了低加热速率效应,而通过以200-500℃/ min的温度进行热重分析并结合了红外光谱法进行了快速热解试验,获得了高加热速率效应。后者获得的信息已被成功地利用,以(i)更好地解释从燃烧测试中收集的结果,以及(ii)结果表明,气态物质的类型及其演变以及形成的焦炭织物热氧化的速率与所采用的加热速率无关。 (C)2014 Elsevier B.V.保留所有权利。

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