Cargando…
The enhancement of reactive red 24 adsorption from aqueous solution using agricultural waste-derived biochar modified with ZnO nanoparticles
In this study, two types of agricultural wastes, sugarcane bagasse (SB) and cassava root husks (CRHs), were used to fabricate biochars. The pristine biochars derived from SB and CRHs (SBB and CRHB, respectively) were modified using ZnO nanoparticles to generate modified biochars (SBB-ZnO and CRHB-Zn...
Autores principales: | , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
The Royal Society of Chemistry
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8694736/ https://www.ncbi.nlm.nih.gov/pubmed/35423085 http://dx.doi.org/10.1039/d0ra09974k |
_version_ | 1784619422210588672 |
---|---|
author | Van, Huu Tap Nguyen, Lan Huong Dang, N. V. Chao, Huan-Ping Nguyen, Quang Trung Nguyen, Thu Huong Nguyen, Thi Bich Lien Thanh, Dang Van Nguyen, Hai Duy Thang, Phan Quang Thanh, Pham Thi Ha Hoang, Vinh Phu |
author_facet | Van, Huu Tap Nguyen, Lan Huong Dang, N. V. Chao, Huan-Ping Nguyen, Quang Trung Nguyen, Thu Huong Nguyen, Thi Bich Lien Thanh, Dang Van Nguyen, Hai Duy Thang, Phan Quang Thanh, Pham Thi Ha Hoang, Vinh Phu |
author_sort | Van, Huu Tap |
collection | PubMed |
description | In this study, two types of agricultural wastes, sugarcane bagasse (SB) and cassava root husks (CRHs), were used to fabricate biochars. The pristine biochars derived from SB and CRHs (SBB and CRHB, respectively) were modified using ZnO nanoparticles to generate modified biochars (SBB-ZnO and CRHB-ZnO, respectively) for the removal of Reactive Red 24 (RR24) from stimulated wastewater. Batch experiments were performed to evaluate the effects of ZnO nanoparticles' loading ratio, solution pH, contact time, and initial RR24 concentration on the RR24 adsorption capacity of biochars. The RR24 adsorption isotherm and kinetic data on SBB, SBB-ZnO3, CRHB, and CRHB-ZnO3 were analyzed. Results indicate that SB- and CRH-derived biochars with a ZnO nanoparticle loading ratio of 3 wt% could generate maximum adsorption capacities of RR24 thanks to the double growth on the BET surface of modified biochars. The RR24 adsorption capacities of CRHB-ZnO3 and SBB-ZnO3 reached 81.04 and 105.24 mg g(−1), respectively, which were much higher than those of pristine CRHB and SBB (66.19 and 76.14, respectively) at an initial RR24 concentration of 250 mg L(−1), pH 3, and contact time of 60 min. The adsorption of RR24 onto biochars agreed well with the pseudo-first-order model and the Langmuir isotherm. The RR24 adsorption capacity on modified biochars, which were reused after five adsorption–desorption cycles showed no insignificant drop. The main adsorption mechanisms of RR24 onto biochars were controlled by electrostatic interactions between biochars' surface positively charged functional groups with azo dye anions, pore filling, hydrogen bonding formation, and π–π interaction. |
format | Online Article Text |
id | pubmed-8694736 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | The Royal Society of Chemistry |
record_format | MEDLINE/PubMed |
spelling | pubmed-86947362022-04-13 The enhancement of reactive red 24 adsorption from aqueous solution using agricultural waste-derived biochar modified with ZnO nanoparticles Van, Huu Tap Nguyen, Lan Huong Dang, N. V. Chao, Huan-Ping Nguyen, Quang Trung Nguyen, Thu Huong Nguyen, Thi Bich Lien Thanh, Dang Van Nguyen, Hai Duy Thang, Phan Quang Thanh, Pham Thi Ha Hoang, Vinh Phu RSC Adv Chemistry In this study, two types of agricultural wastes, sugarcane bagasse (SB) and cassava root husks (CRHs), were used to fabricate biochars. The pristine biochars derived from SB and CRHs (SBB and CRHB, respectively) were modified using ZnO nanoparticles to generate modified biochars (SBB-ZnO and CRHB-ZnO, respectively) for the removal of Reactive Red 24 (RR24) from stimulated wastewater. Batch experiments were performed to evaluate the effects of ZnO nanoparticles' loading ratio, solution pH, contact time, and initial RR24 concentration on the RR24 adsorption capacity of biochars. The RR24 adsorption isotherm and kinetic data on SBB, SBB-ZnO3, CRHB, and CRHB-ZnO3 were analyzed. Results indicate that SB- and CRH-derived biochars with a ZnO nanoparticle loading ratio of 3 wt% could generate maximum adsorption capacities of RR24 thanks to the double growth on the BET surface of modified biochars. The RR24 adsorption capacities of CRHB-ZnO3 and SBB-ZnO3 reached 81.04 and 105.24 mg g(−1), respectively, which were much higher than those of pristine CRHB and SBB (66.19 and 76.14, respectively) at an initial RR24 concentration of 250 mg L(−1), pH 3, and contact time of 60 min. The adsorption of RR24 onto biochars agreed well with the pseudo-first-order model and the Langmuir isotherm. The RR24 adsorption capacity on modified biochars, which were reused after five adsorption–desorption cycles showed no insignificant drop. The main adsorption mechanisms of RR24 onto biochars were controlled by electrostatic interactions between biochars' surface positively charged functional groups with azo dye anions, pore filling, hydrogen bonding formation, and π–π interaction. The Royal Society of Chemistry 2021-02-02 /pmc/articles/PMC8694736/ /pubmed/35423085 http://dx.doi.org/10.1039/d0ra09974k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/ |
spellingShingle | Chemistry Van, Huu Tap Nguyen, Lan Huong Dang, N. V. Chao, Huan-Ping Nguyen, Quang Trung Nguyen, Thu Huong Nguyen, Thi Bich Lien Thanh, Dang Van Nguyen, Hai Duy Thang, Phan Quang Thanh, Pham Thi Ha Hoang, Vinh Phu The enhancement of reactive red 24 adsorption from aqueous solution using agricultural waste-derived biochar modified with ZnO nanoparticles |
title | The enhancement of reactive red 24 adsorption from aqueous solution using agricultural waste-derived biochar modified with ZnO nanoparticles |
title_full | The enhancement of reactive red 24 adsorption from aqueous solution using agricultural waste-derived biochar modified with ZnO nanoparticles |
title_fullStr | The enhancement of reactive red 24 adsorption from aqueous solution using agricultural waste-derived biochar modified with ZnO nanoparticles |
title_full_unstemmed | The enhancement of reactive red 24 adsorption from aqueous solution using agricultural waste-derived biochar modified with ZnO nanoparticles |
title_short | The enhancement of reactive red 24 adsorption from aqueous solution using agricultural waste-derived biochar modified with ZnO nanoparticles |
title_sort | enhancement of reactive red 24 adsorption from aqueous solution using agricultural waste-derived biochar modified with zno nanoparticles |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8694736/ https://www.ncbi.nlm.nih.gov/pubmed/35423085 http://dx.doi.org/10.1039/d0ra09974k |
work_keys_str_mv | AT vanhuutap theenhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT nguyenlanhuong theenhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT dangnv theenhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT chaohuanping theenhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT nguyenquangtrung theenhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT nguyenthuhuong theenhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT nguyenthibichlien theenhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT thanhdangvan theenhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT nguyenhaiduy theenhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT thangphanquang theenhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT thanhphamthiha theenhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT hoangvinhphu theenhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT vanhuutap enhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT nguyenlanhuong enhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT dangnv enhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT chaohuanping enhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT nguyenquangtrung enhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT nguyenthuhuong enhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT nguyenthibichlien enhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT thanhdangvan enhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT nguyenhaiduy enhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT thangphanquang enhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT thanhphamthiha enhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles AT hoangvinhphu enhancementofreactivered24adsorptionfromaqueoussolutionusingagriculturalwastederivedbiocharmodifiedwithznonanoparticles |