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      Partial removal and detoxification of Malachite Green and Crystal Violet from laboratory artificially contaminated water by Pleurotus ostreatus. Translated title: Eliminación parcial y desintoxicación de Verde Malaquita y Cristal Violeta del laboratorio con agua contaminada artificialmente por Pleurotus ostreatus. Translated title: Extração e desintoxicação de Verde Malaquita e Cristal Violeta de água contaminada artificialmente em laboratório por Pleurotus ostreatus.

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          Abstract

          Abstract The triphenylmethane Malachite Green (MG) and Crystal Violet (CV) dyes are cationic dyes and mix with domestic wastewater when dumped; increasing, among others, the chemical and biological oxygen demand and can cause acute toxicity at different trophic levels. Promoting the removal (decolorization) of MG and CV, and laccase activity (54.8 ± 8.9 and 30.6 ± 2.9 UL-1 respectively) by using P. ostreatus viable biomass needed parameters such as pH (4.5 and 6.0), temperature (25 to 30 °C), stirring speed (120 rpm), percentage of inoculum (2% v/v), and dye concentration (20 and 10 mg L-1). In adsorption studies, it was showed that an acidic pH favors the adsorption of both dyes and the model of pseudo-second order describes best the phenomenon of adsorption. Finally, the germination index (GI), using Lactuca sativa seeds for the initial dyes solutions, was < 50%; demonstrating its high phytotoxic effect. When dye solutions were treated with viable biomass, the GI increased, leaving open the possibility to perform future research to determine if the aqueous solutions, post-treated with P. ostreatus, could be used in treatments that generate less toxic water which could be used in processes that do not require potable water.

          Translated abstract

          Resumen Los colorantes trifenilmetánicos Verde Malaquita (MG) y Crystal Violeta (CV) son catiónicos y al ser vertidos se mezclan con aguas residuales domésticas, incrementando, entre otros, la demanda química y biológica de oxígeno; pudiendo causar toxicidad aguda en diferentes niveles tróficos. En este estudio se encontró que los parámetros pH (4,5 y 6,0), temperatura (25 y 30 °C), velocidad de agitación (120 r.p.m.), porcentaje de inóculo (2 % v/v) y concentración de colorante (20 y 10 mgL-1), presentaron un efecto significativo (p < 0.05) para favorecer la remoción (decoloración) de MG y CV, así como la actividad lacasa (54,76 ± 8,91 y 30,59 ± 2,89 UL-1 respectivamente) al utilizar biomasa viable de P. ostreatus. En los estudios de adsorción se evidenció que pH ácidos favorecen la adsorción de ambos colorantes y que el modelo de Pseudo-segundo orden describe mejor el fenómeno de quimisorción. Finalmente los índices de germinación (IG) empleando semillas de Lactuca sativa, para los colorantes iniciales fueron < 50 %; demostrando su efecto fitotóxico elevado. Cuando las soluciones de colorantes fueron tratadas con biomasa viable, el IG aumentó, dejando abierta la puerta para la realización de investigaciones futuras con la intensión de determinar si las soluciones acuosas, postratadas con P ostreatus, pueden ser utilizadas en tratamientos que generen aguas menos tóxicas y que estas puedan ser empleadas en otros procesos que no requieran agua potable.

          Translated abstract

          Resumen Os corantes de tipo trifenilmetano Verde Malaquita (VM) e Cristal Violeta (CV) são corantes catiônicos e se misturam com águas residuais domésticas quando descartadas; aumentando, entre outros, as demandas químicas e biológicas de oxigênio, podendo causar toxicidade aguda em diferentes níveis tróficos. Promoveu-se a remoção (descoloração) de VM e CV, e atividade da lacase (54.8 ± 8.9 e 30.6 ± 2.9 UL-1 respectivamente) utilizando como parâmetros necessários para a biomassa viável de P. ostreatus como pH (4,5 e 6,0), temperatura (25 a 30 °C), velocidade de agitação (120 RPM), porcentagem de inócuo (2 % v/v), e concentração de corante (20 e 10 mg L-1). Em estudos de absorção, se demonstrou que um pH mais ácido favorece a absorção de ambos corantes e o modelo de pseudo-segunda ordem descreve melhor o fenômeno da absorção. Finalmente, o índice de germinação (IG), utilizando sementes de Lactuca sativa para as soluções iniciais dos corantes, foi < 50 %; demonstrando assim seu alto efeito fitotóxico. Quando as soluções de corante foram tratadas com a biomassa viável, o IG aumentou, deixando em aberto a possibilidade de realizar futuras investigações para determinar se as soluções aquosas, tratadas com P. ostreatus, poderiam ser utilizadas em tratamentos que gerem águas menos tóxicas, que poderia ser utilizada em processos que não requerem água potável.

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          Kinetics of adsorption of metal ions on inorganic materials: A review.

          It is necessary to establish the rate law of adsorbate-adsorbent interactions to understand the mechanism by which the solute accumulates on the surface of a solid and gets adsorbed to the surface. A number of theoretical models and equations are available for the purpose and the best fit of the experimental data to any of these models is interpreted as giving the appropriate kinetics for the adsorption process. There is a spate of publications during the last few years on adsorption of various metals and other contaminants on conventional and non-conventional adsorbents, and many have tried to work out the kinetics. This has resulted from the wide interest generated on using adsorption as a practical method for treating contaminated water. In this review, an attempt has been made to discuss the kinetics of adsorption of metal ions on inorganic solids on the basis of published reports. A variety of materials like clays and clay minerals, zeolites, silica gel, soil, activated alumina, inorganic polymer, inorganic oxides, fly ash, etc. have been considered as the adsorbents and cations and anions of As, Cd, Co, Cr, Cu, Fe, Hg, Mn, Ni, Pb, Se, and Zn as adsorbate have been covered in this review. The majority of the interactions have been divided into either pseudo first order or second order kinetics on the basis of the best fit obtained by various groups of workers, although second order kinetics has been found to be the most predominant one. The discussion under each category is carried out with respect to each type of metal ion separately. Application of models as given by the Elovich equation, intra-particle diffusion and liquid film diffusion has also been shown by many authors and these have also been reviewed. The time taken for attaining equilibrium in each case has been considered as a significant parameter and is discussed almost in all the cases. The values of the kinetic rate coefficients indicate the speed at which the metal ions adsorb on the materials and these are discussed in all available cases. The review aims to give a comprehensive picture on the studies of kinetics of adsorption during the last few years.
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            Fungal laccases

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              Biosorption of hazardous crystal violet dye from aqueous solution onto treated ginger waste (TGW)

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                Author and article information

                Contributors
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Role: ED
                Journal
                unsc
                Universitas Scientiarum
                Univ. Sci.
                Facultad de Ciencias de la Pontificia Universidad Javeriana de Bogotá. (Bogotá, Distrito Capital, Colombia )
                0122-7483
                December 2016
                : 21
                : 3
                : 259-285
                Affiliations
                [1] Bogotá Bogotá orgnamePontificia Universidad Javeriana Colombia apedroza@ 123456javeriana.edu.co
                [4] Bogotá orgnameUniversidad Nacional de Colombia Colombia
                [3] México D.F orgnameInstituto Politécnico Nacional Mexico
                [2] Manizales Caldas orgnameUniversidad de Caldas Colombia
                Article
                S0122-74832016000300259
                10.11144/Javeriana.SC21-3.prad
                d3b4a483-2e4e-4e1e-8fd3-4b934c68428d

                This work is licensed under a Creative Commons Attribution 4.0 International License.

                History
                : 05 October 2016
                : 20 May 2016
                Page count
                Figures: 0, Tables: 0, Equations: 0, References: 52, Pages: 27
                Product

                SciELO Colombia


                Pleurotus ostreatus, Verde Malaquita,Pleurotus ostreatus, Malachite Green,Crystal Violet,decolorization and adsorption.,Crystal Violeta,decoloración y adsorción.,Cristal Violeta,descoloração e absorção.

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