Impact of the Citrus Industry on the Water Quality of the Filobobos River in Veracruz, Mexico

Author:

Sandoval Herazo Luis Carlos1ORCID,González-Moreno Humberto Raymundo23,Carreto-Hernandez Luis Guillermo4ORCID,Zurita Florentina5ORCID,Nani Graciela1ORCID,Zamora Sergio6ORCID,Sandoval-Herazo Mayerlin1ORCID,Martínez-Reséndiz Georgina17ORCID

Affiliation:

1. Wetlands and Environmental Sustainability Laboratory, Division of Graduate Studies and Research, Tecnológico Nacional de México/ITS de Misantla, Km. 1.8 Carretera a Loma del Cojolite, Misantla 93821, Veracruz, Mexico

2. Division of Graduate Studies and Research, Tecnológico Nacional de Mexico/ITS de Misantla, Km. 1.8 Carretera a la Loma del Cojolite, Misantla 93821, Veracruz, Mexico

3. Departamento de Ingeniería Civil, Tecnológico Nacional de Mexico/ITS de Misantla, Km. 1.8 Carretera a la Loma del Cojolite, Misantla 93821, Veracruz, Mexico

4. Tecnológico Nacional de México, Centro Nacional de Investigación y Desarrollo Tecnológico, Interior Internado Palmira s/n, Colonia Palmira, Cuernavaca 62490, Morelos, Mexico

5. Environmental Quality Research Center, Centro Universitario de la Cienega, University of Guadalajara, Ocotlan 47820, Jalisco, Mexico

6. Facultad de Ingeniería, Construcción y Hábitat, Universidad Veracruzana, Bv. Adolfo Ruíz Cortines 455, Costa Verde, Boca del Rio 94294, Veracruz, Mexico

7. Postdoctoral Position by CONAHCYT (Consejo Nacional de Humanidades Ciencias y Tecnologias) in Tecnológico Nacional de México Campus Misantla, Misantla 93821, Veracruz, Mexico

Abstract

Veracruz, Mexico, boasts abundant water resources. However, the region is facing challenges stemming from population growth and industrial expansion, leading to a notable increase in wastewater discharge into surface water bodies. This discharge has resulted in significant alterations to water quality. In this study, we analyzed the water quality in the Bobos River, Veracruz, with a focus on sustainability. A total of 12 samples were collected from various points along the reservoir. Parameters including temperature, pH, dissolved oxygen (DO), conductivity, total nitrogen (TN), nitrate, chemical oxygen demand (COD), total phosphorus (TP), phosphate, dissolved solids (DSs), and fecal coliforms (FCs) were measured and analyzed. The pH levels ranged from slightly acidic (6.40 ± 0.71) to slightly alkaline (8.65 ± 0.07), with the lowest dissolved oxygen concentration recorded at 0.15 ± 0.07 mg L−1. Conductivity varied between 0.26 and 3.81 mS. Total nitrogen concentrations ranged from 0.21 ± 3.8 to 0.491 ± 1.3 mg L−1. Dissolved solid concentrations were measured at 0.39 ± 0.05 mg L−1, while the final sampling point exhibited elevated values for temperature, nitrate, chemical oxygen demand, total phosphorus, and coliforms (30.35 ± 0.21 °C, 0.35, 389.00 ± 11.31, 13.20 ± 0.85 mg L−1, and 3.2 × 105 ± 3.707107 × 104, respectively). To address these concerning trends and safeguard public health and environmental integrity, the implementation of continuous monitoring and stringent control measures is imperative.

Publisher

MDPI AG

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