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Cobalt-loaded cherry core biochar composite as an effective heterogeneous persulfate catalyst for bisphenol A degradation

Persulfate (PS)-based advanced oxidation processes have drawn tremendous attention for the degradation of recalcitrant pollutants, and cobalt composites are effective for PS activation to generate reactive species. In this study, composites of cobalt species loaded on cherry core-derived biochar (Co...

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Autores principales: Li, Li, Zhang, Yuanyuan, Yang, Shuangshuang, Zhang, Shengxiao, Xu, Qiang, Chen, Pinzhu, Du, Yaxuan, Xing, Yuxin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8982249/
https://www.ncbi.nlm.nih.gov/pubmed/35424685
http://dx.doi.org/10.1039/d1ra09236g
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author Li, Li
Zhang, Yuanyuan
Yang, Shuangshuang
Zhang, Shengxiao
Xu, Qiang
Chen, Pinzhu
Du, Yaxuan
Xing, Yuxin
author_facet Li, Li
Zhang, Yuanyuan
Yang, Shuangshuang
Zhang, Shengxiao
Xu, Qiang
Chen, Pinzhu
Du, Yaxuan
Xing, Yuxin
author_sort Li, Li
collection PubMed
description Persulfate (PS)-based advanced oxidation processes have drawn tremendous attention for the degradation of recalcitrant pollutants, and cobalt composites are effective for PS activation to generate reactive species. In this study, composites of cobalt species loaded on cherry core-derived biochar (Co/C) were prepared with a one-step pyrolysis method. The Co/C catalyst was applied as a catalyst for PS activation to degrade bisphenol A (BPA). Factors influencing the degradation efficiency were examined, including the ratio of raw materials, Co/C and PS dosages, temperature, and solution pH. The Co/C catalyst prepared when the ratio of raw material was 1 : 1 (Co/C-50) could efficiently activate both peroxymonosulfate (PMS) and peroxydisulfate (PDS). When the initial concentration of BPA was 20 mg L(−1), complete removal of BPA was achieved in the Co/C-50-PMS and Co/C-50-PDS systems within 8 min and 10 min, respectively. More than 70% of BPA could be mineralized in the Co/C-50-PS system. The free radical quenching experiments demonstrated that in the Co/C-50-PS system, the degradation of BPA was achieved through free radical, surface-bound free radical, and non-free radical pathways. The successful preparation of the Co/C-50-PS catalyst broadens the application of cobalt-based carbon materials in the activation of PS to remove organic pollutants.
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spelling pubmed-89822492022-04-13 Cobalt-loaded cherry core biochar composite as an effective heterogeneous persulfate catalyst for bisphenol A degradation Li, Li Zhang, Yuanyuan Yang, Shuangshuang Zhang, Shengxiao Xu, Qiang Chen, Pinzhu Du, Yaxuan Xing, Yuxin RSC Adv Chemistry Persulfate (PS)-based advanced oxidation processes have drawn tremendous attention for the degradation of recalcitrant pollutants, and cobalt composites are effective for PS activation to generate reactive species. In this study, composites of cobalt species loaded on cherry core-derived biochar (Co/C) were prepared with a one-step pyrolysis method. The Co/C catalyst was applied as a catalyst for PS activation to degrade bisphenol A (BPA). Factors influencing the degradation efficiency were examined, including the ratio of raw materials, Co/C and PS dosages, temperature, and solution pH. The Co/C catalyst prepared when the ratio of raw material was 1 : 1 (Co/C-50) could efficiently activate both peroxymonosulfate (PMS) and peroxydisulfate (PDS). When the initial concentration of BPA was 20 mg L(−1), complete removal of BPA was achieved in the Co/C-50-PMS and Co/C-50-PDS systems within 8 min and 10 min, respectively. More than 70% of BPA could be mineralized in the Co/C-50-PS system. The free radical quenching experiments demonstrated that in the Co/C-50-PS system, the degradation of BPA was achieved through free radical, surface-bound free radical, and non-free radical pathways. The successful preparation of the Co/C-50-PS catalyst broadens the application of cobalt-based carbon materials in the activation of PS to remove organic pollutants. The Royal Society of Chemistry 2022-03-04 /pmc/articles/PMC8982249/ /pubmed/35424685 http://dx.doi.org/10.1039/d1ra09236g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Li, Li
Zhang, Yuanyuan
Yang, Shuangshuang
Zhang, Shengxiao
Xu, Qiang
Chen, Pinzhu
Du, Yaxuan
Xing, Yuxin
Cobalt-loaded cherry core biochar composite as an effective heterogeneous persulfate catalyst for bisphenol A degradation
title Cobalt-loaded cherry core biochar composite as an effective heterogeneous persulfate catalyst for bisphenol A degradation
title_full Cobalt-loaded cherry core biochar composite as an effective heterogeneous persulfate catalyst for bisphenol A degradation
title_fullStr Cobalt-loaded cherry core biochar composite as an effective heterogeneous persulfate catalyst for bisphenol A degradation
title_full_unstemmed Cobalt-loaded cherry core biochar composite as an effective heterogeneous persulfate catalyst for bisphenol A degradation
title_short Cobalt-loaded cherry core biochar composite as an effective heterogeneous persulfate catalyst for bisphenol A degradation
title_sort cobalt-loaded cherry core biochar composite as an effective heterogeneous persulfate catalyst for bisphenol a degradation
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8982249/
https://www.ncbi.nlm.nih.gov/pubmed/35424685
http://dx.doi.org/10.1039/d1ra09236g
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