Abstract
AbstractBecause of the increased amount of cobalt and Congo red dye effluents attributable to the industrial operations, the capacity of Enteromorpha intestinalis biomass as a sustainable source to achieve significant biosorption percent for both pollutants from dual solution was assessed. A fifty batch FCCCD experiments for biosorption of cobalt ions and Congo red dye were performed. The complete removal of Congo red dye was obtained at 36th run using an initial pH value of 10, 1.0 g/L of Enteromorpha intestinalis biomass, 100 and 200 mg/L of Congo red and cobalt for a 20-min incubation time. Meanwhile, a cobalt removal percent of 85.22 was obtained at 35th run using a neutral pH of 7.0, 3.0 g/L of algal biomass, 150 and 120 mg/L of Congo red, and cobalt for a 60-min incubation time. For further illustration and to interpret how the biosorption mechanism was performed, FTIR analysis was conducted to inspect the role of each active group in the biosorption process, it can be inferred that –OH, C–H, C=O, O–SO3- and C–O–C groups were mainly responsible for Co2+ adsorption of from aqueous dual solution. Also, scan electron microscope revealed the appearance of new shiny particles biosorbed on E. intestinalis surface after the biosorption process. EDS analysis proved the presence of Co2+ on the algal surface after the biosorption process.
Publisher
Springer Science and Business Media LLC
Reference89 articles.
1. World Health Organization. Preventing Disease Through Healthy Environments: Exposure to Highly Hazardous Pesticides: A Major Public Health Concern (World Health Organization, 2019).
2. Dotto, G. L. & McKay, G. Current scenario and challenges in adsorption for water treatment. J. Environ. Chem. Eng. 8, 103988 (2020).
3. Denchak, M. Water Pollution: Everything You Need to Know. NRDC Retrieved from https://www.nrdc.org/stories/waterpollution-everything-you-need-know (2018).
4. Roy, T. K. & Mondal, N. K. Biosorption of Congo red from aqueous solution onto burned root of Eichhornia crassipes biomass. Appl. Water Sci. 7, 1841–1854 (2017).
5. Calderón, O. A. R., Abdeldayem, O. M., Pugazhendhi, A. & Rene, E. R. Current updates and perspectives of biosorption technology: An alternative for the removal of heavy metals from wastewater. Curr. Pollut. Rep. 6, 8–27 (2020).
Cited by
14 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献