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首页> 外文期刊>Magnetohydrodynamics >MAGNETIC SEPARATION METHOD FOR OIL SPILL CLEANUP
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MAGNETIC SEPARATION METHOD FOR OIL SPILL CLEANUP

机译:漏油清理的磁分离方法

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Oil spills have devastating environmental consequences as evident from the 2010 Deepwater Horizon disaster in the Gulf of Mexico. This work describes a new five-step magnetic separation process for oil spill cleanup that maximizes oil recovery: 1. Pump a sea water and oil spill mixture out of the ocean and onto a boat or land oil/water treatment facility. 2. Add oleophilic/hydrophobic (oil loving/water hating) or hydrophilic/oleophobic (water loving, oil hating) magnetic nanoparticles to the oil/water mixture on the boat. The magnetic nanoparticles will preferentially attach to the oil or water phase, respectively, making it magnetic. 3. Use an optimized array of permanent magnets to cleanly separate the magnetic oil from water or magnetic water from oil. 4. Once the oil is separated from the water, use suction pressure to move the magnetic fluid through a high gradient magnetic separator (HGMS) to remove the magnetic nanoparticles from the oil or water for re-use. The clean water can be returned to the ocean. 5. Now that the recovered oil is free of nanoparticles and water, it can be directed into a pipeline for transport to an oil refinery or to other locations.
机译:从2010年墨西哥湾“深水地平线”(Deepwater Horizo​​n)灾难中可以明显看出,漏油事件对环境造成了破坏性后果。这项工作描述了一种用于漏油清理的新的五步电磁分离工艺,该工艺可以最大程度地提高采油量:1.将海水和漏油混合物从海洋中抽出,并泵入船或陆上油/水处理设施。 2.向船上的油/水混合物中添加亲油/疏水(憎油/憎水)或亲水/疏油(憎水/憎油)磁性纳米粒子。磁性纳米粒子将分别优先附着在油相或水相上,使其具有磁性。 3.使用优化的永磁体阵列将磁性油与水或磁性水与油彻底分离。 4.将油与水分离后,使用吸力将磁性流体移动通过高梯度磁选机(HGMS),以从油或水中除去磁性纳米颗粒,以便重新使用。干净的水可以返回海洋。 5.现在,回收的油中不含纳米颗粒和水,因此可以将其引导到管道中,以运输到炼油厂或其他地方。

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