Evaluating pollution-related damage and restoration success in urban forests with participatory monitoring and digital tools

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Abstract

Peri-urban forest monitoring requires indicators of vegetation damage. An example is the sacred fir (Abies religiosa) forests surrounding Mexico City, which have been heavily exposed to tropospheric ozone, a harmful pollutant, for over 4 decades. We developed a participatory monitoring system with which local community members and scientists generated data on ozone tree damage. Santa Rosa Xochiac rangers (13) used the digital tool KoboToolBox to record ozone damage to trees, tree height, tree ages, tree condition, tree position, and whether the tree had been planted. Thirty-five percent of the trees (n = 1765) had ozone damage. Younger trees had a lower percentage of foliage damaged by ozone than older trees (p < 0.0001), and asymptomatic trees tended to be younger (p < 0.0001). Symptomatic trees were taller than asymptomatic trees of the same age (R2c = 0.43, R2m = 0.27). Involving local communities facilitated forest monitoring and using digital technology improved data quality. This participatory system can be used to monitor forest condition change over time and thus aids restoration efforts driven by government or local communities’ interests, facilitating local decision-making.

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Reyes-Galindo, V., Jaramillo-Correa, J. P., Carrasco Nava, K., De-la-Rosa-González, A. E., Flores Flores, D., Martínez, M., … Mastretta-Yanes, A. (2023). Evaluating pollution-related damage and restoration success in urban forests with participatory monitoring and digital tools. Conservation Biology, 37(5). https://doi.org/10.1111/cobi.14112

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