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Please use this identifier to cite or link to this item: http://dspace.ucuenca.edu.ec/handle/123456789/37052
Title: Development of an automated tracer testing system for UASB laboratory-scale reactors
Authors: Cisneros Ramos, Juan Fernando
Nopens, Ingmar
Alvarado Martinez, Andres Omar
Pinos Velez, Veronica Patricia
Pelaez Samaniego, Manuel Raul
Keywords: Laboratory-scale model reactor
Residence time distribution curve
UASB reactor
Automated system
metadata.dc.ucuenca.areaconocimientofrascatiamplio: 2. Ingeniería y Tecnología
metadata.dc.ucuenca.areaconocimientofrascatidetallado: 2.11.2 Otras Ingenierias y Tecnologías
metadata.dc.ucuenca.areaconocimientofrascatiespecifico: 2.11 Otras Ingenierias y Tecnologías
metadata.dc.ucuenca.areaconocimientounescoamplio: 05 - Ciencias Físicas, Ciencias Naturales, Matemáticas y Estadísticas
metadata.dc.ucuenca.areaconocimientounescodetallado: 0521 - Ciencias Ambientales
metadata.dc.ucuenca.areaconocimientounescoespecifico: 052 - Medio Ambiente
Issue Date: 2021
metadata.dc.ucuenca.volumen: Volumen 13, número 13
metadata.dc.source: Water
metadata.dc.identifier.doi: 10.3390/w13131821
metadata.dc.type: ARTÍCULO
Abstract: 
Residence time distribution (RTD) curves play an essential role in the hydraulic characterization of reactors. Current approaches for obtaining RTD curves in laboratory-scale reactors are time-consuming and subject to large errors. Thus, automated systems to obtain RTD curves in laboratory-scale reactors are of great interest for reducing experimental errors due to human interaction, minimizing experimentation costs, and continuously obtaining experimental data. An automated system for obtaining RTD curves in laboratory-scale reactors was designed, built, and tested in this work. During the tests conducted in a cylindrical upflow anaerobic sludge blanket (UASB) reactor, the system worked properly using the stimulus–response pulse technique with sodium chloride as a tracer. Four main factors were found to affect the representativeness of the RTD curves: flow stabilization time, test water conductivity, temperature, and surface tension. A discussion on these factors and the corresponding solutions is presented. The RTD curves of the UASB reactor are left-skewed with a typical tank reactor’s flow shape with channeling and dead zones. A transitory flow behavior was evidenced in the reactor, which indicates the influence of internal turbulent flow structures. The system proposed herein is expected to help study the hydraulics of reactors using laboratory-scale models more efficiently
URI: http://dspace.ucuenca.edu.ec/handle/123456789/37052
https://www.mdpi.com/2073-4441/13/13/1821
metadata.dc.ucuenca.urifuente: https://www.mdpi.com/2073-4441/13/13
ISSN: 2073-4441
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