Bioremediation of Textile Dyeing Effluent Using Algae - A Review
Maruthanayagam Alaguprathana, Mani Poonkothai
Journal of Advances in Microbiology · pp. 1–12 · Published 12 Dec 2017
10.9734/JAMB/2017/37322Abstract
The textile industry is a substantial consumer of water and it produces enormous volumes of contaminated water: the most important contaminants are dyes and chemicals. Synthetic dyes have an adverse effect on aquatic ecosystem and their toxic substances have to be removed from the effluent before their discharging. Microbial processes for the treatment of textile wastewater have the advantage of being cost effective, environment friendly and producing less sludge. The mechanism of microbial decolourisation occurs from adsorption, enzymatic degradation or a combination of both. The reductase and oxidase enzymes are involved in the microbial degradation process. The goal of microbial treatment is to decolourise and detoxify the dye contaminated wastewater. Recent studies have been focused on the decolourisation or degradation of azo dyes using algae, yeast, fungi and bacteria. Biosorption is simply defined as the removal of substances from solution by biological material. Such substances can be organic, inorganic, gaseous and soluble or insoluble forms. Biosorption is a property of both living and dead organisms. It acts as an indicator for the removal of pollutant from wastewater because of its efficiency, simplicity, analogous operation to conventional ion exchange technology and availability of biomass. A vast number of low cost adsorbents are recommended for wastewater treatment because of their local availability, technical feasibility, engineering applicability and cost effectiveness. The low cost adsorbents are well perform in dye removal and widely used in industries not only minimize cost but also improve probability with maximum output. Biological decolourisation of textile dyeing effluent is receiving much concern due to cost effective and less regeneration by microorganisms such as bacteria, fungi, algae, and plants. Algal based remediation technology can provide an excellent resolution for textile wastewater pollution problems. Current status of biological decolourisation and remediation of textile dyeing effluents deals with the most on purpose part on the effects of various parameters like pH, temperature and dye concentrations is briefly discussed in this article.
Cited by 18
Mostafa M. El-Sheekh, Hala Y. El-Kassas, Sameh S. Ali · Microbial Cell Factories · 2025
Abate Ayele, Deribe Getachew, M. Kamaraj · Journal of Chemistry · 2021
Noura El-Ahmady El-Naggar, Ragaa A. Hamouda, Amna A. Saddiq · Scientific Reports · 2021
Rehab A. Abdelghaffar, Samar A. El-Mekkawi, Fatma Abdelghaffar · Desalination and Water Treatment · 2021
Deribe Getachew, Arumuganainar Suresh, Murugesan Kamaraj · International Journal of Phytoremediation · 2021
V.R. Umashree, K. Anjana, D. Vidya · Algae Materials · 2023
Ashish Bedi, Khushi Jain, Akanksha Jaiswar · Textile Science and Clothing Technology · 2025
Shehnaz, I. B. Prasher, Naushad Ahmad · Microorganisms · 2023
Related research
- Physicochemical and Microbiological Qualities of Water and Soil Samples from Groundnut Oil Producing Industry — shares topic coverage
- Decolourization of Vat Dyes by Bacterial Isolates Recovered from Local Textile Mills in Southwest, Nigeria — shares topic coverage
- The Effect of Temperature on Nitrate and Phosphate Uptake from Synthetic Wastewater by Selected Bacteria Species — shares topic coverage
- Survival and Speed of Escherichia coli Infiltration in a Hydromorphic Soil in Wet Tropical Zone — shares topic coverage
- Compliance Monitoring of Microbiological and Physicochemical Parameters of Abattoirs’ Effluents Discharged into Water Bodies in Owerri, Nigeria — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
18
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.