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Thermo-Physical Characterization of Carbon Nanotube Composite Foam for Oil Recovery Applications

机译:用于采油的碳纳米管复合泡沫的热物理表征

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摘要

To meet the increasing demands for effective cleanup technologies to deal with the oil spill accidents that significantly affect the ecological and environmental systems, promising composite materials based on carbon nanotubes containing silicone foams were investigated. Pump oil, kerosene, and virgin naphtha had been used to assess, during sorption tests, foams behavior. Test results highlighted the advantage of the hydrophobic and oleophilic behavior of carbon nanotubes, and their high mechanical strength for oil spill recovery application was studied. In order to better relate the property-structure relationship for this class of materials, the role and influence of functionalized nanotubes on thermo-physical and morphological characteristics of the foams had been evaluated. The results showed how the pristine nanotubes fillers, despite functionalized ones, led to optimal composite foam performances with high hydrophobic (62 mg g ) and oleophilic (6830 mg g in kerosene oil) characteristics. The evidenced high oil selectivity was a relevant key point in order to consider the suitable material for oil spill recovery applications. Eventually, the proposed configuration exhibited the best thermo-physical performances and high reusability, leading to the optimal cost-benefits option.
机译:为了满足对有效清除技术的日益增长的要求,以应对严重影响生态和环境系统的漏油事故,研究了有前途的基于含有有机硅泡沫的碳纳米管的复合材料。在吸附测试期间,已使用泵油,煤油和纯正石脑油评估泡沫行为。测试结果突显了碳纳米管具有疏水性和亲油性的优势,并研究了它们在漏油回收应用中的高机械强度。为了更好地关联此类材料的性能-结构关系,已评估了功能化纳米管对泡沫塑料的热物理和形态特征的作用和影响。结果表明,原始的纳米管填料如何进行功能化,但具有最佳的复合泡沫性能,具有高疏水性(62 mg g)和亲油性(在煤油中6830 mg g)。为了考虑适用于溢油回收应用的合适材料,已证明的高油选择性是一个关键点。最终,所提出的配置展现出最佳的热物理性能和高可重复使用性,从而带来了最佳的成本效益选择。

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