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Surface oxidation of rubber crumb with ozone

机译:橡胶屑被臭氧表面氧化

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Rubber crumb derived from the grinding of used truck tread and tyres is used as a low cost filler in rubber compounds based on diene rubber. In order to expand its application to other fields, the surface modification of the rubber crumb could be an interesting and feasible solution. In fact, the surface modification of rubber crumb may be used as a tool to expand its use in applications to compounds with polar rubber matrices or where hydrophilic surface of the rubber crumb could be desirable, for example in water-based dispersion or as filler for asphalt. In the present work, ozone has been used as the active agent to cause surface oxidation and functionalisation of rubber crumb in a fluidized bed reaction. The rubber crumb reacts swiftly with ozone producing CO_2 in the initial stages of reaction and then leading to the desired surface oxidized product. The rate constant of the reaction between ozone and rubber crumb has been determined by FT-IR spectroscopy, monitoring the consumption of ozone in the gas phase in the presence of the crumb. A rate constant value of 5.03 × 10~(-3) s~(-1) g~(-1) of rubber crumb was determined. The degree of the surface oxidation of the rubber crumb can be determined by FT-IR spectroscopy using as reference the intensity of the ketone band at about 1710 cm~(-1). Additionally the nominal ratio between the amount of ozone (in mg) reacted with rubber crumb (in g) can be used as a parameter for the degree of the surface oxidation. The surface oxidized rubber crumb shows surface acidity and hydrophilicity. Thermogravimetric analysis, differential thermal analysis and pyrolysis-GC clearly demonstrate that the ozonization of the rubber crumb is directed exclusively to the surface of the crumb and does not affect the bulk properties at all.
机译:源自废旧卡车胎面和轮胎的研磨的橡胶屑被用作基于二烯橡胶的橡胶混合物中的低成本填料。为了将其应用扩展到其他领域,橡胶屑的表面改性可能是一种有趣且可行的解决方案。实际上,橡胶屑的表面改性可以用作一种工具,以扩大其用途,以用于具有极性橡胶基质的化合物中,或者需要橡胶屑的亲水性表面的情况下,例如在水性分散液中或用作填充剂。沥青。在目前的工作中,臭氧已被用作在流化床反应中引起橡胶屑表面氧化和官能化的活性剂。在反应的初始阶段,橡胶屑与臭氧产生的CO_2迅速反应,然后生成所需的表面氧化产物。臭氧和橡胶屑之间的反应速率常数已通过FT-IR光谱法测定,该光谱监测在屑存在下气相中的臭氧消耗量。测定橡胶屑的速率常数值为5.03×10〜(-3)s〜(-1)g〜(-1)。橡胶屑的表面氧化程度可以通过FT-IR光谱法,以大约1710cm-1(-1)处的酮带的强度为参考来确定。另外,与橡胶屑反应的臭氧量(mg)之间的标称比(g)可以用作表面氧化程度的参数。表面氧化的橡胶屑显示出表面酸性和亲水性。热重分析,差热分析和热解-GC清楚地表明,橡胶屑的臭氧化仅直接作用于屑的表面,根本不影响其整体性能。

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