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1.
Environ Technol ; 44(3): 334-341, 2023 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-34407726

RESUMO

This work shows the efficiency of wash waters from lipopeptide production as a remediation strategy to treat urban water samples contaminated with p-cresol. The harvesting step in surfactin production involved a centrifugation step, generating a major soluble fraction and a fraction that is adsorbed to the biomass. The adsorbed fraction was recovered by washing steps. These wash waters containing lipopeptides (mostly surfactins), were successfully used to adsorb and solubilize p-cresol. The method of decontamination applied to an artificially contaminated natural water was monitored using a biosensor based on laccase/magnetic nanoparticles. Given the amount of surfactin within the wash water, the removal of p-cresol from artificially contaminated water was approximately 46.0%. This result confirms the successful and sustainable application of surfactin-rich wash waters to remove p-cresol from artificially contaminated natural water. The adsorption mechanism is potentially based on a multi-layer adsorption process, considering Langmuir and Freundlich adsorption isotherms.


Assuntos
Lipopeptídeos , Poluentes Químicos da Água , Cresóis , Adsorção , Água
2.
Chemosphere ; 119: 1353-1360, 2015 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-24630462

RESUMO

Hydrated ferric oxide (HFeO), hydrated zirconium oxide (HZrO) and hydrated copper oxide (HCuO) were immobilized within a microporous anion exchange resin (IRA-400), forming hybrid media for enhanced phosphate removal from aqueous systems. Empirical data from batch kinetic trials fitted the pseudo second order mechanism for chemical adsorption and each media was rate limited by intraparticle diffusion overall. These models were also used to predict the adsorption rate constants and the equilibrium adsorption capacities, which ranged from 26.51 to 30.44 mgP g(-1), and from 24.15 to 27.90 mgP g(-1) of media for the calculated and experimental capacities, respectively. The phosphate adsorption behavior by the hybrid materials fit both the Langmuir and Freundlich adsorption isotherms (R(2)>0.94), and the maximum adsorption capacities were 111.1 mgP g(-1) for HFeO, 91.74 mgP g(-1) for HZrO and 74.07 mgP g(-1) for HCuO. The effect of competing ions such as sulfate reduced these capacities to 18.52 mgP g(-1) for HFeO and 18.97 mgP g(-1) for HZrO. Despite this decrease, HFeO was capable of reducing the phosphate in a real wastewater matrix by 83%, and the HZrO media was able to reduce it by 86%, suggesting that such hybrid media have the potential for application at full scale.


Assuntos
Fosfatos/isolamento & purificação , Águas Residuárias/química , Poluentes Químicos da Água/isolamento & purificação , Purificação da Água/métodos , Adsorção , Cobre/química , Difusão , Compostos Férricos/química , Cinética , Fosfatos/análise , Poluentes Químicos da Água/análise
3.
Eng. sanit. ambient ; Eng. sanit. ambient;14(1): 29-38, jan.-mar. 2009. graf, tab
Artigo em Português | LILACS | ID: lil-512044

RESUMO

A ocorrência de florações de cianobactérias em mananciais de abastecimento público prejudica a qualidade da água, podendo, inclusive, ocasionar a presença de cianotoxinas. A dificuldade de remover as cianotoxinas da água motivou o presente trabalho, cujo objetivo foi o de avaliar a remoção da cianotoxina microcistina empregando diferentes carvões ativados em pó (CAPs). Os CAPs foram caracterizados quanto ao número de iodo, granulometria, distribuição e volume de poros, além das isotermas de Freundlich. Os resultados mostraram que os CAPs de madeira apresentaram os maiores valores do número de iodo, capacidade máxima adsortiva (qe, máx) e volume de microporos secundários e mesoporos. A adequada caracterização do CAP é uma etapa importante na sua aquisição pelas estações de tratamento de água, pois índices isolados podem não avaliar corretamente o CAP.


The cyanobacterial bloom's occurrence in sources of public supplying harms water quality, even causing cianotoxins presence. The difficulty of the cianotoxins removal from the water has motivated the present work, which objective was to evaluate the removal of the cianotoxin microcystin through the use of different powdered activated carbons (PACs). The PACs were characterized according to its iodine number, granulometry, distribution and volume of pores, besides the Freundlich isotherms. The results showed that the wood PACs presented the highest values of iodine number, maximum adsorptive capacity (qe, max) and volume of secondary micropores and mesoporos. The adequate characterization of the PACs is an important stage in its acquisition by the water treatment plants, because isolated indices can not evaluate the PACs correctly.

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