SciELO - Scientific Electronic Library Online

 
vol.8 número1Nuevos aditivos multifuncionales para aceite de motor basados en alquilofenato modificados que contienen boro y nitrógenoEvaluación técnica-ambiental de un sistema de micro-cogeneración basado en gas natural para aplicación residencial índice de autoresíndice de materiabúsqueda de artículos
Home Pagelista alfabética de revistas  

Servicios Personalizados

Revista

Articulo

Indicadores

Links relacionados

  • En proceso de indezaciónCitado por Google
  • No hay articulos similaresSimilares en SciELO
  • En proceso de indezaciónSimilares en Google

Compartir


CT&F - Ciencia, Tecnología y Futuro

versión impresa ISSN 0122-5383

Resumen

REYES-CUELLAR, Julia Constanza. Nanobiosensing of phenol and its derivatives in a Kraft synthetic black liquor. C.T.F Cienc. Tecnol. Futuro [online]. 2018, vol.8, n.1, pp.93-100. ISSN 0122-5383.  https://doi.org/10.29047/01225383.96.

Phenol is an important raw material in the manufacturing industry, and it is found in industrial streams, both as a by-product and in wastewater flows. Due to their toxicity, the presence of phenol and its derivatives in water resources influences the quality of natural water, causing negative effects on human life. Thus, easily accessible measurement tools for phenol could be made available in rural communities where access to technology is limited. Sensors offer this opportunity, as they provide fast, reliable and easy use. In this study, a colorimetric nanobiosensor was developed based on polydiacetylene (PDA) liposomes, functionalized with Horseradish peroxidase (HRP). The recognition element was the HRP enzyme, immobilized at the surface of a cell-like nanostructure; biological interaction HRP-phenol was detected and the colorimetric PDA present in the liposome acted as a transducer element. After biological interaction, the polymer backbone is transformed from the blue to red phase; this colorimetric transition is observed visually and registered spectrometrically. The nanobiosensor was used to detect the phenol concentration in the 0.25 to 2 mM range in an industrial stream from the Kraft process, simulated under lab conditions. The response of the biosensor gives 7 % error in comparison with a spectrometric method.

Palabras clave : Liposomes; colorimetric response; polydiacetylene; polluent.

        · resumen en Español     · texto en Inglés     · Inglés ( pdf )