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首页> 外文期刊>Journal of Environmental Management >A comparison study of cleanup techniques for oil spill treatment using magnetic nanomaterials
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A comparison study of cleanup techniques for oil spill treatment using magnetic nanomaterials

机译:磁性纳米材料处理溢油净化技术的比较研究

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摘要

Magnetic nanoparticles have been successfully used to recovery oil from oil spilled on water. Two different methods, floating and vortex, were employed to promote the interaction of four oil samples with different API (e.g., 10, 20, 28 and 45) spilled on seawater and deionized water with three magnetic materials, namely: magnetite nanoparticles (N); magnetic nanocomposites of yeast biomass provided by ethanol industry (Y); and magnetic nanocomposites of cork powder (C). The magnetic nanomaterials exposed to oil on water were taking out by a neodymium magnet, and the oil recoveries were determined by gravimetric analysis before and after lyophilization. The lyophilization was determinant to guarantee the accuracy of the experiments, and without this step, the masses of oil recovered would be overestimated due to the drag of water during the oil and magnetic material removal process. Three main factors, API, contact method and magnetic material, and two interactions (i.e., API x contact method, and contact method x magnetic material) presented a statistically significant effect on oil recovery. It was observed that oil recovery increases as API decreases, and it was possible to establish a model to predict the amount of recovered oil according to this effect. Higher oil recoveries were also obtained by magnetic nanocomposites of yeast biomass (Y), regardless of the contact method and type of water, recoveries of 23% and 100% for 45 and 10 API, respectively, employing around 20 mg of Y on 300 mg of spilled oil. These percentages correspond to 0.29 +/- 0.01 kg/kg and 15.98 kg/kg of recovering oil by the magnetic procedure. The increase of mass of magnetic material improved the recovery of oils with higher APIs. The reusability of the spent materials presents potential for its application in oil spill cleaning technologies.
机译:磁性纳米颗粒已成功用于从洒在水上的油中回收油。两种不同的方法,即漂浮法和涡旋法,被用来促进四种具有不同API(例如10、20、28和45)的石油样品与三种磁性材料(分别是:磁铁矿纳米颗粒(N))洒在海水和去离子水上的相互作用。 ;乙醇工业提供的酵母生物质的磁性纳米复合材料(Y);和软木粉的磁性纳米复合材料(C)。用钕磁铁取出暴露于水上油的磁性纳米材料,并通过冻干前后的重量分析法测定油的回收率。冻干是确保实验准确性的决定因素,如果没有此步骤,由于在除油和磁性材料过程中水的阻力,回收的油的质量将被高估。 API,接触方法和磁性材料这三个主要因素以及两种相互作用(即API x接触方法和接触方法x磁性材料)对采油率具有统计学意义。可以观察到,随着API的减少,采油量会增加,并且可以根据此效应建立模型来预测采出的油量。酵母生物质(Y)的磁性纳米复合材料还获得了更高的油回收率,无论接触方式和水的类型如何,在300 mg的溶液中使用约20 mg的Y分别回收45%和10 API的23%和100%溢油。这些百分比对应于通过磁性程序回收的油的0.29 +/- 0.01kg / kg和15.98kg / kg。磁性材料质量的提高改善了具有较高API的油的采收率。废料的可重复利用性为其在溢油清理技术中的应用提供了潜力。

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