活性炭疏水/超疏水改性技术研究进展OA北大核心CSTPCD
Progress in Hydrophobic or Superhydrophobic Modification of Activated Carbon
活性炭具有丰富的孔隙结构和表面官能团,广泛用于吸附污染环境中的各种有机物.由于活性炭表面富含亲水官能团,在潮湿环境下将优先吸附水分子,从而大幅度降低了对目标有机物的吸附容量,因此如何改善活性炭的防潮防水性能是其应用过程中亟待解决的问题.大量研究表明,活性炭经疏水/超疏水改性后,可有效隔绝水汽,显著提高其防潮、防水性能,这种特殊性能使疏水/超疏水活性炭在诸多领域都有着极高的应用前景和市场价值.基于活性炭的吸附机理,从活性炭的物理结构和表面化学性质 2 个角度出发,概述了活性炭的来源和形貌,着重介绍了不同的疏水/超疏水改性技术,包括高温加热处理、负载金属氧化物、有机分子改性、有机硅涂层、有机无机复合超疏水涂层的改性制备方法及相应的优缺点,并在此基础上分析了不同改性技术对活性炭的防潮、防水能力及吸附目标有机物的影响.进一步讨论了疏水/超疏水活性炭在不同领域(例如废水处理、废气处理及电化学催化等)的实际应用效果,并指出了现有技术存在的局限性,最后对活性炭的发展进行了展望.
Activated carbon is one of the most widely used absorbents in the field of removing various organic substances in polluted environments,due to its abundant pore structure and a high degree of surface reactivity.However,the surface chemical properties of activated carbon are rich in hydrophilic functional groups.This means that when water molecules and organic pollutants coexist,they compete for active sites on the surface of activated carbon.In this situation,activated carbon tends to preferentially adsorb water molecules,which drastically diminishes its adsorption capacity of the desired organic pollutants.This negatively affects its efficiency when used in humid environments.Therefore,how to improve the moisture and water resistance of activated carbon is an urgent problem that needs to be resolved in the application of an complex multi-component environment.A large number of studies have shown that modifying activated carbon to be hydrophobic or superhydrophobic can effectively tackle the thorny problem. Currently,numerous researchers both domestically and internationally have studied primary hydrophobic or superhydro-phobic methods of activated carbon,which include high-temperature heating treatment modification,loaded metal oxide modification,organic molecular modification,silicone coating modification,and organic-inorganic composite superhydrophobic coating modification.Those methods have been confirmed effectively isolate water vapor from being adsorbed into the pore space by activated carbon.Researchers have also found that improving the moisture and water resistances of the modified activated carbon is of great significance.Such developments demonstrate the practical application value and far-reaching prospects of hydrophobic or superhydrophobic activated carbon.This review aims to highlight the progress made in research on the application of hydrophobic or superhydrophobic modification of activated carbon.Based on the mechanism of activated carbon's adsorption and desorption for organic matter,the significant factors that affected its adsorption performance were carefully discussed.It was demonstrated that the physical structures and surface chemistry properties had a significant impact on activated carbon's absorption performance.These influencing characteristics included the specific surface area,pore size and distribution,functional groups and more.To better understand those properties,firstly,an overview of different types and sources of activated carbon was provided.The specific surface area,pore distribution,and surface functional groups of the carbon depended on its type and source,which ultimately affected its absorption performance.To further optimize the activated carbon's performance,there were different hydrophobic or superhydrophobic modification preparation techniques available.Those methods enhanced the hydrophobic and alter the surface chemistry properties leading to increased adsorption capacity.According to those modification preparation techniques,the change in the adsorption capacity of the modified activated carbon to the target organic matter in a humid environment before and after modification were further explored.In addition,the actual application effect of hydrophobic or superhydrophobic activated carbon in a wide variety fields,such techniques as wastewater removal organic treatment,exhaust removal organic gas treatment,and the newly developed electrochemical catalytic hydrophobic treatment were discussed.At the same time,their respective advantages and disadvantages,as well as the current limitations that need to be resolved for the existing technologies were pointed out.In the end,this article examined the challenges faced by activated carbon and explored the potential development trends for the hydrophobic or superhydrophobic modification of activated carbon,which showed great promise.It was hoped to provide theoretical reference and basis for the research and development of hydrophobic or superhydrophobic activated carbon in the field of realistic application.
庄怡凡;张友法;刘星宇;花颢轩;苏一凡;侯泽钟;周张恒;季延正;焦玄;余新泉
东南大学材料科学与工程学院,南京 211189||东南大学江苏省先进金属材料高技术研究重点实验室,南京 211189
化学工程
活性炭有机物吸附超疏水防潮防水
activated carbonorganic adsorptionsuperhydrophobicmoisture-proofwaterproof
《表面技术》 2024 (005)
1-17 / 17
国家自然科学基金(52071076) National Natural Science Foundation of China(52071076)
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