Adewuyi Yusuf G
Chemical, Biological and Bio Engineering Department, North Carolina Agricultural and Technical State University, Greensboro, North Carolina 27411, United States.
ACS Omega. 2021 Jun 9;6(24):15532-15542. doi: 10.1021/acsomega.1c00662. eCollection 2021 Jun 22.
This Mini-Review provides the fundamentals and the state-of-the-art overview on geopolymers, novel inorganic polymeric materials (also known as alkali-bounded ceramics), synthesized from aluminosilicate sources and explores their current and potential sustainable environmental applications. It summarizes and examines concisely the recent scientific advances on geopolymers widely synthesized from abundantly available fly-ash-based aluminosilicate materials via alkaline activation at relatively low temperatures. Although geopolymerization is not a new concept and has offered valuable solutions to some environmental challenges as a low-cost and environmentally benign alternative to conventional energy-intensive Portland cement-based construction materials and has also been used as a barrier in immobilizing toxic and radioactive metals, the application of this technology to produce effective adsorptive materials for mitigation of liquid- and gas-phase contaminants is relatively recent. The valorization of the fly-ash waste in the sustainable and cost-effective development of geopolymeric adsorbents and catalysts for the treatment and control of environmental contaminants and energy production and storage could lead to many economic benefits due to the low cost and resource recycling of this globally abundant raw material. Perspectives on the synthesis and utilization of new geopolymer-based adsorbents for environmental and energy applications with insights into future research directions, prospects, and challenges for economic large-scale production are addressed.
本综述提供了关于地质聚合物(一种由铝硅酸盐原料合成的新型无机聚合物材料,也称为碱结合陶瓷)的基本原理和最新概述,并探讨了它们目前以及潜在的可持续环境应用。它简要总结和审视了近期利用丰富可得的粉煤灰基铝硅酸盐材料通过在相对低温下进行碱活化而广泛合成的地质聚合物的科学进展。尽管地质聚合不是一个新概念,并且作为传统能源密集型波特兰水泥基建筑材料的低成本和环境友好替代品,已经为一些环境挑战提供了有价值的解决方案,还被用作固定有毒和放射性金属的屏障,但将该技术应用于生产用于减轻液相和气相污染物的有效吸附材料是相对较新的做法。在可持续且经济高效地开发用于处理和控制环境污染物以及能源生产与存储的地质聚合物吸附剂和催化剂方面,粉煤灰废料的增值利用可能会带来诸多经济效益,因为这种全球储量丰富的原材料成本低且可资源回收利用。文中阐述了关于合成和利用新型地质聚合物基吸附剂用于环境和能源应用的观点,并深入探讨了未来研究方向、前景以及经济大规模生产所面临的挑战。