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Dive into the research topics where Du Erdeng is active.

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Featured researches published by Du Erdeng.


Ecotoxicology and Environmental Safety | 2016

Increased formation of halomethanes during chlorination of chloramphenicol in drinking water by UV irradiation, persulfate oxidation, and combined UV/persulfate pre-treatments.

Chu Wenhai; Chu Tengfei; Du Erdeng; Yang Deng; Guo Yingqing; Gao Naiyun

Ultraviolet/persulfate (UV/PS) has been widely used to generate sulfate radicals for degradation of water organic pollutants in previous studies. However, its impacts on disinfection byproduct formation during post-chlorination of degraded compounds is unclear. The objective of this study was to evaluate the impacts of UV irradiation, PS oxidation, and the combined UV/PS advanced oxidation process (AOP) pre-treatments on halomethane formation during the following chlorination of chloramphenicol (CAP), a model antibiotic commonly found in wastewater-impacted water. Results showed that CAP could be transformed to more trichloromethane (TCM) than monochloromethane (MCM) and dichloromethane (DCM) in the presence of excess chlorine. UV photolysis, PS oxidation and UV/PS AOP all directly decomposed CAP to produce halomethanes (HMs) before post-chlorination. Moreover, UV and UV/PS pre-treatments both enhanced the formation of all the HMs in the subsequent chlorination. PS pre-oxidation decreased the TCM formation during post-chlorination, but increased the yields of MCM, DCM and total HMs. UV pre-irradiation significantly increased the bromide utilization of HMs, whereas UV/PS pre-oxidation decreased the bromine incorporation and utilization of HMs from the chlorination of CAP in a low-bromide water. UV irradiation, PS oxidation, and UV/PS AOP can inactivate pathogens and degrade organic pollutants, but this benefit should be weighed against a potential risk of the increased halomethane formation from degraded organic pollutants with and without post-chlorination.


Archive | 2015

Pretreatment device for low-concentration organic matter composition analysis in water

Du Erdeng; Li Dongdong; Feng Xinxin; Li Huajie; Guo Yingqing; Peng Mingguo


Archive | 2013

Diatomite substrate-shaped ceramic membrane, and preparation method and application thereof

Mao Yongjing; Wang Liping; Du Erdeng; Zhang Yunlin; Feng Sheng


Archive | 2013

Microfiltration ceramic membrane for removing alga and preparation method thereof

Wang Liping; Wang Chuqiao; Guo Yuchuan; Du Erdeng


Archive | 2016

Water quality monitoring and early warning system for micropollution raw water

Guo Yingqing; Du Erdeng; Peng Mingguo


Archive | 2017

Preparation method of treating agent for repairing slightly-polluted water

Peng Mingguo; Du Erdeng; Ma Jianfeng; Wang Liping; Li Zhihong; Ge Qiufan


Archive | 2017

Preparation method for composite material for micro-polluted water treatment

Peng Mingguo; Du Erdeng; Ma Jianfeng; Wang Liping; Li Zhihong; Ge Qiufan


Archive | 2017

Oxygen vacancy self-dope BiOI visible light catalyst as well as preparation method and application thereof

Zhang Fan; Wang Liping; Xiao Mei; Du Erdeng; Peng Mingguo


Archive | 2017

Composite material for carrying out photocatalytic degradation on microcystin and preparation method and application thereof

Wang Liping; Zhang Fan; Yuan Xin; Liu Fei; Du Erdeng; Xiao Mei


Archive | 2017

Preparation method and application of novel Bi3.84W0.16O6.24 nano octahedron material

Wang Liping; Xiao Mei; Li Xinying; Du Erdeng; Xu Xia

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Yang Deng

Montclair State University

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