Economical and Sustainable Synthesis of Small-Pore Chabazite Catalysts for NOx Abatement by Recycling Organic Structure- Directing Agents

被引:14
|
作者
Xiong, Wuwan [1 ]
Liu, Linhui [1 ]
Guo, Anqi [1 ]
Chen, Dongdong [1 ]
Shan, Yulong [2 ]
Fu, Mingli [1 ]
Wu, Junliang [1 ]
Ye, Daiqi [1 ]
Chen, Peirong [1 ]
机构
[1] South China Univ Technol, Sch Environm & Energy, Natl Engn Lab VOCs Pollut Control Technol & Equipm, Guangdong Prov Key Lab Atmospher Environm & Pollut, Guangzhou 510006, Peoples R China
[2] Chinese Acad Sci, Res Ctr Ecoenvironm Sci, State Key Joint Lab Environm Simulat & Pollut Cont, Beijing 100085, Peoples R China
基金
中国国家自然科学基金;
关键词
SSZ-13; waste liquid; TMAdaOH; low cost; NOx reduction; BRONSTED ACID SITES; SILICA CHA ZEOLITE; HYDROTHERMAL STABILITY; CU-ZEOLITES; REDUCTION; SSZ-13; FAU; PERFORMANCE; TEMPLATE; ALUMINUM;
D O I
10.1021/acs.est.2c07239
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The application of small-pore chabazite-type SSZ-13 zeolites, key materials for the reduction of nitrogen oxides (NOx) in automotive exhausts and the selective conversion of methane, is limited by the use of expensive N,N,N-trimethyl-1-ammonium adamantine hydroxide (TMAdaOH) as an organic structure-directing agent (OSDA) during hydrothermal synthesis. Here, we report an economical and sustainable route for SSZ-13 synthesis by recycling and reusing the OSDA-containing waste liquids. The TMAdaOH concentration in waste liquids, determined by a bromocresol green colorimetric method, was found to be a key factor for SSZ-13 crystallization. The SSZ-13 zeolite synthesized under optimized conditions demonstrates similar physicochemical properties (surface area, porosity, crystallinity, Si/Al ratio, etc.) as that of the conventional synthetic approach. We then used the waste liquid-derived SSZ-13 as the parent zeolite to synthesize Cu ion-exchanged SSZ-13 (i.e., Cu-SSZ-13) for ammonia-mediated selective catalytic reduction of NOx (NH3-SCR) and observed a higher activity as well as better hydrothermal stability than Cu-SSZ-13 by conventional synthesis. In situ infrared and ultraviolet-visible spectroscopy investigations revealed that the superior NH3-SCR performance of waste liquid-derived Cu-SSZ-13 results from a higher density of Cu2+ sites coordinated to paired Al centers on the zeolite framework. The technoeconomic analysis highlights that recycling OSDA-containing waste liquids could reduce the raw material cost of SSZ-13 synthesis by 49.4% (mainly because of the higher utilization efficiency of TMAdaOH) and, meanwhile, the discharging of wastewater by 45.7%.
引用
收藏
页码:655 / 665
页数:11
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