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Study of zeolite anti-caking effects for fertilisers by H-1 low-field NMR

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Autor(es):
Novotny, Etelvino H. ; de Oliveira-Silva, Rodrigo ; Mattos, Bianca B. ; Rech, Iona ; Galvosas, Petrik ; Bonagamba, Tito J.
Número total de Autores: 6
Tipo de documento: Artigo Científico
Fonte: JOURNAL OF MAGNETIC RESONANCE; v. 342, p. 7-pg., 2022-07-15.
Resumo

Caking is associated with the consolidation of dry powder and granules, leading to losses of function and/or quality. It has been object of studies in the pharmaceutical, food and fertiliser areas since 19200s because of its significant impact on product quality and value. Caking has been described as a three-step event consisting of sorption-dissolution-recrystallisation phases and constitutes a critical factor in fertilisers losses during storage while also hampering fertiliser application. Current methods for the evaluation of water sorption dynamics are expensive, time-consuming and/or inaccurate. This manuscript describes an unprecedented application of low-field H-1 NMR relaxometry for the kinetic study of humidity uptake, in real-time, by urea mixed with different concentrations of an anti-caking agent (zeolite). The proposed method allows to follow the water uptake in different domains of the mixed fertiliser/zeolite samples. To our knowledge, this dynamic has not been observed and quantified so far in real-time. Furthermore, we presented the use of 2D-ILT for kinetic studies, being the first dimension the usual transverse relaxation and the second dimension the kinetic one. With this approach, the NMR relaxation times T-2 correlated to time constants associated with the uptake kinetics of the water. This method could be extended to several kinetic studies and experiments with temperature variation. Depending on the kinetics of the studied process, the kernel of the Laplace transform must be suitably adapted. (c) 2022 Elsevier Inc. All rights reserved. (AU)

Processo FAPESP: 09/54880-6 - Manipulação de spins nucleares através de técnicas de ressonância magnética e quadrupolar nuclear
Beneficiário:Tito José Bonagamba
Modalidade de apoio: Auxílio à Pesquisa - Regular