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Frontiers in Cellular and Infection Microbiology|May 3, 2021
Phage Endolysin LysP108 Showed Promising Antibacterial Potential Against Methicillin-resistant Staphylococcus aureusYifei Lu, Yingran Wang, Jing Wang, et al.Environmental Science and Pollution Research International|November 14, 2014
Pharmaceuticals and consumer products in four wastewater treatment plants in urban and suburb areas of ShanghaiQian Sui, Dan Wang, Wentao Zhao, et al.Journal of Hazardous Materials|December 30, 2014
Degradation of carbon tetrachloride in aqueous solution in the thermally activated persulfate systemMinhui Xu, Xiaogang Gu, Shuguang Lu, et al.Frontiers in Microbiology|November 10, 2018
Characterization and Genomic Analyses of Pseudomonas aeruginosa Podovirus TC6: Establishment of Genus Pa11virusChaofei Tang, Chuanjiang Deng, Yi Zhang, et al.Chemical Engineering Journal (Lausanne, Switzerland : 1996)|November 7, 2017
Application of ascorbic acid to enhance trichloroethene degradation by Fe(III)-activated calcium peroxideXiang Zhang, Xiaogang Gu, Shuguang Lu, et al.Environmental Science and Pollution Research International|September 11, 2017
Enhanced effect of HAH on citric acid-chelated Fe(II)-catalyzed percarbonate for trichloroethene degradationXiaori Fu, Mark L Brusseau, Xueke Zang, et al.Virus Research|April 22, 2020
The characteristics and genome analysis of the novel Y. pestis phage JC221Yue Yuan, Hengyu Xi, Jiaxin Dai, et al.Chemical Engineering Journal (Lausanne, Switzerland : 1996)|November 10, 2015
Enhancement effects of chelating agents on the degradation of tetrachloroethene in Fe(III) catalyzed percarbonate systemZhouwei Miao, Xiaogang Gu, Shuguang Lu, et al.Environmental Science and Pollution Research International|March 26, 2018
Enhanced effect of EDDS and hydroxylamine on Fe(II)-catalyzed SPC system for trichloroethylene degradationXiaori Fu, Dionysios D Dionysiou, Mark L Brusseau, et al.Applied Catalysis. A, General|January 23, 2018
Efficient transformation in characteristics of cations supported-reduced graphene oxide nanocomposites for the destruction of trichloroethaneUsman Farooq, Muhammad Danish, Shuguang Lu, et al.Pageof 12