改良された触媒が有害な温室効果ガスをよりクリーンな燃料や化学原料に変える(Improved catalyst turns harmful greenhouse gases into cleaner fuels, chemical feedstocks)

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2024-11-26 オークリッジ国立研究所(ORNL)

オークリッジ国立研究所(ORNL)の研究チームは、メタンと二酸化炭素という温室効果ガスを、クリーンな燃料や化学原料の基盤となる合成ガス(シンガス)に変換する触媒を改良しました。従来の触媒は高温での使用により劣化しやすく、工業的な適用が困難でした。今回の改良により、触媒の耐久性が向上し、シンガスの生産がより効率的かつ持続可能になりました。この技術は、クリーンな燃料や化学製品の製造に貢献することが期待されています。

<関連情報>

ニッケル-ゼオライト触媒の金属-担体相互作用を調整することで、メタンの乾式改質時の安定性が向上する Tuning metal-support interactions in nickel–zeolite catalysts leads to enhanced stability during dry reforming of methane

Junyan Zhang,Yuanyuan Li,Haohong Song,Lihua Zhang,Yiqing Wu,Yang He,Lu Ma,Jiyun Hong,Akhil Tayal,Nebojsa Marinkovic,De-en Jiang,Zhenglong Li,Zili Wu & Felipe Polo-Garzon
Nature Communications  Published:03 October 2024
DOI:https://doi.org/10.1038/s41467-024-50729-8

改良された触媒が有害な温室効果ガスをよりクリーンな燃料や化学原料に変える(Improved catalyst turns harmful greenhouse gases into cleaner fuels, chemical feedstocks)

Abstract

Ni-based catalysts are highly reactive for dry reforming of methane (DRM) but they are prone to rapid deactivation due to sintering and/or coking. In this study, we present a straightforward approach for anchoring dispersed Ni sites with strengthened metal-support interactions, which leads to Ni active sites embedded in dealuminated Beta zeolite with superior stability and rates for DRM. The process involves solid-state grinding of dealuminated Beta zeolites and nickel nitrate, followed by calcination under finely controlled gas flow conditions. By combining in situ X-ray absorption spectroscopy and ab initio simulations, it is elucidated that the efficient removal of byproducts during catalyst synthesis is conducted to strengthen Ni–Si interactions that suppress coking and sintering after 100 h of time-on-stream. Transient isotopic kinetic experiments shed light on the differences in intrinsic turnover frequency of Ni species and explain performance trends. This work constructs a fundamental understanding regarding the implication of facile synthesis protocols on metal-support interaction in zeolite-supported Ni sites, and it lays the needed foundations on how these interactions can be tuned for outstanding DRM performance.

0505化学装置及び設備
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