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Crushed autoclaved aerated concrete (CAAC), A potential reactive filter medium for enhancing phosphorus removal in nature-based solutions-preliminary batch studies

Identificadores
URI: http://hdl.handle.net/20.500.12251/1179
Ver/Abrir: https://doi.org/10.3390/w11071442
ISSN: 2073-4441
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Autor
Castellar da Cunha, Joana Amèrica; Formosa Mitjans, Joan; Chimenos Ribera, Josep María; Montserrat Canals, Joan; Bosch González, Montserrat; [et al.]
Fecha
2019
Materia/s

Fósforo

Eutrofización

Acidificación

Ensayos (propiedades o materiales)

Aguas residuales

Reutilización

Hormigón reciclado

phosphorus

kinetics

Wastewater

reuse

calcium silicate hydrates

recycled concrete

tobermorite

Materia/s Unesco

3308.02 Residuos Industriales

3305.05 Tecnología del Hormigón

3312.12 Ensayo de Materiales

3308.10 Tecnología de Aguas Residuales

3308.04 Ingeniería de la Contaminación

2303.22 Compuestos de Fósforo

3308.07 Eliminación de Residuos

3308.11 Control de la Contaminación del Agua

Resumen

Phosphorus (P) is a limited resource and can promote eutrophication of water streams and acidification of oceans when discharged. Crushed autoclaved aerated concrete (CAAC), a by-product from demolition, has shown great potential for recovering P. The potential of CAAC to be used in nature-based solutions as a P-reactive filter medium was evaluated by performing preliminary batch essays. Here, we evaluated the interactions and main effects of the initial concentration of P (Pi; 5, 10 or 20 mg L−1), particle size (PS; 4 or 5 mm) and contact time (CT; 60, 180, 360, 720 and 1440 min) upon the removal. We performed physical and chemical characterization to understand the removal processes. Data collected were fitted in adsorption kinetic models. The statistical analysis showed a significant interaction between CT and Pi, with the combination of its main effects stronger on P removal than each one separately. Intriguingly, we noticed that the higher the concentration of Pi, the faster and higher the removal of P. Contrary to expectations, PS 5 mm showed higher removal rates than PS 4 mm, indicating that besides adsorption, other unidentified chemical processes are in place. Further studies using columns/pilots with real wastewater are recommended for a future follow-up.

Phosphorus (P) is a limited resource and can promote eutrophication of water streams and acidification of oceans when discharged. Crushed autoclaved aerated concrete (CAAC), a by-product from demolition, has shown great potential for recovering P. The potential of CAAC to be used in nature-based solutions as a P-reactive filter medium was evaluated by performing preliminary batch essays. Here, we evaluated the interactions and main effects of the initial concentration of P (Pi; 5, 10 or 20 mg L−1), particle size (PS; 4 or 5 mm) and contact time (CT; 60, 180, 360, 720 and 1440 min) upon the removal. We performed physical and chemical characterization to understand the removal processes. Data collected were fitted in adsorption kinetic models. The statistical analysis showed a significant interaction between CT and Pi, with the combination of its main effects stronger on P removal than each one separately. Intriguingly, we noticed that the higher the concentration of Pi, the faster and higher the removal of P. Contrary to expectations, PS 5 mm showed higher removal rates than PS 4 mm, indicating that besides adsorption, other unidentified chemical processes are in place. Further studies using columns/pilots with real wastewater are recommended for a future follow-up.

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