首页> 外文会议>Abu Dhabi International Petroleum Exhibition Conference >Cleaning and Retrieval of Spilled Crude Oil and its Application as a Refinery Feedstock Using Highly Efficient Polymeric Nanofibrous Sorbents
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Cleaning and Retrieval of Spilled Crude Oil and its Application as a Refinery Feedstock Using Highly Efficient Polymeric Nanofibrous Sorbents

机译:用高效聚合物纳米纤维吸附剂清洁和溢出的原油及其作为炼油厂原料的应用

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Objectives/Scope: The objectives of this project are to develop novel and more efficient materials to be used as sorbents for crude oil spills and to explore their potential for retrieval. Methods, Procedures, Process: A number of remedies have been explored for the collection of spilled crude oil, which is one of the major environmental problems. Sorbents of different forms are being used as one of these remedies. However, adsorbed oil spill and used sorbents provide a secondary source of pollution. In our laboratories, we have developed polymeric nanofibrous sorbents that showed a high affinity towards the sorption of spilled crude oil. Moreover, the water-free adsorbed oil as well as the used sorbent were completely recycled into a homogenous solution that can be added to the refinery feedstock. Results, Observations, Conclusions: Polymeric materials of various origins were converted into microand nanofibrous sorbents using a novel nanotechnology approach. Those fibers are characterized by their high surface area, and interconnected porosities. The homogeneity of the fiber size and pore size distributions was optimized in order to maintain a high degree of reproducibility. Fibrous sorbents were therefor applied to crude oil spills that were intentionally made over a simulated sea water medium. Results showed that sorption of the crude oil spill started within seconds of contact between the fibrous sorbent and the spilled oil. The water-free adsorbed oil showed a sorption capacity of up to 217 g/g of the fibrous sorbent. Moreover, the adsorbed oil as well as the used fibrous sorbent were completely converted to a homogeneous solution that can be directly forwarded as a feedstock to the refinery, hence provide a high economic value of retrieving the spilled oil and minimizing secondary sources of pollution. Novel/Additive Information: The current approach is solely developed and tested in our laboratories and provides a more efficient approach to the cleanup and retrieval of crude oil spills from aqueous media. Our sorbents are competitively less expensive than those imported with a higher sorption efficiency. Moreover, our approach provides an additional solution to spilled oil and used sorbents through their recycling and re-use in the refinery feedstock.
机译:目标/范围:该项目的目标是开发新颖,更高效的材料,以用作原油泄漏的吸附剂,并探索其检索潜力。方法,程序,过程:探讨了溢出的原油集合的一些补救措施,这是主要的环境问题之一。不同形式的吸附剂被用作这些补救措施之一。然而,吸附的油溢出和使用的吸附剂提供了次要的污染来源。在我们的实验室中,我们开发了聚合物纳米纤维吸附剂,其对溢出的原油吸附具有高亲和力。此外,无水吸附的油以及二手吸附剂完全再循环到可加入炼油厂原料中的均匀溶液中。结果,观察结果:使用一种新颖的纳米技术方法将各种起源的聚合物材料转化为微安纳米纤维吸附剂。这些纤维的特征在于它们的高表面积和互连的孔隙率。优化了纤维尺寸和孔径分布的均匀性,以保持高度的再现性。其中有纤维吸附剂适用于原油溢出物,该原油泄漏是故意在模拟海水介质上制成的。结果表明,原油泄漏的吸附在纤维吸附剂和溢油之间的接触秒内开始。无水吸附油显示出高达217g / g的纤维吸附剂的吸附能力。此外,吸附的油以及使用的纤维吸附剂完全转化为均匀的溶液,其可以直接转发为炼油厂的原料,因此提供了检索溢油和最小化次要污染来源的高经济价值。新颖/附加信息:目前的方法在我们的实验室中单独开发和测试,并提供了一种更有效的方法,可以从水性介质中进行清洁和检索原油泄漏。我们的吸附剂竞争性低于进口的吸附效率的吸附剂。此外,我们的方法提供了额外的解决方案来溢出油,并通过它们的回收和再使用炼油厂原料中使用吸附剂。

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