Biosorción simultanea de plomo y cadmio en solución acuosa por biomasa de hongos penicillium sp.
Simultaneous biosorption of lead and cadmium from aqueos solution by fungal biomass Penicillium sp.
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Sánchez, J., Marrugo Negrete, J. L., & Urango, I. (2016). Biosorción simultanea de plomo y cadmio en solución acuosa por biomasa de hongos penicillium sp. Temas Agrarios, 19(1), 63-72. https://doi.org/10.21897/rta.v19i1.725
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- Agarwal, G., Bhuptawat, H. and Chaudhari, S. 2006. Biosorption of aqueous chromium (VI) by tamarindus indica seeds. Bioresource Technology. 97: 949-956.
- Deng, L., Su, Y., Su, H., Wang, X. and Zhu, X. 2006. Biosorption of copper(II) and lead(II) from aqueous solutions by nonliving green algae Cladophora f ascicularis: equilibrium, kinetics and environmental effects. Adsorption. 2: 267-277.
- Deng, S. and Ting, P. 2005. Characterization of PEI-modified biomass and Biosorption Cu(II), Pb(II) and Ni(II). Water Research 39: 2167-2177.
- Fan, T., Liu, Y., Feng, B., Zeng, G., Yang, C. and Zhou, M. 2008. Biosorption of cadmium (II), zinc (II) and lead (II) by Penicillium simplicissimum: Isotherms, kinetics and thermodynamics. Journal Of Hazardous Materials. 160: 655-661.
- Gupta, V. and Rastogi, A. 2008. Biosorption of lead from aqueous solutions by green algae Spirogyra species: kinetics and equilibrium studies. Journal Of Hazardous Materials. 152: 407-414.
- Johannes, F., Grosse, C., Esche, V., Brandenburg, P., Reich, A. and Groneberg, D. 2006. The toxicity of cadmium and resulting hazards for human health.Journal of Occupational Medicine and Toxicology. 1: 1-6.
- Lin, L., Li, J. and Juang, R. 2008. Removal of Cu(II) and Ni(II) from aqueous solutions using batch and fixed-bed ion exchange processes. Desalination. 225: 249-259.
- Miller, J., y Miller, J. 2002. Exactitud. In Estadística y Quimiometría para Química Analítica. Prentice Hall, Madrid. p277-278.
- Mishra, S. and Roy, C. 1996. Kinetics of Zn+2 adsorption by Pencillium sp. Hydrometallurgy. 40: 11-23.
- Natarajan, V., Grim, H., Muthuswamy, S., Tae, C., Kui, L. and Byung, O. 2010. Isolation, identification, Pb (II) biosorption isotherms and kinetics of a lead adsorbing Penicillium sp. MRF-1 from South Korean mine soil. Journal Of Environmental Sciences-China. 7: 1049-1056.
- Pino, G., Mesquita, L. and Torem, M. 2006. Biosorption of heavy metals by powder of green coconut shell. Separation Science And Technology. 41: 3141-3153.
- Shringer, R., Hermann, C., Morrill, T., Curtin, D. and Fuson, R. 1998. The Systematic Identification of Organic Compounds. Wiley, New York. 324 p.
- Valencia, H. 2004. Cultivo, microcultivo e identificación de hongos. Manual de prácticas de microbiología básica. Facultad de Ciencias de la Universidad Nacional de Colombia, Bogotá. p99-116
- Volesky, B. and Holan, Z. 1995. Biosorption of heavy metals.Biotechnology Progress. 11: 235-250
- Yan, G. and Viraraghavan, T. 2003. Heavy metal removal from aqueous solution by fungus Mucorrouxii.Water Research. 37: 4486-4496.
- Yi,L. and Shui, C. 2011. The biosorption of heavy metals from aqueous solution by Spirogyraand Cladophora filamentous macroalgae. Bioresource Technology. 102: 5297-5304.