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Dive into the research topics where Jingwei Feng is active.

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Featured researches published by Jingwei Feng.


Journal of Environmental Science and Health Part A-toxic\/hazardous Substances & Environmental Engineering | 2016

Validation and application of an analytical method for the determination of selected acidic pharmaceuticals and estrogenic hormones in wastewater and sludge

Mengtao Zhang; Qianhui Mao; Jingwei Feng; Shoujun Yuan; Qiquan Wang; Deying Huang; Jibiao Zhang

ABSTRACT This study was undertaken to develop an extraction method for seven acidic pharmaceuticals and five steroidal estrogens from wastewater, treated wastewater and sludge samples. The temperature and time of sample derivatization using N,O-bis(trimethylsilyl)trifluoroacetamide was optimized. Our results show that pretreatment combined with solid phase extraction (SPE) for wastewater samples (using an ENVI-C18 cartridge) and liquid-solid extraction combined with SPE (using an HLB cartridge) for sludge samples increased the analytical efficiency for acidic pharmaceuticals and estrogenic hormones using gas chromatography-mass spectrometry (GC-MS). The derivatization conditions were optimized at 40°C for 2 h. In addition, the derivatized samples were stable at ambient temperature. The new method was validated and applied to the analysis of real wastewater and discharged sludge samples from a local wastewater treatment plant. Except for 17α-ethinylestradiol, all acidic pharmaceuticals and estrogens were detected in the influent, effluent and discharged sludge samples. The concentrations of these compounds were particularly high in the discharged sludge samples.


Desalination and Water Treatment | 2017

Oxidative degradation of the antineoplastic drugs 5-fluorouracil and cytarabine in aqueous solution by potassium permanganate

Pingping Cheng; Fangyuan Sun; Wei Wang; Jingwei Feng; Zhenhu Hu; Shoujun Yuan; Qiquan Wang

aDepartment of Municipal Engineering, School of Civil and Hdraulic Engineering, Hefei University of Technology, Hefei 230009, China, Tel. 86-551-62904144; emails: [email protected] (S. Yuan), [email protected] (P. Cheng), [email protected] (F. Sun), [email protected] (W. Wang), [email protected] (J. Feng), [email protected] (Z.-H. Hu) bState Key Laboratory of Pollution Control and Resource Reuse, Nanjing University, Nanjing 210046, China cChemistry Department, Delaware State University, Dover, DE 19901, USA, Tel. 302-857-6547; email: [email protected]


Archive | 2010

Dielectric barrier discharge plasma, adsorption and photocatalysis synergy waste water treatment device

Jingwei Feng; Zhenhu Hu; Kuizu Su; Deqian Xu; Shoujun Yuan; Huayong Zhong


Archive | 2010

Method for processing effluent by two-stage electrolysis and device thereof

Jingwei Feng; Zhenhu Hu; Kuizu Su; Deqian Xu; Shoujun Yuan; Huayong Zhong


Separation and Purification Technology | 2017

Non-thermal plasma and BiPO4 induced degradation of aqueous crystal violet

Junyang Chen; Yulai Du; Zijun Shen; Songsheng Lu; Kuizu Su; Shoujun Yuan; Zhenhu Hu; Aiyong Zhang; Jingwei Feng


Environmental Science and Pollution Research | 2016

Transformation of acetaminophen during water chlorination treatment: kinetics and transformation products identification

Fei Cao; Mengtao Zhang; Shoujun Yuan; Jingwei Feng; Qiquan Wang; Wei Wang; Zhenhu Hu


Separation and Purification Technology | 2016

Gamma radiolytic degradation of 3,4-dichloroaniline in aqueous solution

Deying Huang; Zhengfang Wang; Jianhua Zhang; Jingwei Feng; Zheng Zheng; Jibiao Zhang


Archive | 2010

Device used for removing 3, 4-dichloroaniline from water

Jingwei Feng; Zhenhu Hu; Kuizu Su; Deqian Xu; Shoujun Yuan; Huayong Zhong


Separation and Purification Technology | 2018

Non-thermal plasma and Fe2+ activated persulfate ignited degradation of aqueous crystal violet: Degradation mechanism and artificial neural network modeling

Junyang Chen; Jingwei Feng; Songsheng Lu; Zijun Shen; Yulai Du; Lu Peng; Peng Nian; Shoujun Yuan; Aiyong Zhang


Separation and Purification Technology | 2018

Aqueous methylparaben degradation by dielectric barrier discharge induced non-thermal plasma combined with ZnO-rGO nanosheets

Peng Nian; Lu Peng; Jingwei Feng; Xiangxiang Han; Binhua Cui; Songsheng Lu; Jie Zhang; Qiong Liu; Aiyong Zhang

Collaboration


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Shoujun Yuan

Hefei University of Technology

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Zhenhu Hu

Hefei University of Technology

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Kuizu Su

Hefei University of Technology

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Aiyong Zhang

Hefei University of Technology

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Wei Wang

Hefei University of Technology

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Qiquan Wang

Delaware State University

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Junyang Chen

Hefei University of Technology

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Lu Peng

Hefei University of Technology

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