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炼钢渣中基什石墨回收的多种方法结合及基什基膨胀石墨的吸油性能

Combining Multiple Methods for Recycling of Kish Graphite from Steelmaking Slags and Oil Sorption Performance of Kish-Based Expanded Graphite.

作者信息

Li Jihui, Liu Ruochen, Ma Liqiang, Wei Lubin, Cao Lili, Shen Wanci, Kang Feiyu, Huang Zheng-Hong

机构信息

School of Chemical and Environmental Engineering, China University of Mining and Technology (Beijing), Beijing 100083, China.

State Key Laboratory of Mineral Processing, Beijing 102628, China.

出版信息

ACS Omega. 2021 Apr 2;6(14):9868-9875. doi: 10.1021/acsomega.1c00591. eCollection 2021 Apr 13.

Abstract

The utilization of industrial waste as renewable resources is an essential issue of sustainable development. Kish graphite is a precipitate of excess carbon generated during the cooling of molten iron and one of the byproducts associated with steel slags. The scale-up recycling of kish graphite from steelmaking slags is a promising way to develop natural graphite alternatives. However, only one means cannot work efficiently because of the unusual occurrence of associated impurities; combining multiple separation methods is the solution. In this paper, we proposed an integrated beneficiation process, pneumatic separation-flotation-sonication-magnetic separation, to recycle kish graphite flakes with a high graphitization degree and investigated the sorption performance of various oils on kish-based expanded graphite. The new process avoided shortages such as the sediments of iron particles in the flotation cell and the loss of clean graphite in the magnetic separation. Consequently, the carbon content of kish graphite reached ∼95% after separation and >99% after acid leaching. The macroscopic structural defects of kish particles created more active sites, made the intercalation of KG-GICs faster, and yielded better-staged compounds. The kish graphite-based expanded graphite presented an octopus-like shape and exhibited an expansion volume of ∼150 mL/g. Furthermore, the developed macropore structure of the obtained kish graphite-based expanded graphite led to a superior sorption performance for oils. This work supplies one feasible and promising way to recycle kish graphite from steelmaking slags and use it.

摘要

将工业废弃物作为可再生资源加以利用是可持续发展的一个重要问题。基什石墨是铁水冷却过程中产生的过量碳的沉淀物,也是与钢渣相关的副产品之一。从炼钢炉渣中大规模回收基什石墨是开发天然石墨替代品的一种有前景的方法。然而,由于伴生杂质的特殊存在,单一方法无法高效运作;结合多种分离方法才是解决之道。在本文中,我们提出了一种集成选矿工艺,即气力分离 - 浮选 - 超声处理 - 磁选,以回收具有高石墨化程度的基什石墨片,并研究了各种油类在基什基膨胀石墨上的吸附性能。新工艺避免了诸如浮选槽中铁颗粒沉淀以及磁选中纯净石墨损失等缺点。因此,分离后基什石墨的碳含量达到约95%,酸浸后超过99%。基什颗粒的宏观结构缺陷创造了更多活性位点,使KG - GICs的插层更快,并产生了更好的层状化合物。基什石墨基膨胀石墨呈现出章鱼状形状,膨胀体积约为150 mL/g。此外,所制备的基什石墨基膨胀石墨所形成的发达大孔结构使其对油类具有优异的吸附性能。这项工作为从炼钢炉渣中回收并利用基什石墨提供了一种可行且有前景的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb8a/8047742/e9577a904c95/ao1c00591_0002.jpg

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