LAPSE:2023.5116
Published Article

LAPSE:2023.5116
Biotransformation of Citrus Waste-II: Bio-Sorbent Materials for Removal of Dyes, Heavy Metals and Toxic Chemicals from Polluted Water
February 23, 2023
Abstract
Industrial processes and anthropogenic activities generate huge amounts of wastes in the form of chemicals, such as heavy metals, dyes, fertilizers, pharmaceutically active chemicals, battery effluents and so on. When these chemicals are left untreated and discarded in the ground or surface waters, they not only cause pollution and harm the ecosystem but also cause toxic effects on the health of human beings, animals and food crops. There are several methods of removal of these toxic materials from the wastewaters, and adsorption by bio-sorbents has been demonstrated as one of the most inexpensive, efficient and convenient methods. Citrus is one of the largest grown fruit crops in the tropical and subtropical regions on the planet. After processing of the fruits at food processing industries, approximately half of the fruit mass is discarded as waste, which causes a number of pollution problems. Alternately, this biomass can be converted to bio-sorbents for the removal of harmful and toxic chemicals from the industrial effluents and wastewaters. The first part of this article contains a thorough review on the biotransformation of citrus waste for the production of biofuel and valuable compounds by fermentation involving microorganisms. The second and concluding part reviews the recent progress in biotransformation of citrus waste biomass (that may be remaining post-extraction of valuable compounds/biofuel generation) into efficient adsorbent substrate materials and their adsorption capacities. The article also includes the details of the synthesis process and mechanisms of adsorption processes.
Industrial processes and anthropogenic activities generate huge amounts of wastes in the form of chemicals, such as heavy metals, dyes, fertilizers, pharmaceutically active chemicals, battery effluents and so on. When these chemicals are left untreated and discarded in the ground or surface waters, they not only cause pollution and harm the ecosystem but also cause toxic effects on the health of human beings, animals and food crops. There are several methods of removal of these toxic materials from the wastewaters, and adsorption by bio-sorbents has been demonstrated as one of the most inexpensive, efficient and convenient methods. Citrus is one of the largest grown fruit crops in the tropical and subtropical regions on the planet. After processing of the fruits at food processing industries, approximately half of the fruit mass is discarded as waste, which causes a number of pollution problems. Alternately, this biomass can be converted to bio-sorbents for the removal of harmful and toxic chemicals from the industrial effluents and wastewaters. The first part of this article contains a thorough review on the biotransformation of citrus waste for the production of biofuel and valuable compounds by fermentation involving microorganisms. The second and concluding part reviews the recent progress in biotransformation of citrus waste biomass (that may be remaining post-extraction of valuable compounds/biofuel generation) into efficient adsorbent substrate materials and their adsorption capacities. The article also includes the details of the synthesis process and mechanisms of adsorption processes.
Record ID
Keywords
activated carbon, batch adsorption, bio-sorbent, citrus waste biomass, dyes, fixed-bed adsorption column, heavy metals, pre-treatment
Subject
Suggested Citation
Mahato N, Agarwal P, Mohapatra D, Sinha M, Dhyani A, Pathak B, Tripathi MK, Angaiah S. Biotransformation of Citrus Waste-II: Bio-Sorbent Materials for Removal of Dyes, Heavy Metals and Toxic Chemicals from Polluted Water. (2023). LAPSE:2023.5116
Author Affiliations
Mahato N: School of Chemical Engineering, Yeungnam University, Gyeongsan 38541, Gyeongsanbuk-do, Korea [ORCID]
Agarwal P: Division of Chemistry, School of Basic and Applied Sciences, Galgotias University, Greater Noida 203 201, Uttar Pradesh, India
Mohapatra D: School of Chemical Engineering, Yeungnam University, Gyeongsan 38541, Gyeongsanbuk-do, Korea [ORCID]
Sinha M: Department of Medical Devices, National Institute of Pharmaceutical Education and Research, Ahmedabad, Palej, Gandhinagar 382 355, Gujrat, India
Dhyani A: Department of Applied Sciences, School of Engineering, University of Petroleum and Energy Studies, Dehradun 248 007, Uttarakhand, India
Pathak B: Department of Chemistry, Harishchandra PG College, Varanasi 221 005, Uttar Pradesh, India
Tripathi MK: Department of Metallurgical and Materials Engineering, National Institute of Technology, Raipur 492 010, Chhatisgarh, India
Angaiah S: Electro-Materials Research Laboratory, Centre for Nanoscience and Technology, Pondicherry University, Puducherry 605 014, Puducherry, India
Agarwal P: Division of Chemistry, School of Basic and Applied Sciences, Galgotias University, Greater Noida 203 201, Uttar Pradesh, India
Mohapatra D: School of Chemical Engineering, Yeungnam University, Gyeongsan 38541, Gyeongsanbuk-do, Korea [ORCID]
Sinha M: Department of Medical Devices, National Institute of Pharmaceutical Education and Research, Ahmedabad, Palej, Gandhinagar 382 355, Gujrat, India
Dhyani A: Department of Applied Sciences, School of Engineering, University of Petroleum and Energy Studies, Dehradun 248 007, Uttarakhand, India
Pathak B: Department of Chemistry, Harishchandra PG College, Varanasi 221 005, Uttar Pradesh, India
Tripathi MK: Department of Metallurgical and Materials Engineering, National Institute of Technology, Raipur 492 010, Chhatisgarh, India
Angaiah S: Electro-Materials Research Laboratory, Centre for Nanoscience and Technology, Pondicherry University, Puducherry 605 014, Puducherry, India
Journal Name
Processes
Volume
9
Issue
9
First Page
1544
Year
2021
Publication Date
2021-08-30
ISSN
2227-9717
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PII: pr9091544, Publication Type: Review
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LAPSE:2023.5116
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https://doi.org/10.3390/pr9091544
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Feb 23, 2023
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