@article { author = {Castillo-Miranda, J. and Rodríguez-Gómez, F. and Genescá-Llongueras, J. and Ruiz-Suárez, L. and García-Reynoso, J.}, title = {Estimation and mapping of the contribution of nitric acid to atmospheric corrosion of zinc}, journal = {Global Journal of Environmental Science and Management}, volume = {7}, number = {4}, pages = {523-542}, year = {2021}, publisher = {GJESM Publisher (Professor J. Nouri)}, issn = {2383-3572}, eissn = {2383-3866}, doi = {10.22034/GJESM.2021.04.03}, abstract = {BACKGROUND AND OBJECTIVES: Atmospheric zinc corrosion in the Mexico City Metropolitan area has long been attributed mainly to the effect of pollutants such as sulfur dipxide. There are changes in the urban atmosphere's chemical composition due to the implementation of air quality policies focused on reducing the emission of sulfur dipxide and other pollutants. This study's objectives were to estimate and map the contribution of nitric acid on zinc's atmospheric corrosion processMETHODS: The impact of nitric acid on zinc is feasible to estimate using a function for a multi-pollutant situation. This function contemplates the sum of two contributions: one of nitric acid and another that includes sulfuric acid and climatic parameters. The multi-pollutant function is suitable to apply in areas without the strong influence of chlorides and tropical and subtropical climates, comparable to the Mexico City Metropolitan area.FINDINGS: The results showed that spatial and temporal estimation of corrosion rates in grams per square meter of zinc was made for 2015-2019, using data modeling in a geographic information system. The maps of corrosion rates allowed us to visualize that, in general, the "southwest" zone has the most significant effects and that the lowest corrosion rates were presented in 2019 as an outcome of the implementation of air quality programs. Furthermore, a contribution of nitric acid up to 32% to the zinc corrosion rate was estimated.CONCLUSION: The construction of corrosion rate maps provides a spatial and temporal estimate that allows visualizing areas where zinc materials are at risk corrosion due to the dispersion of atmospheric pollutants and climatic parameters. Likewise, it can represent a decision-making tool for the implementation of atmospheric corrosion studies of materials.}, keywords = {Air pollution,Damage to materials,Geographic Information Systems (GIS),Multi-pollutant function,Urban atmosphere}, url = {https://www.gjesm.net/article_243716.html}, eprint = {https://www.gjesm.net/article_243716_de309822474dd11ccbef05c55baa4a6e.pdf} }