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变废为宝:利用煤矸石和高碳废料制备碳化硅纳米颗粒

Turning Trash into Treasure: Silicon Carbide Nanoparticles from Coal Gangue and High-Carbon Waste Materials.

作者信息

Gao Kaixing, Zhang Yao, Wang Binghan, Zhang Zhuangzhuang, Luo Sen, Wang Qian, Zhen Yanzhong, Fu Feng, Liang Yucang

机构信息

Shaanxi Key Laboratory of Chemical Reaction Engineering, Collaborative Innovation Center for Clean and Efficient Utilization of Low-Rank Coal of Northern Shaanxi, Research Institute of Comprehensive Energy Industrial Technology, School of Chemistry & Chemical Engineering, Yan'an University, Yan'an 716000, China.

Institut für Anorganische Chemie, Eberhard Karls Universität Tübingen, Auf der Morgenstelle 18, D-72076 Tübingen, Germany.

出版信息

Molecules. 2025 Mar 31;30(7):1562. doi: 10.3390/molecules30071562.

Abstract

To reduce solid waste production and enable the synergistic conversion of solid waste into high-value-added products, we introduce a novel, sustainable, and ecofriendly method. We fabricate nanofiber and nanosheet silicon carbides (SiC) through a carbothermal reduction process. Here, the calcined coal gangue, converted from coal gangue, serves as the silicon source. The carbon sources are the carbonized waste tire residue from waste tires and the pre-treated kerosene co-refining residue. The difference in carbon source results in the alteration of the morphology of the SiC obtained. By optimizing the reaction temperature, time, and mass ratio, the purity of the as-made SiC products with nanofiber-like and nanosheet-like shapes can reach 98%. Based on the influence of synthetic conditions and the results calculated from the change in the Gibbs free energy of the reactions, two mechanisms for SiC formation are proposed, namely the reaction of intermediate SiO with CO to form SiC-nuclei-driven nanofibrous SiC and the SiO-deposited carbon surface to fabricate nuclei-induced polymorphic SiC (dominant nanosheets). This work provides a constructive strategy for preparing nanostructured SiC, thereby achieving "turning trash into treasure" and broadening the sustainable utilization and development of solid wastes.

摘要

为了减少固体废物的产生,并实现固体废物向高附加值产品的协同转化,我们引入了一种新颖、可持续且环保的方法。我们通过碳热还原工艺制备了纳米纤维和纳米片状碳化硅(SiC)。在此,由煤矸石转化而来的煅烧煤矸石用作硅源。碳源是废轮胎的碳化废轮胎残渣和预处理的煤油共炼残渣。碳源的差异导致所获得的SiC形态发生改变。通过优化反应温度、时间和质量比,制备出的纳米纤维状和纳米片状SiC产品的纯度可达到98%。基于合成条件的影响以及根据反应吉布斯自由能变化计算得出的结果,提出了两种SiC形成机制,即中间体SiO与CO反应形成SiC核驱动的纳米纤维状SiC,以及SiO沉积在碳表面制备核诱导多晶型SiC(主要为纳米片)。这项工作为制备纳米结构SiC提供了一种建设性策略,从而实现“变废为宝”,并拓宽了固体废物的可持续利用和发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4a9/11990397/26ed460743af/molecules-30-01562-g001.jpg

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