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Sorption, Recovery and Recycle of Spilled Heavy Oils Using Carbon Materials

机译:碳材料对溢油的吸附,回收和再循环

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摘要

Sorption capacity for heavy oils was determined on different carbon materials exfoliated graphite showed very high capacity for A-grade heavy oil as 83 g/g, fir fibers carbonized up to 900 deg C as 78 g/g and carbon fiber felt as 20 g/g. Sorption capacity depended strongly on bulk density of carbon sorbents. Heavy oils sorbed into exfoliated graphite were able to be recovered by filtration under suction, but the repetition of sorption and recovery (recycling) resulted in a rapid decrease in sorption capacity. Carbonized fir fibers and carbon fiber felts were found to have a better recycling performance, even by washing with a solvent as well as filtration. Viscous C-grade heavy oil could be washed out by using less viscous A-grade oil, resulting in the recovery as B-grade oil. Carbon fiber felts were found to show excellent recycling performance almost 100 percent of sorbed oil was recovered by centrifugation without marked reduction in sorption capacity. Recovered oils were confirmed to have the same chemical and physical properties as the original. Exfoliated graphite was able to pump up heavy oil from contaminated sand. The relation between grain size of sand and bulk density of exfoliated graphite is discussed.
机译:测定了在不同碳材料上对重油的吸附能力,片状石墨显示出极高的A级重油吸附能力,为83 g / g,冷杉纤维碳化至900摄氏度时为78 g / g,碳纤维毡为20 g / g。 G。吸附能力在很大程度上取决于碳吸附剂的堆积密度。吸附在片状石墨中的重油可以通过抽滤进行回收,但是重复进行吸附和回收(循环)会导致吸附能力迅速下降。发现碳化的冷杉纤维和碳纤维毡具有更好的再循环性能,即使通过溶剂洗涤和过滤也是如此。可以使用较少粘度的A级油将粘性C级重油冲洗掉,从而可以作为B级油进行回收。发现碳纤维毡表现出优异的再循环性能,通过离心回收了几乎100%的吸附油,而吸附能力没有明显降低。确认回收的油具有与原始油相同的化学和物理性质。脱落的石墨能够从受污染的沙子中抽出重油。讨论了砂粒大小与片状石墨堆积密度之间的关系。

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