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Featured researches published by Binbin Huang.


Environment International | 2014

Chlorinated volatile organic compounds (Cl-VOCs) in environment - sources, potential human health impacts, and current remediation technologies.

Binbin Huang; Chao Lei; Chaohai Wei; Guangming Zeng

Chlorinated volatile organic compounds (Cl-VOCs), including polychloromethanes, polychloroethanes and polychloroethylenes, are widely used as solvents, degreasing agents and a variety of commercial products. These compounds belong to a group of ubiquitous contaminants that can be found in contaminated soil, air and any kind of fluvial mediums such as groundwater, rivers and lakes. This review presents a summary of the research concerning the production levels and sources of Cl-VOCs, their potential impacts on human health as well as state-of-the-art remediation technologies. Important sources of Cl-VOCs principally include the emissions from industrial processes, the consumption of Cl-VOC-containing products, the disinfection process, as well as improper storage and disposal methods. Human exposure to Cl-VOCs can occur through different routes, including ingestion, inhalation and dermal contact. The toxicological impacts of these compounds have been carefully assessed, and the results demonstrate the potential associations of cancer incidence with exposure to Cl-VOCs. Most Cl-VOCs thus have been listed as priority pollutants by the Ministry of Environmental Protection (MEP) of China, Environmental Protection Agency of the U.S. (U.S. EPA) and European Commission (EC), and are under close monitor and strict control. Yet, more efforts will be put into the epidemiological studies for the risk of human exposure to Cl-VOCs and the exposure level measurements in contaminated sites in the future. State-of-the-art remediation technologies for Cl-VOCs employ non-destructive methods and destructive methods (e.g. thermal incineration, phytoremediation, biodegradation, advanced oxidation processes (AOPs) and reductive dechlorination), whose advantages, drawbacks and future developments are thoroughly discussed in the later sections.


Electrochimica Acta | 2012

Electrocatalytic properties of transition metals toward reductive dechlorination of polychloroethanes

Binbin Huang; Abdirisak Ahmed Isse; Christian Durante; Chaohai Wei; Armando Gennaro


Applied Catalysis B-environmental | 2012

Electrocatalytic dechlorination of volatile organic compounds at a copper cathode. Part I: Polychloromethanes

Abdirisak Ahmed Isse; Binbin Huang; Christian Durante; Armando Gennaro


Journal of Catalysis | 2017

Pd/Fe3O4 nanocatalysts for highly effective and simultaneous removal of humic acids and Cr(VI) by electro-Fenton with H2O2 in situ electro-generated on the catalyst surface

Binbin Huang; Chaoyuan Qi; Zhan Yang; Qian Guo; Wenqian Chen; Guangming Zeng; Chao Lei


Electrochemistry Communications | 2013

Highly selective electrochemical hydrogenation of acetylene to ethylene at Ag and Cu cathodes

Binbin Huang; Christian Durante; Abdirisak Ahmed Isse; Armando Gennaro


Chemical Engineering Journal | 2016

Effective catalytic hydrodechlorination of o-, p- and m-chloronitrobenzene over Ni/Fe nanoparticles: Effects of experimental parameter and molecule structure on the reduction kinetics and mechanisms

Binbin Huang; Wentao Qian; Chunxiao Yu; Tao Wang; Guangming Zeng; Chao Lei


Electrochimica Acta | 2016

Linear free energy relationships of electrochemical and thermodynamic parameters for the electrochemical reductive dechlorination of chlorinated volatile organic compounds (Cl-VOCs)

Binbin Huang; Jimei Long; Wenqian Chen; Yuanyuan Zhu; Guangming Zeng; Chao Lei


Journal of Catalysis | 2016

Highly efficient and selective catalytic hydrogenation of acetylene in N,N-dimethylformamide at room temperature

Binbin Huang; Tao Wang; Chao Lei; Wenqian Chen; Guangming Zeng; Flavio Maran


ACS Sustainable Chemistry & Engineering | 2017

Iron-Based Bimetallic Nanocatalysts for Highly Selective Hydrogenation of Acetylene in N,N-Dimethylformamide at Room Temperature

Binbin Huang; Tao Wang; Zhan Yang; Wentao Qian; Jimei Long; Guangming Zeng; Chao Lei


Electrochimica Acta | 2017

Uncovering the intrinsic relationship of electrocatalysis and molecular electrochemistry for dissociative electron transfer to polychloroethanes at silver cathode

Binbin Huang; Yuanyuan Zhu; Jing Li; Guangming Zeng; Chao Lei

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Chao Lei

University of Science and Technology

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Wenqian Chen

Imperial College London

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Chaohai Wei

South China University of Technology

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