Research on the Synthesis of Zinc–Ammonium Phosphate Using Galvanic Waste Sludge as a Source of Zinc

Author:

Morgovan Claudia Mona1ORCID,Petrehele Anda Ioana Gratiela1ORCID,Badea Gabriela Elena1ORCID,Fodor Alexandrina1,Toderaș Monica2ORCID,Marian Eleonora3ORCID

Affiliation:

1. Department of Chemistry, Faculty of Informatics and Sciences, University of Oradea, 1 University Street, 410087 Oradea, Romania

2. Department of Physics, Faculty of Informatics and Sciences, University of Oradea, 1 University Street, 410087 Oradea, Romania

3. Department of Pharmacy, Faculty of Medicine and Pharmacy, University of Oradea, 29 N. Jiga Street, 410028 Oradea, Romania

Abstract

This paper presents the extraction of zinc ions from waste resulting from the galvanic industry, such as sludge from acid zinc electroplating baths, and their revaluation in mineral fertilizer as zinc–ammonium phosphate. The purpose of this work is to extract zinc ions from the sludge that forms directly in the zinc bath, which can only contain zinc and small amounts of iron, to revalorize zinc into the form of zinc–ammonium phosphate. The process of obtaining zinc–ammonium phosphate is presented using waste sludge from the galvanic industry. In order to obtain zinc–ammonium phosphate, the solution resulting from the dissolution of the sludge with a 20% hydrochloric acid solution was used in reaction with diammonium phosphate and a 25% ammonia solution. After the chemical analysis of the obtained products, zinc–ammonium phosphate was characterized using X-ray powder diffraction, infrared FT-IR spectroscopy and electronic microscopy (SEM) analysis. The results obtained indicate a promising approach to sustainable resource utilization in the production of zinc–ammonium phosphate.

Funder

University of Oradea

Publisher

MDPI AG

Reference37 articles.

1. Morgovan, C.M. (2009). Contributions to the Study of the Processes for the Recovery of Metallic Ions from the Waste of the Galvanic Industry in the Form of Microelement Fertilizers, Politehnica. (In Romanian).

2. Ultrasonicated graphene quantum dots dispersoid zinc ammonium phosphate hybrid electrode for supercapacitor applications;Raja;J. Mater. Sci.,2022

3. Influence of novel ammonium-modified zinc-free phosphate nanofillers on anticorrosive features of primer-less polyurethane top-coating compositions;Kowalczyk;J. Coat. Technol. Res.,2019

4. Eco-friendly fire-retardant finishing of cotton fabric with mixture of ammonium sulfamate and sodium Stannate with and without zinc acetate as external reagent;Pal;Cellulose,2023

5. Electrochemically activated nickel-cobalt double hydroxide for aqueous ammonium-zinc hybrid battery;Pan;Nano Res.,2023

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