Biofortification of Kidney Bean (Phaseolus vulgaris L.) Crops Applying Zinc Sulfate and Ferric Sulfate: Pilot Crop in Colombia

Author:

Guerrero-Martin Camilo Andrés123,Ortega-Ramírez Angie Tatiana4ORCID,Silva-Marrufo Óscar56ORCID,Casallas-Martín Braian David4,Cortés-Salazar Natalia4,Salinas-Silva Raúl7,Camacho-Galindo Stefanny7,Da Silva Fernandes Fernando Antonio28ORCID,Guerrero-Martin Laura Estefanía17,Paulo de Freitas Pedro123,D. V. Duarte Emanuele123

Affiliation:

1. LOTEP—Laboratório de Operações e Tecnologias Energéticas Aplicadas na Indústria do Petróleo, Faculty of Petroleum Engineering, Federal University of Pará, Salinópolis 68721-000, PA, Brazil

2. Department of Engineering, Campus Salinópolis, Federal University of Pará, Salinópolis 68721-000, PA, Brazil

3. LEEPER—Laboratório de Ensino de Engenharia de Poco e Reservatório, Faculty of Petroleum Engineering, Federal University of Pará, Salinópolis 66075-110, PA, Brazil

4. Management, Environment and Sustainability Research Group, Chemical and Environmental Engineering Department, Universidad de América, Bogotá 110311, Colombia

5. Departament of Engineering, Tecnológico Nacional de Mexico, Instituto Tecnológico del Valle del Guadiana, Carretera 34371, Durango, Mexico

6. Faculty of Agronomy, Tecnologica University of Rodeo, Rodeo 35760, Durango, Mexico

7. Fundación de Educación Superior San José, Bogotá 110311, Colombia

8. Department of Biosystems Engineering, University of São Paulo, Pirassununga 13635-900, SP, Brazil

Abstract

Agriculture is one of the economic activities with the most potential in Colombia, given its climatic and geographical conditions. Bean cultivation is classified as climbing, which grows in a branched way, and bushy, whose growth occurs up to 70 cm. The objective of this research was to study zinc and iron sulfates in different concentrations as fertilizers capable of increasing the nutritional value of kidney beans (Phaseolus vulgaris L.), whose strategy is known as biofortification, and thus determine the most effective sulfate. The methodology details the sulfate formulations, their preparation, the application of additives, sampling and quantification methods of total iron, total zinc, °Brix, carotenoids, chlorophylls a, b, and antioxidant capacity using the DPPH (2,2-diphenyl-1-picrylhydrazyl) method in leaves and pods. As for the results, it was found that biofortification with iron sulfate and zinc sulfate is a strategy that favors the country’s economy and human health, because it allows the increase of minerals, antioxidant capacity and total soluble solids.

Publisher

MDPI AG

Subject

Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science

Reference41 articles.

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3. Anbumozhi, V., and Kalirajan, K. (2017). Globalization of Low-Carbon Technologies, Springer.

4. Challenges in greenhouse gas mitigation in developing countries: A case study of the Colombian transport sector;Valderrama;Energy Policy,2019

5. Perfetti, J.J., Hernández, A., Leibovich, J., and Balcázar, Á. (2022, December 13). Políticas para el Desarrollo de la Agricultura en Colombia. Available online: https://www.repository.fedesarrollo.org.co/handle/11445/61.

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