Electrochemical oxidation, widely used in green production and pollution abatement, is often accompanied by the hydrogen evolution reaction (HER), which results in a high consumption of electricity and is a potential explosion hazard. To solve this problem, we report here a method for converting the original HER cathode into one that enables the oxygen reduction reaction (ORR) without having to build new electrolysis cells or be concerned about electrolyte leakage from the O-2 gas electrode. The viability of this method is demonstrated using the electrolytic production of ammonium persulfate (APS) as an example. The original carbon black electrode for the HER is converted to an ORR electrode by first undergoing in situ anodization and then contacting O-2 or air bubbled from the bottom of the electrode. With this sole change, APS production can achieve an electric energy saving of up to 20.3%. Considering the ease and low cost of this modification, such significant electricity savings make this method very promising in the upgrade of electrochemical oxidation processes, with wide potential applications.
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Chongqing Key Laboratory of Chemical Process for Clean Energy and Resource Utilization, College of Chemistry and Chemical Engineering. Chongqing University
Institute of New-Energy and Low-Carbon Technology, Sichuan UniversityChongqing Key Laboratory of Chemical Process for Clean Energy and Resource Utilization, College of Chemistry and Chemical Engineering. Chongqing University
Yao Wang
Linhui Chen
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Chongqing Key Laboratory of Chemical Process for Clean Energy and Resource Utilization, College of Chemistry and Chemical Engineering. Chongqing UniversityChongqing Key Laboratory of Chemical Process for Clean Energy and Resource Utilization, College of Chemistry and Chemical Engineering. Chongqing University
Linhui Chen
Zhanxin Mao
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Chongqing Key Laboratory of Chemical Process for Clean Energy and Resource Utilization, College of Chemistry and Chemical Engineering. Chongqing UniversityChongqing Key Laboratory of Chemical Process for Clean Energy and Resource Utilization, College of Chemistry and Chemical Engineering. Chongqing University
Zhanxin Mao
Lishan Peng
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Chongqing Key Laboratory of Chemical Process for Clean Energy and Resource Utilization, College of Chemistry and Chemical Engineering. Chongqing UniversityChongqing Key Laboratory of Chemical Process for Clean Energy and Resource Utilization, College of Chemistry and Chemical Engineering. Chongqing University
Lishan Peng
Rui Xiang
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Chongqing Key Laboratory of Chemical Process for Clean Energy and Resource Utilization, College of Chemistry and Chemical Engineering. Chongqing UniversityChongqing Key Laboratory of Chemical Process for Clean Energy and Resource Utilization, College of Chemistry and Chemical Engineering. Chongqing University
Rui Xiang
Xianyi Tang
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Chongqing Key Laboratory of Chemical Process for Clean Energy and Resource Utilization, College of Chemistry and Chemical Engineering. Chongqing UniversityChongqing Key Laboratory of Chemical Process for Clean Energy and Resource Utilization, College of Chemistry and Chemical Engineering. Chongqing University
Xianyi Tang
Jianghai Deng
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Chongqing Key Laboratory of Chemical Process for Clean Energy and Resource Utilization, College of Chemistry and Chemical Engineering. Chongqing UniversityChongqing Key Laboratory of Chemical Process for Clean Energy and Resource Utilization, College of Chemistry and Chemical Engineering. Chongqing University
Jianghai Deng
Zidong Wei
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Chongqing Key Laboratory of Chemical Process for Clean Energy and Resource Utilization, College of Chemistry and Chemical Engineering. Chongqing UniversityChongqing Key Laboratory of Chemical Process for Clean Energy and Resource Utilization, College of Chemistry and Chemical Engineering. Chongqing University
Zidong Wei
Qiang Liao
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Key Laboratory of Low-Grade Energy Utilization Technologies and Systems, Chongqing UniversityChongqing Key Laboratory of Chemical Process for Clean Energy and Resource Utilization, College of Chemistry and Chemical Engineering. Chongqing University
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Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing,100083, ChinaInstitute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing,100083, China
Xia, Jiuyang
Huang, Kang
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Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing,100083, ChinaInstitute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing,100083, China
Huang, Kang
Yao, Zhixiang
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Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing,100083, ChinaInstitute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing,100083, China
Yao, Zhixiang
Zhang, Bowei
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Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing,100083, ChinaInstitute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing,100083, China
Zhang, Bowei
Li, Siyuan
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Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing,100083, ChinaInstitute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing,100083, China
Li, Siyuan
Chen, Zhibin
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Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing,100083, ChinaInstitute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing,100083, China
Chen, Zhibin
Wu, Fei
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Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing,100083, ChinaInstitute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing,100083, China
Wu, Fei
Wu, Junsheng
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Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing,100083, ChinaInstitute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing,100083, China
Wu, Junsheng
Huang, Yizhong
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School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, 639798, SingaporeInstitute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing,100083, China
机构:
JNCASR, Mat Mol Lab, Chem & Phys Mat Unit, Sch Adv Mat SAMat, Bangalore, Karnataka, IndiaJNCASR, Mat Mol Lab, Chem & Phys Mat Unit, Sch Adv Mat SAMat, Bangalore, Karnataka, India
Bhattacharyya, Sohini
Das, Chayanika
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JNCASR, Mat Mol Lab, Chem & Phys Mat Unit, Sch Adv Mat SAMat, Bangalore, Karnataka, IndiaJNCASR, Mat Mol Lab, Chem & Phys Mat Unit, Sch Adv Mat SAMat, Bangalore, Karnataka, India
Das, Chayanika
Maji, Tapas Kumar
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JNCASR, Mat Mol Lab, Chem & Phys Mat Unit, Sch Adv Mat SAMat, Bangalore, Karnataka, IndiaJNCASR, Mat Mol Lab, Chem & Phys Mat Unit, Sch Adv Mat SAMat, Bangalore, Karnataka, India