纳米吸附与光催化在石油泄漏修复中的应用前景

S. Shaibu, E. Inam, E. Moses, U. Ofon, O. Fatunla, C. Obadimu, Nnamso Ibuotenang, Nnanake-Abasi O. Offiong, V. Ekpo, Tijesu Adeoye, Edidiong Udokang, D. Fapojuwo
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摘要

由于发现石油泄漏对生态系统有长期的负面影响,纳米修复方法已被应用于从地表水和地下水中去除石油。尽管与石油有关的环境污染令人担忧且广泛存在,但通过不同环境基质的纳米吸附机制进行纳米修复在世界范围内仍处于形成阶段。在过去的50年里,超过900万桶石油泄漏,使该生态系统成为石油勘探和开采活动中最恶化的生态系统之一。本研究的目的是评估溢油区地表水和地下水纳米吸附的现状、趋势和未来前景。纳米材料的高表面积,可处理污染物的广谱,不产生中间或二次产物,以及污染物破坏的速度和程度,使纳米修复比其他处理技术具有优越的比较优势。值得注意的是,清理的修复效率高度依赖于所采用的材料类型和处理路线。必须采用协调一致和实用的方法来发展纳米技术,以应对石油生产国面临的令人困扰的石油污染挑战。
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Prospects of nanosorption and photocatalysis in remediation of oil spills
Nanoremediation approaches have been applied to remove oil from surface and ground water as oil spills have been found to have long-term negative consequences for the ecosystem. Nanoremediation via the nanosorption mechanism of different environmental matrices in the world at large is at its formative stages despite the alarming and extensive prevalence of petroleum related environmental pollution. Over 9 million barrels of oil have been leaked in the last five decades, making that ecosystem one of the most deteriorated by oil exploration and extraction activities. The goal of this research is to assess the current status, trends, and future prospects of the nanosorption of surface and ground water in oil spill regions. High surface area of nanomaterials, wide spectrum of treatable contaminants, non-generation of intermediate or secondary products, as well as speed and extent of contaminant destruction give nanoremediation a superior comparative edge over other treatment technologies. Notably, the remediation efficiency of a cleanup is highly dependent on the type of material and treatment routes employed. It is imperative to employ a concerted and practical approach to the development of nanotechnology to combat the bedeviling oil pollution challenges faced in oil producing counties.
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