热解
水热碳化
碳化
杂原子
烧焦
碳纤维
木质纤维素生物量
生物量(生态学)
催化作用
化学工程
材料科学
吸附
有机化学
纳米技术
化学
纤维素
复合数
复合材料
戒指(化学)
海洋学
工程类
地质学
作者
Kalidas Mainali,Sohrab Haghighi Mood,Manuel Raúl Peláez-Samaniego,Valentina Sierra-Jiménez,Manuel Garcı̀a-Pèrez
出处
期刊:Catalysis Today
[Elsevier BV]
日期:2023-06-01
卷期号:423: 114248-114248
被引量:38
标识
DOI:10.1016/j.cattod.2023.114248
摘要
N-doped and metal-N-doped carbons are receiving increasing attention for environmental and electronic applications. Modifications of carbons such as biomass-derived char by N-doping allow for modulating carbons’ acid-base character, adsorption capacity, catalytic performance, and electrochemical properties (e.g., electrical conductivity and capacitance). N-doped carbons are obtained from the thermal co-processing of C-rich and N-rich sources (e.g., lignocellulosic biomass, proteins, and ammonia). Although the literature is abundant in papers on producing heteroatom-doped carbon nanotubes, carbon fibers, and other high-value carbonaceous products from non-renewable sources, the number of articles reporting N-doped chars from bioresources is more limited. Thus, this paper aims to review synthesis processes and activation strategies to produce N-doped carbons from biomass resources and the uses of the resulting materials. Pyrolysis and hydrothermal carbonization offer opportunities to obtain relatively cheap, environmentally friendly N-doped carbonaceous materials with tailored properties for environmental and electronic applications. The role of the Maillard reactions in integrating N into carbonaceous products’ structure is also discussed. This paper summarizes desired char properties and the relationship between chemical composition and application performance.
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