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Synthesis and Characterization of Graphite Composite Foams for Oil Spill Recovery Application

机译:石油溢出恢复应用石墨复合泡沫的合成与表征

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The aim of this paper is the synthesis and characterization of a composite silicone foam filled with expanded graphite (EG) for oil spill recovery applications. The EG foams were obtained using a foaming slurry consisting of a mixture of siloxane compounds as the matrix with an EG filler. The effect of the filler content’s performance on an innovative composite silicone-based foam was investigated. All the obtained samples exhibited an open cell morphology. Each foam was evaluated in four commonly used oils (kerosene, pump oil, naphtha and crude oil). Additionally, kinetics was studied in order to investigate the physical, chemical and mass transport mechanisms that act during the absorption phenomenon and uptake evolution of the contaminants. Foam filled with 3% of EG exhibited the highest absorption capacity, particularly with light oils kerosene and virgin naphtha (854 and 1016 wt.%, respectively). Furthermore, the kinetic study showed that pseudo-second order mechanisms better fitted the composite absorption performances, suggesting that the oil sorption into EG filled polydimethylsiloxane (PDMS) foams could be related to chemisorption mechanism. The results evidenced a good oil sorption capability and water/oil selectivity indicating this class of materials as a potentially applicable material for oil spill remediation.
机译:本文的目的是合成和表征填充有膨胀石墨(例如)的复合硅胶泡沫,用于溢油回收应用。使用由硅氧烷化合物的混合物作为具有例如填料的基质组成的发泡浆料,获得例如泡沫。研究了填料含量在创新复合硅氧烷基泡沫上的性能的影响。所有获得的样品都表现出明细的细胞形态。每种泡沫在四种常用的油(煤油,泵油,石脑油和原油)中评价。此外,研究了动力学,以研究在吸收现象和污染物的吸收演化期间采用的物理,化学和大规模运输机制。泡沫充满了3%的例如,表现出最高吸收能力,特别是具有轻油煤油和初始石脑油(854和1016重量%)。此外,动力学研究表明,伪二次阶机制更好地拟合了复合吸收性能,表明油吸附到例如填充的聚二甲基硅氧烷(PDMS)泡沫可能与化学吸附机制有关。结果证明了一种良好的油吸附能力和水/油选择性,表明这类材料作为漏油泄漏修复的潜在适用的材料。

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