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负载金属纳米粒子的氮化硼纳米管用于高效和选择性一氧化碳低温催化还原一氧化氮。

Noble Metal Nanoparticles Decorated Boron Nitride Nanotubes for Efficient and Selective Low-Temperature Catalytic Reduction of Nitric Oxide with Carbon Monoxide.

机构信息

R&D Center, NAiEEL Technology, 6-2 Yuseongdaero 1205, Daejeon 34104, Republic of Korea.

Materials Science and Chemical Engineering Department, Stony Brook University, Stony Brook, New York 11794, United States.

出版信息

ACS Appl Mater Interfaces. 2023 Mar 1;15(8):10670-10678. doi: 10.1021/acsami.2c20985. Epub 2023 Feb 13.

DOI:10.1021/acsami.2c20985
PMID:36780665
Abstract

Parallel to CO emission, NO emission has become one of the menacing problems that seek a simple, durable, and high-efficiency deNO catalyst. Herein, we demonstrated simple syntheses of platinum group metal nanoparticle-decorated f-BNNT (PGM = Pd, Pt, and Rh, and f-BNNT stands for -OH-functionalized boron nitride nanotubes) as a catalyst for efficient and selective reduction of NO by CO at low-temperature conditions. PGM/f-BNNT with a low amount of noble metal nanoparticles (0.7-0.8 wt %) presents very efficient catalytic activity for NO reduction as well as CO oxidation during their removal process. The removal efficiencies of NO and CO with Pd/f-BNNT, Pt/f-BNNT, and Rh/f-BNNT catalysts were investigated under various temperatures, flow rates, and reaction times, respectively. For most cases, NO catalytic reduction with CO reaction was >99% at a temperature as low as ∼200 °C. The catalyst robustness and efficiency were also verified by presenting almost 100% conversion of NO using a Rh/f-BNNT catalyst, which was aged under humid air at 600 and 700 °C for 24 h, respectively. The synergic effect of the catalytic efficacy of the well-dispersed noble metal nanoparticles and the excellent surface properties of BNNT are reasons for the high selectivity and catalytic property at a low temperature. On the basis of this investigation, we demonstrated that the noble metal nanoparticle-decorated f-BNNT catalysts are possible to save expensive PGM catalysts, such as Pt, Pd, and Rd, as much as 100 times while presenting similar or better catalytic performance for simultaneous NO and CO removals.

摘要

与 CO 排放平行的是,NO 排放已成为一个严峻的问题,人们迫切需要一种简单、耐用且高效的脱 NO 催化剂。在此,我们展示了铂族金属纳米颗粒修饰的 f-BNNT(PGM = Pd、Pt 和 Rh,f-BNNT 代表 -OH 功能化的氮化硼纳米管)作为一种催化剂,用于在低温条件下高效且选择性地还原 NO 与 CO。在少量贵金属纳米颗粒(0.7-0.8wt%)的情况下,PGM/f-BNNT 对于 NO 还原和 CO 氧化的去除过程具有非常高效的催化活性。Pd/f-BNNT、Pt/f-BNNT 和 Rh/f-BNNT 催化剂在不同温度、流速和反应时间下分别对 NO 和 CO 的去除效率进行了研究。对于大多数情况,在低至约 200°C 的温度下,用 CO 进行的 NO 催化还原反应的去除效率>99%。通过在 600 和 700°C 下分别在潮湿空气中老化 24 小时的 Rh/f-BNNT 催化剂,还验证了催化剂的稳健性和效率。高分散的贵金属纳米颗粒的催化效能与 BNNT 的优异表面性能的协同效应是在低温下具有高选择性和催化性能的原因。在此基础上的研究表明,贵金属纳米颗粒修饰的 f-BNNT 催化剂有可能将昂贵的 PGM 催化剂(如 Pt、Pd 和 Rd)的用量节省 100 倍,同时在同时去除 NO 和 CO 方面表现出相似或更好的催化性能。

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