Literature DB >> 25913215

Recent advances in automotive catalysis for NOx emission control by small-pore microporous materials.

A M Beale1, F Gao, I Lezcano-Gonzalez, C H F Peden, J Szanyi.   

Abstract

The ever increasing demand to develop highly fuel efficient engines coincides with the need to minimize air pollution originating from the exhaust gases of internal combustion engines. Dramatically improved fuel efficiency can be achieved at air-to-fuel ratios much higher than stoichiometric. In the presence of oxygen in large excess, however, traditional three-way catalysts are unable to reduce NOx. Among the number of lean-NOx reduction technologies, selective catalytic reduction (SCR) of NOx by NH3 over Cu- and Fe-ion exchanged zeolite catalysts has been extensively studied over the past 30+ years. Despite the significant advances in developing a viable practical zeolite-based catalyst for lean NOx reduction, the insufficient hydrothermal stabilities of the zeolite structures considered cast doubts about their real-world applicability. During the past decade renewed interest in zeolite-based lean NOx reduction was spurred by the discovery of the very high activity of Cu-SSZ-13 (and the isostructural Cu-SAPO-34) in the NH3-SCR of NOx. These new, small-pore zeolite-based catalysts not only exhibited very high NOx conversion and N2 selectivity, but also exhibited exceptionally high hydrothermal stability at high temperatures. In this review we summarize the key discoveries of the past ∼5 years that led to the introduction of these catalysts into practical applications. This review first briefly discusses the structure and preparation of the CHA structure-based zeolite catalysts, and then summarizes the key learnings of the rather extensive (but not complete) characterisation work. Then we summarize the key findings of reaction kinetic studies, and provide some mechanistic details emerging from these investigations. At the end of the review we highlight some of the issues that still need to be addressed in automotive exhaust control catalysis.

Entities:  

Year:  2015        PMID: 25913215     DOI: 10.1039/c5cs00108k

Source DB:  PubMed          Journal:  Chem Soc Rev        ISSN: 0306-0012            Impact factor:   54.564


  34 in total

1.  Synthesis of CuCe co-modified mesoporous ZSM-5 zeolite for the selective catalytic reduction of NO by NH3.

Authors:  Yuanyuan Ma; Yang Liu; Zhifang Li; Cui Geng; Xuefeng Bai; Dianxue Cao
Journal:  Environ Sci Pollut Res Int       Date:  2020-01-11       Impact factor: 4.223

2.  Dealumination of small-pore zeolites through pore-opening migration process with the aid of pore-filler stabilization.

Authors:  Tatsushi Yoshioka; Kenta Iyoki; Yuusuke Hotta; Yoshihiro Kamimura; Hiroki Yamada; Qiao Han; Takeharu Kato; Craig A J Fisher; Zhendong Liu; Ryohji Ohnishi; Yutaka Yanaba; Koji Ohara; Yukichi Sasaki; Akira Endo; Takahiko Takewaki; Tsuneji Sano; Tatsuya Okubo; Toru Wakihara
Journal:  Sci Adv       Date:  2022-06-22       Impact factor: 14.957

3.  New insights into the NH3-selective catalytic reduction of NO over Cu-ZSM-5 as revealed by operando spectroscopy.

Authors:  Xinwei Ye; Ramon Oord; Matteo Monai; Joel E Schmidt; Tiehong Chen; Florian Meirer; Bert M Weckhuysen
Journal:  Catal Sci Technol       Date:  2022-02-28       Impact factor: 6.177

4.  Photocatalytic oxidation of nitrogen oxides over {001}TiO2: the influence of F- ions.

Authors:  Qianqian Huang; Yun Hu; Guangying He; Chunjing Lin; Chaohai Wei
Journal:  Environ Sci Pollut Res Int       Date:  2018-10-20       Impact factor: 4.223

5.  Spectroscopic Definition of a Highly Reactive Site in Cu-CHA for Selective Methane Oxidation: Tuning a Mono-μ-Oxo Dicopper(II) Active Site for Reactivity.

Authors:  Hannah M Rhoda; Dieter Plessers; Alexander J Heyer; Max L Bols; Robert A Schoonheydt; Bert F Sels; Edward I Solomon
Journal:  J Am Chem Soc       Date:  2021-05-10       Impact factor: 16.383

6.  The dependence on ammonia pretreatment of N-O activation by Co(II) sites in zeolites: a DFT and ab initio molecular dynamics study.

Authors:  E Broclawik; K Góra-Marek; M Radoń; T Bučko; A Stępniewski
Journal:  J Mol Model       Date:  2017-04-13       Impact factor: 1.810

7.  Diagnosing the Internal Architecture of Zeolite Ferrierite.

Authors:  Joel E Schmidt; Frank C Hendriks; Martin Lutz; L Christiaan Post; Donglong Fu; Bert M Weckhuysen
Journal:  Chemphyschem       Date:  2017-08-15       Impact factor: 3.102

8.  Computational Modeling Predicts the Stability of Both Pd+ and Pd2+ Ion-Exchanged into H-CHA.

Authors:  Jeroen Van der Mynsbrugge; Martin Head-Gordon; Alexis T Bell
Journal:  J Mater Chem A Mater       Date:  2020-12-28

9.  Multi-objective de novo molecular design of organic structure-directing agents for zeolites using nature-inspired ant colony optimization.

Authors:  Koki Muraoka; Watcharop Chaikittisilp; Tatsuya Okubo
Journal:  Chem Sci       Date:  2020-07-20       Impact factor: 9.825

Review 10.  Recent progress in the improvement of hydrothermal stability of zeolites.

Authors:  Raquel Simancas; Anand Chokkalingam; Shanmugam P Elangovan; Zhendong Liu; Tsuneji Sano; Kenta Iyoki; Toru Wakihara; Tatsuya Okubo
Journal:  Chem Sci       Date:  2021-05-17       Impact factor: 9.825

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