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热膨胀石墨在吸油应用中的潜力。

The potential of thermally expanded graphite in oil sorption applications.

作者信息

Elbidi Moammar, Mohd Salleh Mohamad Amran, Rashid Suraya Abdul, Mukhtar Gunam Resul Mohamed Faiz

机构信息

Sustainable Process Engineering Research Centre (SPERC), Department of Chemical and Environmental Engineering, Faculty of Engineering, Universiti Putra Malaysia 43400 UPM Serdang Selangor Malaysia

Institute of Nanoscience and Nanotechnology (ION2), Universiti Putra Malaysia 43400 UPM Serdang Selangor Malaysia

出版信息

RSC Adv. 2024 May 21;14(23):16466-16485. doi: 10.1039/d4ra00049h. eCollection 2024 May 15.

Abstract

An oil spill occurs when liquid petroleum hydrocarbons are released into the environment, whether accidentally or intentionally, in substantial quantities. The impact of an oil spill on the ecosystem is significant and should not be underestimated. Various techniques are employed to address oil spills, including mechanical, physical, biological, and physicochemical methods. Among these techniques, adsorption is considered the most suitable approach. Adsorption is promising due to its simplicity, ease of use, high removal capacity, and rapid pollutant removal. An excellent adsorbent material exhibits unique characteristics that enhance its efficacy in liquid adsorption. Sorbents are categorized into synthetic and natural types. Porous carbon materials, especially expanded graphite, are widely utilized in wastewater treatment due to their micropores and exceptional adsorption capacity. The distinctive properties of expanded graphite, including its low density, high porosity, and electrical conductivity, have garnered significant global attention for various potential applications. In essence, expanded graphite offers a powerful and practical approach to oil spill cleanup due to its efficient oil adsorption, selective targeting, ease of use, and potential reusability. This review article summarizes the preparation techniques, structure, and properties of expanded graphite. It also delves into recent advancements in using expanded graphite for oil spill cleanup. The article concludes by outlining potential future directions in this field and discussing the commercial viability of some of these techniques.

摘要

当液态石油碳氢化合物大量释放到环境中时,无论其释放是意外还是故意的,都会发生石油泄漏。石油泄漏对生态系统的影响重大,不应被低估。人们采用了各种技术来处理石油泄漏,包括机械、物理、生物和物理化学方法。在这些技术中,吸附被认为是最合适的方法。吸附因其简单、易用、去除能力高和污染物去除速度快而具有前景。一种优良的吸附材料具有独特的特性,可提高其在液体吸附中的功效。吸附剂分为合成型和天然型。多孔碳材料,尤其是膨胀石墨,由于其微孔和出色的吸附能力,被广泛应用于废水处理。膨胀石墨的独特性能,包括低密度、高孔隙率和导电性,在全球范围内引起了对其各种潜在应用的极大关注。从本质上讲,膨胀石墨因其高效的油吸附、选择性靶向、易用性和潜在的可重复使用性,为石油泄漏清理提供了一种强大而实用的方法。这篇综述文章总结了膨胀石墨的制备技术、结构和性能。它还深入探讨了使用膨胀石墨进行石油泄漏清理的最新进展。文章最后概述了该领域未来的潜在方向,并讨论了其中一些技术的商业可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b41b/11106605/fb37d37ec815/d4ra00049h-f1.jpg

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