A Statistical Review of Alternative Zinc and Copper Extraction from Mineral Fertilizers and Industrial By-Products

Author:

Cenciani de Souza Camila Prado1,Aparecida de Abreu Cleide1,Coscione Aline Renée1,Alberto de Andrade Cristiano2,Teixeira Luiz Antonio Junqueira1,Consolini Flavia3

Affiliation:

1. Agronomic Institute of Campinas, Center of Soils and Environmental Resources, Caixa Postal 28, CEP 13.012-970, Campinas, SP, Brazil

2. Embrapa Environment, CEP 13.820-000, Jaguariúna, SP, Brazil

3. Brazilian Ministry of Agriculture, Livestock and Supply, National Agricultural Laboratory, CEP 13.208-051, Jundiaí, SP, Brazil

Abstract

Abstract Rapid, accurate, and low-cost alternative analytical methods for micronutrient quantification in fertilizers are fundamental in QC. The purpose of this study was to evaluate whether zinc (Zn) and copper (Cu) content in mineral fertilizers and industrial by-products determined by the alternative methods USEPA 3051a, 10% HCl, and 10% H2SO4 are statistically equivalent to the standard method, consisting of hot-plate digestion using concentrated HCl. The commercially marketed Zn and Cu sources in Brazil consisted of oxides, carbonate, and sulfate fertilizers and by-products consisting of galvanizing ash, galvanizing sludge, brass ash, and brass or scrap slag. The contents of sources ranged from 15 to 82% and 10 to 45%, respectively, for Zn and Cu. The Zn and Cu contents refer to the variation of the elements found in the different sources evaluated with the concentrated HCl method as shown in Table 1. A protocol based on the following criteria was used for the statistical analysis assessment of the methods: F-test modified by Graybill, t-test for the mean error, and linear correlation coefficient analysis. In terms of equivalents, 10% HCl extraction was equivalent to the standard method for Zn, and the results of the USEPA 3051a and 10% HCl methods indicated that these methods were equivalents for Cu. Therefore, these methods can be considered viable alternatives to the standard method of determination for Cu and Zn in mineral fertilizers and industrial by-products in future research for their complete validation.

Publisher

Oxford University Press (OUP)

Subject

Pharmacology,Agronomy and Crop Science,Environmental Chemistry,Food Science,Analytical Chemistry

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