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Clean Style Recovery and Utilization of Residual Nutrients in Effluents From Biohydrogen Production: In Situ Immobilization Based on Sodium Alginate

Clean- and high-value recovery and reuse of the residue of biohydrogen production (biohydrogen slurry) is an urgent problem to be solved. In this study, sodium alginate (SA) gel was used to concentrate nutrients quickly in situ from biohydrogen slurry, which was prepared into gel microspheres (GMs),...

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Autores principales: Ai, Fuke, Zhang, Yang, Fan, Xiaoni, Li, Yameng, Zhang, Haorui, Jiao, Yinggang, Zhang, Quanguo, Yong, Cheng, Zhao, Jinfei, Petracchini, Francesco, Paolini, Valerio, Zhang, Zhiping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9149072/
https://www.ncbi.nlm.nih.gov/pubmed/35651547
http://dx.doi.org/10.3389/fbioe.2022.906968
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author Ai, Fuke
Zhang, Yang
Fan, Xiaoni
Li, Yameng
Zhang, Haorui
Jiao, Yinggang
Zhang, Quanguo
Yong, Cheng
Zhao, Jinfei
Petracchini, Francesco
Paolini, Valerio
Zhang, Zhiping
author_facet Ai, Fuke
Zhang, Yang
Fan, Xiaoni
Li, Yameng
Zhang, Haorui
Jiao, Yinggang
Zhang, Quanguo
Yong, Cheng
Zhao, Jinfei
Petracchini, Francesco
Paolini, Valerio
Zhang, Zhiping
author_sort Ai, Fuke
collection PubMed
description Clean- and high-value recovery and reuse of the residue of biohydrogen production (biohydrogen slurry) is an urgent problem to be solved. In this study, sodium alginate (SA) gel was used to concentrate nutrients quickly in situ from biohydrogen slurry, which was prepared into gel microspheres (GMs), just like “capsule.” The immobilization and release efficiency of conventional and reverse spherification were investigated. Better immobilization and release efficiency were detected under the conventional spherification method. The effect of GM sizes and concentrations of SA and calcium chloride (CaCl(2)) was further studied in terms of sphericity factor, nutrient release, yield, encapsulation efficiency, and loading capacity. The best immobilization effect was obtained with a 1.6-mm syringe needle, 3.0 wt% SA, and 6 wt% CaCl(2), in which the sphericity factor, nitrogen release, yield, nitrogen encapsulation efficiency, and nitrogen loading capacity reached to 0.047, 96.20, 77.68, 38.37, and 0.0476%, respectively. This process not only avoids environmental pollution from biohydrogen slurry but also uses them at a high value as a fertilizer to nourish the soil. The feasibility of “slurry capsule” preparation will realize the clean recovery and reuse of biohydrogen slurry, which provides a new idea for ecological protection and carbon neutral goals and has important significance for sustainable development.
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spelling pubmed-91490722022-05-31 Clean Style Recovery and Utilization of Residual Nutrients in Effluents From Biohydrogen Production: In Situ Immobilization Based on Sodium Alginate Ai, Fuke Zhang, Yang Fan, Xiaoni Li, Yameng Zhang, Haorui Jiao, Yinggang Zhang, Quanguo Yong, Cheng Zhao, Jinfei Petracchini, Francesco Paolini, Valerio Zhang, Zhiping Front Bioeng Biotechnol Bioengineering and Biotechnology Clean- and high-value recovery and reuse of the residue of biohydrogen production (biohydrogen slurry) is an urgent problem to be solved. In this study, sodium alginate (SA) gel was used to concentrate nutrients quickly in situ from biohydrogen slurry, which was prepared into gel microspheres (GMs), just like “capsule.” The immobilization and release efficiency of conventional and reverse spherification were investigated. Better immobilization and release efficiency were detected under the conventional spherification method. The effect of GM sizes and concentrations of SA and calcium chloride (CaCl(2)) was further studied in terms of sphericity factor, nutrient release, yield, encapsulation efficiency, and loading capacity. The best immobilization effect was obtained with a 1.6-mm syringe needle, 3.0 wt% SA, and 6 wt% CaCl(2), in which the sphericity factor, nitrogen release, yield, nitrogen encapsulation efficiency, and nitrogen loading capacity reached to 0.047, 96.20, 77.68, 38.37, and 0.0476%, respectively. This process not only avoids environmental pollution from biohydrogen slurry but also uses them at a high value as a fertilizer to nourish the soil. The feasibility of “slurry capsule” preparation will realize the clean recovery and reuse of biohydrogen slurry, which provides a new idea for ecological protection and carbon neutral goals and has important significance for sustainable development. Frontiers Media S.A. 2022-05-16 /pmc/articles/PMC9149072/ /pubmed/35651547 http://dx.doi.org/10.3389/fbioe.2022.906968 Text en Copyright © 2022 Ai, Zhang, Fan, Li, Zhang, Jiao, Zhang, Yong, Zhao, Petracchini, Paolini and Zhang. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Bioengineering and Biotechnology
Ai, Fuke
Zhang, Yang
Fan, Xiaoni
Li, Yameng
Zhang, Haorui
Jiao, Yinggang
Zhang, Quanguo
Yong, Cheng
Zhao, Jinfei
Petracchini, Francesco
Paolini, Valerio
Zhang, Zhiping
Clean Style Recovery and Utilization of Residual Nutrients in Effluents From Biohydrogen Production: In Situ Immobilization Based on Sodium Alginate
title Clean Style Recovery and Utilization of Residual Nutrients in Effluents From Biohydrogen Production: In Situ Immobilization Based on Sodium Alginate
title_full Clean Style Recovery and Utilization of Residual Nutrients in Effluents From Biohydrogen Production: In Situ Immobilization Based on Sodium Alginate
title_fullStr Clean Style Recovery and Utilization of Residual Nutrients in Effluents From Biohydrogen Production: In Situ Immobilization Based on Sodium Alginate
title_full_unstemmed Clean Style Recovery and Utilization of Residual Nutrients in Effluents From Biohydrogen Production: In Situ Immobilization Based on Sodium Alginate
title_short Clean Style Recovery and Utilization of Residual Nutrients in Effluents From Biohydrogen Production: In Situ Immobilization Based on Sodium Alginate
title_sort clean style recovery and utilization of residual nutrients in effluents from biohydrogen production: in situ immobilization based on sodium alginate
topic Bioengineering and Biotechnology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9149072/
https://www.ncbi.nlm.nih.gov/pubmed/35651547
http://dx.doi.org/10.3389/fbioe.2022.906968
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