Xiuwen Cheng
Chinese Academy of Sciences
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Featured researches published by Xiuwen Cheng.
Journal of Hazardous Materials | 2018
Xinyi Zhang; Huixuan Zhang; Yanying Xiang; Sibei Hao; Yuxin Zhang; Ruonan Guo; Xiuwen Cheng; Mingzheng Xie; Qingfeng Cheng; Bo Li
In the present study, silver phosphate/graphene oxide (Ag3PO4/GO) composite was synthesized by ultrasound-precipitation processes. Afterwards, physicochemical properties of the resulting samples were studied through scanning electron microscope, transmission electron microscope, X-ray diffraction, N2 adsorption/desorption, UV-vis diffuse reflectance spectroscopy, Raman spectroscopy, X-ray photoelectron spectroscopy, surface photovoltage spectroscopy and photoelectrochemical measurements. Results indicated that spherical Ag3PO4 displayed an average diameter of 150u2009nm and body-centered cubic crystal phase, which was integrated with GO. In addition, the visible light absorbance, charge separation efficiency and lifetime of Ag3PO4 were significantly improved by integration with GO. In addition, Ag3PO4/GO composite was applied to decompose tetrabromosphenol A (TBBPA) in water body. It was found that TBBPA could be completely decomposed within 60u2009min illumination. Furthermore, several scavenger experiments were conducted to distinguish the contribution of reactive species to the photoctalytic efficiency. Moreover, the enhanced visible light mechanism of Ag3PO4/GO was proposed and discussed. Eventually, several PC decomposition pathways of TBBPA were identified including directly debromination and oxidation, and subsequently further oxidation and hydroxylation processes.
Chemosphere | 2017
Qingfeng Cheng; Lichao Nengzi; Linlin Bao; Yang Huang; Shengyu Liu; Xiuwen Cheng; Bo Li; Jie Zhang
A pilot-scale biofilter treating real groundwater was developed in this study, which showed that ammonia, iron and manganese were mainly removed at 0.4, 0.4 and 0.8xa0m of the filter bed, respectively, and the corresponding removal efficiencies were 90.82%, 95.48% and 95.90% in steady phase, respectively. The variation of microbial populations in the biofilter during start-up process was also investigated using high-throughput pyrosequencing (HTP). Results indicated that the main functional microbes for ammonia, iron and manganese removal were Nitrosomonas, Crenothrix and Crenothrix, respectively, which was mainly distributed at 0.8, 0, and 0.8xa0m of the filter bed with a corresponding abundance of 8.7%, 28.12% and 11.33% in steady phase, respectively. Kinds of other bacteria which may be related to methane, hydrogen sulfide and organic matter removal, were also found. In addition, small part of archaea was also detected, such as Candidatus Nitrososphaera, which plays a role in nitritation.
Separation and Purification Technology | 2017
Xiaoyong Deng; Huixuan Zhang; Qiuling Ma; Yuqi Cui; Xiuwen Cheng; Xiaoli Li; Mingzheng Xie; Qingfeng Cheng
Electrochimica Acta | 2017
Yuqi Cui; Huixuan Zhang; Ruonan Guo; Qiuling Ma; Xiaoyong Deng; Xiuwen Cheng; Xiaoli Li; Mingzheng Xie; Qingfeng Cheng; Changwu Zou
Separation and Purification Technology | 2018
Qingfeng Cheng; Xiaoyong Deng; Huixuan Zhang; Ruonan Guo; Yuqi Cui; Qiuling Ma; Xinyi Zhang; Xiuwen Cheng; Mingzheng Xie; Bo Li
Separation and Purification Technology | 2018
Xiaoyong Deng; Huixuan Zhang; Ruonan Guo; Yuqi Cui; Qiuling Ma; Xinyi Zhang; Xiuwen Cheng; Bo Li; Mingzheng Xie; Qingfeng Cheng
Journal of The Taiwan Institute of Chemical Engineers | 2018
Junjing Li; Xiaoyong Deng; Ruonan Guo; Bo Li; Qingfeng Cheng; Xiuwen Cheng
Separation and Purification Technology | 2018
Yuqi Cui; Zixuan Zhang; Bo Li; Ruonan Guo; Xinyi Zhang; Xiuwen Cheng; Mingzheng Xie; Qingfeng Cheng
Separation and Purification Technology | 2018
Ruonan Guo; Xinhui Xia; Xinyi Zhang; Bo Li; Huixuan Zhang; Xiuwen Cheng; Mingzheng Xie; Qingfeng Cheng
Journal of The Taiwan Institute of Chemical Engineers | 2018
Xiaoyong Deng; Ruonan Guo; Huixuan Zhang; Bo Li; Qiuling Ma; Yuqi Cui; Xinyi Zhang; Xiuwen Cheng; Mingzheng Xie; Qingfeng Cheng