Zhang, X.;                     Han, X.;                     Li, C.;                     Song, X.;                     Zhu, H.;                     Bao, J.;                     Zhang, N.;                     He, G.    
        Promoting Effect of the Core-Shell Structure of MnO2@TiO2 Nanorods on SO2 Resistance in Hg0 Removal Process. Catalysts 2020, 10, 72.
    https://doi.org/10.3390/catal10010072
    AMA Style
    
                                Zhang X,                                 Han X,                                 Li C,                                 Song X,                                 Zhu H,                                 Bao J,                                 Zhang N,                                 He G.        
                Promoting Effect of the Core-Shell Structure of MnO2@TiO2 Nanorods on SO2 Resistance in Hg0 Removal Process. Catalysts. 2020; 10(1):72.
        https://doi.org/10.3390/catal10010072
    
    Chicago/Turabian Style
    
                                Zhang, Xiaopeng,                                 Xiangkai Han,                                 Chengfeng Li,                                 Xinxin Song,                                 Hongda Zhu,                                 Junjiang Bao,                                 Ning Zhang,                                 and Gaohong He.        
                2020. "Promoting Effect of the Core-Shell Structure of MnO2@TiO2 Nanorods on SO2 Resistance in Hg0 Removal Process" Catalysts 10, no. 1: 72.
        https://doi.org/10.3390/catal10010072
    
    APA Style
    
                                Zhang, X.,                                 Han, X.,                                 Li, C.,                                 Song, X.,                                 Zhu, H.,                                 Bao, J.,                                 Zhang, N.,                                 & He, G.        
        
        (2020). Promoting Effect of the Core-Shell Structure of MnO2@TiO2 Nanorods on SO2 Resistance in Hg0 Removal Process. Catalysts, 10(1), 72.
        https://doi.org/10.3390/catal10010072