纳米材料基催化剂
合成气
催化作用
光热治疗
纤维素
材料科学
化学工程
蒸汽重整
微晶纤维素
纳米颗粒
光化学
纳米技术
化学
有机化学
制氢
工程类
作者
Jichun Wu,Chongyang Zhou,Mengqi Zhong,Qingguo Du,Cong Ji,Qianqian Hu,Lei Ji,Xia Li,Günther Rupprechter,Yuanzhi Li
出处
期刊:Small
[Wiley]
日期:2025-03-03
标识
DOI:10.1002/smll.202411977
摘要
Abstract Replacing fossil fuels by renewable biomass enables green syngas production in an effort to achieve carbon neutrality and sustainable circular processes. Here, an inexpensive catalyst of Ni nanoparticles supported on SiO 2 modified by La 3+ (Ni/La 0.10 –S) is presented, exhibiting exceptional H 2 and CO production rates (4051.4 and 2467.8 mmol g catalyst −1 h −1 , respectively) with 7.7% light‐to‐fuel efficiency in cellulose steam reforming (SR), merely under focused illumination. Excellent performance is mainly attributed to photothermal catalysis resulting from the strong solar absorption and high photothermal conversion by the Ni nanoparticles. The mitigation of tar and char formation significantly benefits from the H 2 O involvement in the reaction, which is substantially improved by La 3+ addition enhancing H 2 O sorption. Remarkably, the illumination exerts mere photoactivation during reaction, which is primarily attributed to the pronounced activation of Ni─O bonds at the catalyst surface. Particularly, the photoactivation of the Ni–O–La moieties, in combination with O species replenishment by H 2 O, makes Ni/La 0.10 –S superior to Ni/SiO 2 . The synergy of La 3+ promotion and Ni–O photoactivation poses a promising strategy for efficient photothermal catalytic cellulose SR to green syngas.
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