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RESEARCH PRODUCT
IoT monitoring of urban tree ecosystem services: Possibilities and challenges
Ivan SereginRiccardo ValentiniRiccardo ValentiniGiovanna SalaGiovanna SalaVictor MatasovAlexey YaroslavtsevOlga FareevaViacheslav VasenevLuca Belelli MarchesiniSimona CastaldiSimona Castaldisubject
Settore AGR/05 - ASSESTAMENTO FORESTALE E SELVICOLTURA010504 meteorology & atmospheric sciencesAtmospheric carbon cycle010501 environmental sciencesReal-time monitoring01 natural sciencesEcosystem servicesOperational systemUrban planningEcosystem services indicatorTreeTalkerUrban heat islandSettore AGR/06 - Tecnologia Del Legno E Utilizzazioni Forestali0105 earth and related environmental sciencesbusiness.industryEnvironmental resource managementForestrylcsh:QK900-989Ecological engineeringSmart citieEcological engineeringSettore AGR/03 - Arboricoltura Generale E Coltivazioni ArboreeSustainabilitySustainabilitylcsh:Plant ecologyEnvironmental scienceurban forestUrban forestsGreen infrastructurebusinessEcosystem services indicatorsSmart citiesdescription
Urban green infrastructure plays an increasingly significant role in sustainable urban development planning as it provides important regulating and cultural ecosystem services. Monitoring of such dynamic and complex systems requires technological solutions which provide easy data collection, processing, and utilization at affordable costs. To meet these challenges a pilot study was conducted using a network of wireless, low cost, and multiparameter monitoring devices, which operate using Internet of Things (IoT) technology, to provide real-time monitoring of regulatory ecosystem services in the form of meaningful indicators for both human health and environmental policies. The pilot study was set in a green area situated in the center of Moscow, which is exposed to the heat island effect as well as high levels of anthropogenic pressure. Sixteen IoT devices were installed on individual trees to monitor their ecophysiological parameters from 1 July to 31 November 2019 with a time resolution of 1.5 h. These parameters were used as input variables to quantify indicators of ecosystem services related to climate, air quality, and water regulation. Our results showed that the average tree in the study area during the investigated period reduced extreme heat by 2 °
year | journal | country | edition | language |
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2020-07-19 | Forests |