Bio-waste to environmental purifier: Application of potato peel for acid red 73 adsorption from leather dyeing effluent

Potato peel powder (PP) was prepared from kitchen wastes and explored in removal of Acid Red 73 (AR 73) dye from leather dyeing effluent. PP was characterized through FTIR, BET, SEM, XRD and EDX analysis. SEM micrographs illustrated rough and porous structure of PP that support the adsorption proces...

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Main Authors: Fatema-Tuj Zohra, Sobur Ahmed, Md Zahangir Alam, Md Nurnabi, Nazia Rahman
Format: Article
Language:English
Published: Elsevier 2025-06-01
Series:Water Resources and Industry
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Online Access:http://www.sciencedirect.com/science/article/pii/S2212371725000058
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author Fatema-Tuj Zohra
Sobur Ahmed
Md Zahangir Alam
Md Nurnabi
Nazia Rahman
author_facet Fatema-Tuj Zohra
Sobur Ahmed
Md Zahangir Alam
Md Nurnabi
Nazia Rahman
author_sort Fatema-Tuj Zohra
collection DOAJ
description Potato peel powder (PP) was prepared from kitchen wastes and explored in removal of Acid Red 73 (AR 73) dye from leather dyeing effluent. PP was characterized through FTIR, BET, SEM, XRD and EDX analysis. SEM micrographs illustrated rough and porous structure of PP that support the adsorption process. FTIR spectrum exhibited the changes caused by formation of hydrogen bonding, complex bonding, or other electrostatic interaction after dye adsorption. Wide and frail peaks in the XRD image indicated existence of amorphous carbon. BET analysis exhibited mesoporous structure of PP with average pore diameter of 85.98 Å. The impact of various influences viz. pH, dosages, concentration, time and temperature were explored through batch investigation. The maximum AR73 dye adsorption capacity of PP was 258.39 mg/g. The dye adsorption on PP complied both the Langmuir (R2 = 0.989) and Freundlich (R2 = 0.993) isotherm, preferably Freundlich model. The pseudo-second-order kinetic model (R2 = 0.999) was fitted better, i.e. chemisorption. The equilibrium adsorption capacity was 135.34 ± 1.59 mg/g at 298 K, which was decreased to 125.34 ± 1.81, 114.27 ± 1.43, and 104.08 ± 1.53 mg/g at 308, 318 and 328 K, respectively. Negative Gibbs free energy (ΔG) revealed that adsorption of AR 73 dye on PP was spontaneous. In real sample analysis, about 98.17 ± 0.58 % dye removal was obtained with 137.39 ± 2.46 mg/g capacity. This research revealed that PP has a good prospect for the application of AR 73 dye removal from leather dyeing effluent.
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spelling doaj-art-0498270f61954c95b385edfa9cafedcd2025-02-06T05:11:34ZengElsevierWater Resources and Industry2212-37172025-06-0133100281Bio-waste to environmental purifier: Application of potato peel for acid red 73 adsorption from leather dyeing effluentFatema-Tuj Zohra0Sobur Ahmed1Md Zahangir Alam2Md Nurnabi3Nazia Rahman4Institute of Leather Engineering and Technology, University of Dhaka, BangladeshInstitute of Leather Engineering and Technology, University of Dhaka, Bangladesh; Corresponding author.Department of Applied Chemistry and Chemical Engineering, University of Dhaka, Bangladesh; Corresponding author.Department of Applied Chemistry and Chemical Engineering, University of Dhaka, BangladeshInstitute of Nuclear Science and Technology, Bangladesh Atomic Energy Commission, Dhaka, 3787, BangladeshPotato peel powder (PP) was prepared from kitchen wastes and explored in removal of Acid Red 73 (AR 73) dye from leather dyeing effluent. PP was characterized through FTIR, BET, SEM, XRD and EDX analysis. SEM micrographs illustrated rough and porous structure of PP that support the adsorption process. FTIR spectrum exhibited the changes caused by formation of hydrogen bonding, complex bonding, or other electrostatic interaction after dye adsorption. Wide and frail peaks in the XRD image indicated existence of amorphous carbon. BET analysis exhibited mesoporous structure of PP with average pore diameter of 85.98 Å. The impact of various influences viz. pH, dosages, concentration, time and temperature were explored through batch investigation. The maximum AR73 dye adsorption capacity of PP was 258.39 mg/g. The dye adsorption on PP complied both the Langmuir (R2 = 0.989) and Freundlich (R2 = 0.993) isotherm, preferably Freundlich model. The pseudo-second-order kinetic model (R2 = 0.999) was fitted better, i.e. chemisorption. The equilibrium adsorption capacity was 135.34 ± 1.59 mg/g at 298 K, which was decreased to 125.34 ± 1.81, 114.27 ± 1.43, and 104.08 ± 1.53 mg/g at 308, 318 and 328 K, respectively. Negative Gibbs free energy (ΔG) revealed that adsorption of AR 73 dye on PP was spontaneous. In real sample analysis, about 98.17 ± 0.58 % dye removal was obtained with 137.39 ± 2.46 mg/g capacity. This research revealed that PP has a good prospect for the application of AR 73 dye removal from leather dyeing effluent.http://www.sciencedirect.com/science/article/pii/S2212371725000058Adsorption capacityBiosorbentDyeing effluentsIsothermRegeneration
spellingShingle Fatema-Tuj Zohra
Sobur Ahmed
Md Zahangir Alam
Md Nurnabi
Nazia Rahman
Bio-waste to environmental purifier: Application of potato peel for acid red 73 adsorption from leather dyeing effluent
Water Resources and Industry
Adsorption capacity
Biosorbent
Dyeing effluents
Isotherm
Regeneration
title Bio-waste to environmental purifier: Application of potato peel for acid red 73 adsorption from leather dyeing effluent
title_full Bio-waste to environmental purifier: Application of potato peel for acid red 73 adsorption from leather dyeing effluent
title_fullStr Bio-waste to environmental purifier: Application of potato peel for acid red 73 adsorption from leather dyeing effluent
title_full_unstemmed Bio-waste to environmental purifier: Application of potato peel for acid red 73 adsorption from leather dyeing effluent
title_short Bio-waste to environmental purifier: Application of potato peel for acid red 73 adsorption from leather dyeing effluent
title_sort bio waste to environmental purifier application of potato peel for acid red 73 adsorption from leather dyeing effluent
topic Adsorption capacity
Biosorbent
Dyeing effluents
Isotherm
Regeneration
url http://www.sciencedirect.com/science/article/pii/S2212371725000058
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AT mdzahangiralam biowastetoenvironmentalpurifierapplicationofpotatopeelforacidred73adsorptionfromleatherdyeingeffluent
AT mdnurnabi biowastetoenvironmentalpurifierapplicationofpotatopeelforacidred73adsorptionfromleatherdyeingeffluent
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