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摘要:
To improve the removal capacity of NO + O-2 effectively, the alkaline earth metal-doped order mesoporous carbon (A-C-FDU-15(0.001) (A = Mg, Ca, Sr and Ba)) and Mg-C-FDU-15(x) (x = 0.001-0.003) samples were prepared, and their physicochemical and NO + O-2 adsorption properties were determined by means of various techniques. The results show that the sequence in (NO + O-2) adsorption performance was as follows: Mg-C-FDU-15(0.001) (93.2 mg/g) > Ca-C-FDU-15(0.001) (82.2 mg/g) > Sr-C-FDU-15(0.001) (76.1 mg/g) > Ba-C-FDU-15(0.001) (72.9 mg/g) > C-FDU-15 (67.1 mg/g). Among all of the A-C- FDU-15(0.001) samples, Mg-C-FDU-15(0.001) possessed the highest (NO + O-2) adsorption capacity (106.2 mg/g). The species of alkaline earth metals and basic sites were important factors determining the ad-sorption of NO + O-2 on the A-C-FDU-15(x) samples, and (NO + O-2) adsorption on the sam-ples was mainly chemical adsorption. Combined with the results of (NO + O-2)-temperature-programmed desorption ((NO + O-2)-TPD) and in situ diffused reflectance infrared Fourier transform spectroscopy (DRIFTS) characterization, we deduced that there were two main pathways of (NO + O-2) adsorption: one was first the conversion of NO and O-2 to NO2 and then part of NO2 was converted to NO2 - and NO3-; and the other was the direct oxidation of NO to NO2 - and NO3-. (C) 2020 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
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来源 :
JOURNAL OF ENVIRONMENTAL SCIENCES
ISSN: 1001-0742
年份: 2021
卷: 103
页码: 172-184
6 . 9 0 0
JCR@2022
ESI学科: ENVIRONMENT/ECOLOGY;
ESI高被引阀值:94
JCR分区:1
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