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膨胀石墨的结构和元素特性对其油类和重金属吸附性能的影响。

Effects of expanded graphite's structural and elemental characteristics on its oil and heavy metal sorption properties.

作者信息

Coetzee Divan, Rojviroon Thammasak, Niamlang Sumonman, Militký Jiři, Wiener Jakub, Večerník Josef, Melicheríková Jana, Müllerová Jana

机构信息

Department of Materials Engineering, Faculty of Textile Engineering, Technická Univerzita v Liberci, 460 01, Liberec, Czech Republic.

Department of Civil Engineering, Faculty of Engineering, Rajamangala University of Technology Thanyaburi (RMUTT), Klong 6, Thanyaburi, Pathum Thani, 12120, Thailand.

出版信息

Sci Rep. 2024 Jun 14;14(1):13716. doi: 10.1038/s41598-024-64695-0.

Abstract

Expanded graphite has promising potential environmental applications due to its porous structure and oleophilic nature, which allow it to absorb large quantities of oil. The material is produced by intercalating graphite and applying heat to convert the intercalant into gas to cause expansion between the layers in the graphite. Using different intercalants and temperature conditions results in varying properties of expanded graphite. This work has proven that the sorption properties of commercial expanded graphite differ significantly due to the material's structural and elemental characteristics, which can be attributed to the intercalation method. This resulted in various degrees of exfoliation of the graphite and possible functionalisation of the graphene sheets within the structure. This affected the material's sorption capacity and its affinity for heavy metal sorption by incorporating selectivity towards the sorption of certain metals. It was found that sample EG3, which underwent a less harsh expansion, exhibited lower porosity than EG1, and thus, the sample absorbed less oil at 37.29 g/g compared to the more expanded samples EG1 and EG2 with 55.16 g/g and 48.82 g/g, respectively. However, it was able to entrap a wider variety of metal particles compared to EG1 and EG2, possibly due to its smaller cavities allowing for a capillary effect between the graphene sheets and greater Van der Waals forces. A second possibility is that ionic or coordination complexes could form with certain metals due to the possible functionalisation of the expanded graphite during the intercalation process. This would be in addition to coordination between the metals and expanded graphite carbon atoms. The findings suggest that there is evidence of functionalisation as determined by XRD and elemental analyses. However, further investigation is necessary to confirm this hypothesis. The findings in this work suggest that the first mechanism of sorption was more likely to be related to the degree of expansion of the expanded graphite. Various metals are present in used oil, and their removal can be challenging. Some metals in oil are not considered heavy since they have a relatively low density but can be associated with heavy metals in terms of toxicity.

摘要

膨胀石墨因其多孔结构和亲油性,在环境应用方面具有广阔的潜力,这使其能够吸收大量的油。该材料是通过将石墨嵌入并加热,使嵌入剂转化为气体,从而导致石墨层间膨胀而制得的。使用不同的嵌入剂和温度条件会导致膨胀石墨的性能有所不同。这项工作已经证明,由于材料的结构和元素特性,商用膨胀石墨的吸附性能存在显著差异,这可归因于嵌入方法。这导致了石墨不同程度的剥离以及结构中石墨烯片的可能功能化。这通过对某些金属吸附的选择性,影响了材料的吸附能力及其对重金属吸附的亲和力。研究发现,经历较温和膨胀的样品EG3的孔隙率低于EG1,因此,与膨胀程度更高的样品EG1(55.16 g/g)和EG2(48.82 g/g)相比,该样品在37.29 g/g时吸收的油更少。然而,与EG1和EG2相比,它能够捕获更多种类的金属颗粒,这可能是由于其较小的孔隙允许石墨烯片之间产生毛细作用以及更大的范德华力。另一种可能性是,在嵌入过程中膨胀石墨可能发生功能化,从而与某些金属形成离子或配位络合物。这将是除了金属与膨胀石墨碳原子之间的配位之外的情况。研究结果表明,X射线衍射和元素分析确定存在功能化的证据。然而,需要进一步研究来证实这一假设。这项工作的研究结果表明,吸附的第一种机制更可能与膨胀石墨的膨胀程度有关。废油中存在各种金属,去除它们具有挑战性。油中的一些金属由于密度相对较低,不被视为重金属,但在毒性方面可能与重金属有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e26/11178900/2c77bf35bc9e/41598_2024_64695_Fig3_HTML.jpg

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