Production of highly soluble foliar fertilizer in a spouted bed dryer

Author:

Stoppe Ana Carolina Ribeiro1ORCID,Luz Mario Sérgio da1ORCID,Vieira Neto José Luiz1ORCID,Santos Kássia Graciele dos1ORCID

Affiliation:

1. Universidade Federal do Triângulo Mineiro/UFTM, Brazil

Abstract

ABSTRACT The drying process can be useful to change the particulate structure, improving the powder solubility. In this study, we investigated the drying of foliar fertilizer in a spouted bed using polyethylene pellets as inert particles to improve its solubility. A 23 factorial experimental design was used to evaluate how the powder yield and moisture were affected by the feeding time, intermittency time, and feed atomizer position. The spouting instability caused powder retention on the bed wall, which decreased the powder recovery efficiency by 2.3-26.6%. Although the powder recovery efficiency was low, the solubility time was reduced by 5.9 times, probably due to particle agglomeration, which increased the amorphous phase of the fertilizer. Design alterations, suggested by the CFD data, can increase spouted bed stability and facilitate centralized spouting. Based on this, the spouted bed drying technique was applied, and it effectively increased the solubility of commercial fertilizer, thus, incorporating more desirable characteristics for field applications.

Publisher

FapUNIFESP (SciELO)

Subject

Soil Science,General Veterinary,Agronomy and Crop Science,Animal Science and Zoology,Food Science

Reference34 articles.

1. Effects of foliar application of glycine and glutamine amino acids on growth and quality of sweet basil;AGHAYE NOROOZLO Y.;Advances in Horticultural Science,2019

2. Enhanced solubility of foliar fertilizer via spray dryer: Process analysis and productivity optimization by response surface methodology;ALBERTO A.;Ciência e Agrotecnologia,2022

3. Fountain confined conical spouted beds;ALTZIBAR H.;Powder Technology,2017

4. CFD simulation of different flow regimes of the spout fluidized bed with draft plates;ARAÚJO B. S. A.;Material Science Forum,2017

5. Spouted bed drying on inert particles: Evaluation of particle size distribution of recovered, accumulated and elutriated powders;BARROS J. P. A. A.;Drying Technology,2019

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