Xie MingShuai, Luo HongChao, Liu XinJuan, Yin ChaoChuang
School of Environmental and Chemical Engineering, Dalian University, Dalian, 116622, China.
School of Chemistry and Materials Engineering, Liupanshui Normal University, Liupanshui, 553004, China.
Discov Nano. 2024 Oct 2;19(1):162. doi: 10.1186/s11671-024-04115-4.
Under the dual pressures of environmental protection and energy security, the development and application of coal-based nanocarbon materials, supported by the technical concepts of molecular chemical engineering and nanomaterial science, is of significant importance for achieving the high-value clean utilization of coal. Furthermore, it serves as an effective means to assist in the realization of dual carbon goals. Coal, with its abundant reserves, high carbon content, and aromatic and hydrogenated aromatic groups, exhibits great advantages and potential in the synthesis of nanocarbon materials. In addition to its applications in traditional power and chemical industries, coal-based nanocarbon materials also demonstrate significant value in the field of environmental pollution control. This article succinctly summarizes the preparation methods and properties of coal-based carbon nanotubes, coal-based carbon quantum dots, and coal-based graphene, elucidates their current applications in water pollution control and governance, and anticipates their development trends in water pollution control, aiming to provide support for the clean and efficient utilization of coal and water pollution control.
在环境保护和能源安全的双重压力下,以分子化学工程和纳米材料科学的技术理念为支撑,煤基纳米碳材料的开发与应用对于实现煤炭的高值清洁利用具有重要意义。此外,它还是助力实现双碳目标的有效手段。煤炭储量丰富、碳含量高且含有芳香族和氢化芳香族基团,在纳米碳材料的合成中具有巨大优势和潜力。煤基纳米碳材料除了在传统电力和化工行业有应用外,在环境污染控制领域也展现出显著价值。本文简要综述了煤基碳纳米管、煤基碳量子点和煤基石墨烯的制备方法与性能,阐明了它们目前在水污染控制与治理中的应用,并展望了其在水污染控制方面的发展趋势,旨在为煤炭的清洁高效利用和水污染控制提供支持。