Treatment and conditioning of spent ion exchange resins from nuclear facilities is a complex process that not only should contemplate obtaining a stable product suitable for long-term storage and/or disposal, but also have to take into account the treatment of secondary currents generated during the process. The combination of low temperature pyrolysis treatment and high performance plasma treatment (HPPT) of the off-gas generated could be a novel solution for organic matrix nuclear wastes with economic and safety advantages. In the present work, results of lab scale studies associated with the pyrolysis off-gas characterization and the performance and operating parameters influence on the removal of model compounds in a laboratory-scale flow reactor, using inductively coupled plasma under subatmospheric conditions, are shown. The pyrolysis off-gas stream was largely characterized and the evolution of main compounds of interest as function of temperature process was established. The results of plasma assays with the model compound demonstrate a high destruction and removal efficiency (>99.990%) and a good control over the final gas products. First results of a bench scale arrangement combining both processes are presented and bode well for the application of this combined technology.
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April 2019
Research-Article
Pyrolysis and High Performance Plasma Treatment Applied to Spent Ion Exchange Resins
Hernán Ariel Castro,
Hernán Ariel Castro
Programa Nacional de Gestión
de Residuos Radiactivos,
Comisión Nacional de Energía Atómica,
Centro Atómico Constituyentes,
Av. General Paz 1499,
San Martín 1650, Buenos Aires, Argentina;
de Residuos Radiactivos,
Comisión Nacional de Energía Atómica,
Centro Atómico Constituyentes,
Av. General Paz 1499,
San Martín 1650, Buenos Aires, Argentina;
Escuela de Ciencia y Tecnología,
Campus Miguelete,
Universidad Nacional de General San Martín,
Martín de Irigoyen 3100,
San Martín 1650,
Buenos Aires, Argentina
e-mail: hcastro@cnea.gov.ar
Campus Miguelete,
Universidad Nacional de General San Martín,
Martín de Irigoyen 3100,
San Martín 1650,
Buenos Aires, Argentina
e-mail: hcastro@cnea.gov.ar
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Raúl Ariel Rodríguez,
Raúl Ariel Rodríguez
Gerencia de Química,
Comisión Nacional de Energía Atómica,
Centro Atómico Constituyentes,
Av. General Paz 1499,
San Martín 1650, Buenos Aires, Argentina
e-mail: raularielrodriguez@cnea.gov.ar
Comisión Nacional de Energía Atómica,
Centro Atómico Constituyentes,
Av. General Paz 1499,
San Martín 1650, Buenos Aires, Argentina
e-mail: raularielrodriguez@cnea.gov.ar
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Vittorio Luca,
Vittorio Luca
Programa Nacional de Gestión de
Residuos Radiactivos,
Comisión Nacional de Energía Atómica,
Centro Atómico Constituyentes,
Av. General Paz 1499,
San Martín 1650, Buenos Aires, Argentina
e-mail: vluca@cnea.gov.ar
Residuos Radiactivos,
Comisión Nacional de Energía Atómica,
Centro Atómico Constituyentes,
Av. General Paz 1499,
San Martín 1650, Buenos Aires, Argentina
e-mail: vluca@cnea.gov.ar
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Hugo Luis Bianchi
Hugo Luis Bianchi
Gerencia de Química,
Comisión Nacional de Energía Atómica,
Centro Atómico Constituyentes,
Av. General Paz 1499,
San Martín 1650, Buenos Aires, Argentina;
Comisión Nacional de Energía Atómica,
Centro Atómico Constituyentes,
Av. General Paz 1499,
San Martín 1650, Buenos Aires, Argentina;
Escuela de Ciencia y Tecnología,
Campus Miguelete,
Universidad Nacional de General San Martín,
Martín de Irigoyen 3100,
San Martín 1650, Buenos Aires, Argentina
e-mail: bianchi@cnea.gov.ar
Campus Miguelete,
Universidad Nacional de General San Martín,
Martín de Irigoyen 3100,
San Martín 1650, Buenos Aires, Argentina
e-mail: bianchi@cnea.gov.ar
Search for other works by this author on:
Hernán Ariel Castro
Programa Nacional de Gestión
de Residuos Radiactivos,
Comisión Nacional de Energía Atómica,
Centro Atómico Constituyentes,
Av. General Paz 1499,
San Martín 1650, Buenos Aires, Argentina;
de Residuos Radiactivos,
Comisión Nacional de Energía Atómica,
Centro Atómico Constituyentes,
Av. General Paz 1499,
San Martín 1650, Buenos Aires, Argentina;
Escuela de Ciencia y Tecnología,
Campus Miguelete,
Universidad Nacional de General San Martín,
Martín de Irigoyen 3100,
San Martín 1650,
Buenos Aires, Argentina
e-mail: hcastro@cnea.gov.ar
Campus Miguelete,
Universidad Nacional de General San Martín,
Martín de Irigoyen 3100,
San Martín 1650,
Buenos Aires, Argentina
e-mail: hcastro@cnea.gov.ar
Raúl Ariel Rodríguez
Gerencia de Química,
Comisión Nacional de Energía Atómica,
Centro Atómico Constituyentes,
Av. General Paz 1499,
San Martín 1650, Buenos Aires, Argentina
e-mail: raularielrodriguez@cnea.gov.ar
Comisión Nacional de Energía Atómica,
Centro Atómico Constituyentes,
Av. General Paz 1499,
San Martín 1650, Buenos Aires, Argentina
e-mail: raularielrodriguez@cnea.gov.ar
Vittorio Luca
Programa Nacional de Gestión de
Residuos Radiactivos,
Comisión Nacional de Energía Atómica,
Centro Atómico Constituyentes,
Av. General Paz 1499,
San Martín 1650, Buenos Aires, Argentina
e-mail: vluca@cnea.gov.ar
Residuos Radiactivos,
Comisión Nacional de Energía Atómica,
Centro Atómico Constituyentes,
Av. General Paz 1499,
San Martín 1650, Buenos Aires, Argentina
e-mail: vluca@cnea.gov.ar
Hugo Luis Bianchi
Gerencia de Química,
Comisión Nacional de Energía Atómica,
Centro Atómico Constituyentes,
Av. General Paz 1499,
San Martín 1650, Buenos Aires, Argentina;
Comisión Nacional de Energía Atómica,
Centro Atómico Constituyentes,
Av. General Paz 1499,
San Martín 1650, Buenos Aires, Argentina;
Escuela de Ciencia y Tecnología,
Campus Miguelete,
Universidad Nacional de General San Martín,
Martín de Irigoyen 3100,
San Martín 1650, Buenos Aires, Argentina
e-mail: bianchi@cnea.gov.ar
Campus Miguelete,
Universidad Nacional de General San Martín,
Martín de Irigoyen 3100,
San Martín 1650, Buenos Aires, Argentina
e-mail: bianchi@cnea.gov.ar
1Corresponding author.
Manuscript received June 29, 2018; final manuscript received November 26, 2018; published online March 15, 2019. Assoc. Editor: Ignacio Gómez. This work was prepared while under employment by the Government of Argentina as part of the official duties of the author(s) indicated above, as such copyright is owned by that Government, which reserves its own copyright under national law.
ASME J of Nuclear Rad Sci. Apr 2019, 5(2): 020901 (8 pages)
Published Online: March 15, 2019
Article history
Received:
June 29, 2018
Revised:
November 26, 2018
Citation
Castro, H. A., Rodríguez, R. A., Luca, V., and Bianchi, H. L. (March 15, 2019). "Pyrolysis and High Performance Plasma Treatment Applied to Spent Ion Exchange Resins." ASME. ASME J of Nuclear Rad Sci. April 2019; 5(2): 020901. https://doi.org/10.1115/1.4042193
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