Employing calcined and non-calcined aluminum-magnesium layered double hydroxides for detoxification of solution and nonalcoholic beer from aflatoxins B1 and G1

Detoxification of solution and beer from aflatoxins B1 and G1 using layered double hydroxides is the focus of this study. The aluminum-magnesium layered double hydroxide (Al-Mg LDH) is selected in its calcined and non-calcined forms to evaluate the influence of calcination on detoxification. They we...

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Main Authors: Elham Jahanmard, Javad Keramat, Ali Nasirpour, Rahmatollah Emadi
Format: Article
Language:English
Published: University of Tehran 2021-12-01
Series:Journal of Food and Bioprocess Engineering
Subjects:
Online Access:https://jfabe.ut.ac.ir/article_85000.html
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author Elham Jahanmard
Javad Keramat
Ali Nasirpour
Rahmatollah Emadi
author_facet Elham Jahanmard
Javad Keramat
Ali Nasirpour
Rahmatollah Emadi
author_sort Elham Jahanmard
collection DOAJ
description Detoxification of solution and beer from aflatoxins B1 and G1 using layered double hydroxides is the focus of this study. The aluminum-magnesium layered double hydroxide (Al-Mg LDH) is selected in its calcined and non-calcined forms to evaluate the influence of calcination on detoxification. They were produced using the co-precipitation method and used in contaminated solutions and beer. Characteristics of the adopted adsorbents were studied by XRD, FTIR and SEM methods. Effects of quantity of the adsorbents, exposure time, and initial content of aflatoxin were investigated. Moreover, effects of the adsorbents on the properties of beer were studied. The non-calcined form of Al-Mg LDH was not able to adsorb aflatoxins B1 and G1 considerably. On the opposite, its calcined form exhibited more than 90% adsorption just in less than one hour in solutions and in less than 4 hours in the beer samples. The reason is pointed to the fact that calcination of Al-Mg LDH considerably enhanced characteristics of the adsorbent. It almost doubled surface area of the material, increased its total pore volume over 54%, and added to its pore size over 35%.
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spelling doaj.art-c7dd9e75bd764e95b0021517780a82912022-12-22T03:26:56ZengUniversity of TehranJournal of Food and Bioprocess Engineering2676-34942021-12-014217518510.22059/jfabe.2021.334217.1101 Employing calcined and non-calcined aluminum-magnesium layered double hydroxides for detoxification of solution and nonalcoholic beer from aflatoxins B1 and G1Elham Jahanmard0Javad Keramat1Ali Nasirpour2Rahmatollah Emadi3Department of Food Sciences and Technology, College of Agriculture, Isfahan University of Technology, Isfahan 84156-83111, IranDepartment of Food Sciences and Technology, College of Agriculture, Isfahan University of Technology, Isfahan 84156-83111, IranDepartment of Food Sciences and Technology, College of Agriculture, Isfahan University of Technology, Isfahan 84156-83111, Iran Department of Materials Engineering, Isfahan University of Technology, Isfahan 84156-83111, Iran Detoxification of solution and beer from aflatoxins B1 and G1 using layered double hydroxides is the focus of this study. The aluminum-magnesium layered double hydroxide (Al-Mg LDH) is selected in its calcined and non-calcined forms to evaluate the influence of calcination on detoxification. They were produced using the co-precipitation method and used in contaminated solutions and beer. Characteristics of the adopted adsorbents were studied by XRD, FTIR and SEM methods. Effects of quantity of the adsorbents, exposure time, and initial content of aflatoxin were investigated. Moreover, effects of the adsorbents on the properties of beer were studied. The non-calcined form of Al-Mg LDH was not able to adsorb aflatoxins B1 and G1 considerably. On the opposite, its calcined form exhibited more than 90% adsorption just in less than one hour in solutions and in less than 4 hours in the beer samples. The reason is pointed to the fact that calcination of Al-Mg LDH considerably enhanced characteristics of the adsorbent. It almost doubled surface area of the material, increased its total pore volume over 54%, and added to its pore size over 35%.https://jfabe.ut.ac.ir/article_85000.htmladsorptional-mg ldhco-precipitationftirsurface area
spellingShingle Elham Jahanmard
Javad Keramat
Ali Nasirpour
Rahmatollah Emadi
Employing calcined and non-calcined aluminum-magnesium layered double hydroxides for detoxification of solution and nonalcoholic beer from aflatoxins B1 and G1
Journal of Food and Bioprocess Engineering
adsorption
al-mg ldh
co-precipitation
ftir
surface area
title Employing calcined and non-calcined aluminum-magnesium layered double hydroxides for detoxification of solution and nonalcoholic beer from aflatoxins B1 and G1
title_full Employing calcined and non-calcined aluminum-magnesium layered double hydroxides for detoxification of solution and nonalcoholic beer from aflatoxins B1 and G1
title_fullStr Employing calcined and non-calcined aluminum-magnesium layered double hydroxides for detoxification of solution and nonalcoholic beer from aflatoxins B1 and G1
title_full_unstemmed Employing calcined and non-calcined aluminum-magnesium layered double hydroxides for detoxification of solution and nonalcoholic beer from aflatoxins B1 and G1
title_short Employing calcined and non-calcined aluminum-magnesium layered double hydroxides for detoxification of solution and nonalcoholic beer from aflatoxins B1 and G1
title_sort employing calcined and non calcined aluminum magnesium layered double hydroxides for detoxification of solution and nonalcoholic beer from aflatoxins b1 and g1
topic adsorption
al-mg ldh
co-precipitation
ftir
surface area
url https://jfabe.ut.ac.ir/article_85000.html
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