Species-Specific Contribution to Atmospheric Carbon and Pollutant Removal: Case Studies in Two Italian Municipalities
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[1] A. Paschalidou,et al. Exploring the impact of particulate matter on mortality in coastal Mediterranean environments. , 2022, Science of the Total Environment.
[2] P. Luo,et al. Urban Green Space Planning Based on Remote Sensing and Geographic Information Systems , 2022, Remote. Sens..
[3] A. Narros,et al. Assessment of Air Quality and Meteorological Changes Induced by Future Vegetation in Madrid , 2022, Forests.
[4] F. Recanatesi,et al. Significant Loss of Ecosystem Services by Environmental Changes in the Mediterranean Coastal Area , 2022, Forests.
[5] X. Ma,et al. Comparative Research on Typical Measure Methods of the Carbon Sequestration Benefits of Urban Trees Based on the UAV and the 3D Laser: Evidence from Shanghai, China , 2022, Forests.
[6] R. Samson,et al. Species-specific dynamics in magnetic PM accumulation and immobilization for six deciduous and evergreen broadleaves , 2022, Atmospheric Pollution Research.
[7] Daniel M. Griffith,et al. Representing plant diversity in land models: An evolutionary approach to make “Functional Types” more functional , 2021, Global change biology.
[8] E. Paoletti,et al. Exploring new strategies for ozone-risk assessment: A dynamic-threshold case study. , 2021, Environmental pollution.
[9] O. Mutanga,et al. Advancements in the remote sensing of landscape pattern of urban green spaces and vegetation fragmentation , 2021 .
[10] G. A. Blackburn,et al. Remote sensing of urban green spaces: A review , 2021, Urban Forestry & Urban Greening.
[11] P. Dimitrov,et al. Evaluation of Sentinel-2 vegetation indices for prediction of LAI, fAPAR and fCover of winter wheat in Bulgaria , 2020 .
[12] P. Corona,et al. Testing Removal of Carbon Dioxide, Ozone, and Atmospheric Particles by Urban Parks in Italy. , 2020, Environmental science & technology.
[13] S. Livesley,et al. London Plane trees (Platanus x acerifolia) before, during and after a heatwave: Losing leaves means less cooling benefit , 2020 .
[14] L. Brilli,et al. Quantifying road traffic impact on air quality in urban areas: A Covid19-induced lockdown analysis in Italy , 2020, Environmental Pollution.
[15] R. Amorati,et al. Improving Air Quality in the Po Valley, Italy: Some Results by the LIFE-IP-PREPAIR Project , 2020, Atmosphere.
[16] Wei-wei Zheng,et al. Additional focus on particulate matter wash-off events from leaves is required: A review of studies of urban plants used to reduce airborne particulate matter pollution , 2020 .
[17] F. Maggi,et al. Ozone and particle fluxes in a Mediterranean forest predicted by the AIRTREE model. , 2019, The Science of the total environment.
[18] M. González-Tagle,et al. Hydroclimatic variations reveal differences in carbon capture in two sympatric conifers in northern Mexico , 2019, PeerJ.
[19] R. Baraldi,et al. An integrated study on air mitigation potential of urban vegetation: From a multi-trait approach to modeling , 2019, Urban Forestry & Urban Greening.
[20] Fabio Recanatesi,et al. Monitoring Mediterranean Oak Decline in a Peri-Urban Protected Area Using the NDVI and Sentinel-2 Images: The Case Study of Castelporziano State Natural Reserve , 2018, Sustainability.
[21] R. Smithers,et al. Comparing the relative abilities of tree species to cool the urban environment , 2018, Urban Ecosystems.
[22] Andrej Verlič,et al. Urban forest research in the Mediterranean: A systematic review , 2018 .
[23] M. Marchetti,et al. A spatially-explicit method to assess the dry deposition of air pollution by urban forests in the city of Florence, Italy , 2017 .
[24] R. Samson,et al. The Urban Forest , 2017 .
[25] D. Nowak,et al. Where to plant urban trees? A spatially explicit methodology to explore ecosystem service tradeoffs , 2017 .
[26] Jorge Humberto Amorim,et al. Functional traits of urban trees: air pollution mitigation potential , 2016 .
[27] Gherardo Chirici,et al. Regulating Ecosystem Services of forests in ten Italian Metropolitan Cities: Air quality improvement by PM10 and O3 removal , 2016 .
[28] S. Nespor. La lunga marcia per un accordo globale sul clima: dal protocollo di Kyoto all’accordo di Parigi , 2016 .
[29] Cinzia Perrino,et al. Impact of grid resolution on aerosol predictions: A case study over Italy , 2016 .
[30] J. Lelieveld,et al. The contribution of outdoor air pollution sources to premature mortality on a global scale , 2015, Nature.
[31] Thomas Elmqvist,et al. Benefits of restoring ecosystem services in urban areas , 2015 .
[32] G. Bonan,et al. The Influence of Chronic Ozone Exposure on Global Carbon and Water Cycles , 2015 .
[33] Piermaria Corona,et al. European Forest Types and Forest Europe SFM indicators: Tools for monitoring progress on forest biodiversity conservation , 2014 .
[34] G. Righini,et al. Assessment of the AMS-MINNI system capabilities to simulate air quality over Italy for the calendar year 2005 , 2014 .
[35] F. Loreto,et al. Role of Biogenic Volatile Organic Compounds (BVOC) emitted by urban trees on ozone concentration in cities: a review. , 2013, Environmental pollution.
[36] D. Lombardozzi,et al. Integrating O 3 influences on terrestrial processes: photosynthetic and stomatal response data available for regional and global modeling , 2013 .
[37] Jianping Wu,et al. Toward automatic estimation of urban green volume using airborne LiDAR data and high resolution Remote Sensing images , 2013, Frontiers of Earth Science.
[38] Claire L. Smith,et al. Urban particulate pollution reduction by four species of green roof vegetation in a UK city , 2012 .
[39] M. McHugh. Interrater reliability: the kappa statistic , 2012, Biochemia medica.
[40] G. Bonan,et al. Predicting photosynthesis and transpiration responses to ozone: decoupling modeled photosynthesis and stomatal conductance , 2012 .
[41] George P. Petropoulos,et al. Support vector machines and object-based classification for obtaining land-use/cover cartography from Hyperion hyperspectral imagery , 2012, Comput. Geosci..
[42] M. Roth,et al. Diurnal and weekly variation of anthropogenic heat emissions in a tropical city, Singapore , 2012 .
[43] Li Yingying,et al. Key street tree species selection in urban areas , 2011 .
[44] H. Gawrońska,et al. Deposition of Particulate Matter of Different Size Fractions on Leaf Surfaces and in Waxes of Urban Forest Species , 2011, International journal of phytoremediation.
[45] T. Keenan,et al. Soil water stress and coupled photosynthesis-conductance models: Bridging the gap between conflicting reports on the relative roles of stomatal, mesophyll conductance and biochemical limitations to photosynthesis , 2010 .
[46] Cecil C. Konijnendijk,et al. Reviewing eight years of Urban Forestry & Urban Greening: taking stock, looking ahead. , 2010 .
[47] E. Paoletti. Ozone and urban forests in Italy. , 2009, Environmental pollution.
[48] A. Rundle,et al. Children living in areas with more street trees have lower prevalence of asthma , 2008, Journal of Epidemiology & Community Health.
[49] G. Fossati,et al. Modelling of PM10 concentrations over Milano urban area using two aerosol modules , 2008, Environ. Model. Softw..
[50] William C. Skamarock,et al. A time-split nonhydrostatic atmospheric model for weather research and forecasting applications , 2008, J. Comput. Phys..
[51] A. R. Ennos,et al. Adapting cities for climate change: the role of the green infrastructure. , 2007 .
[52] B. Rudolf,et al. World Map of the Köppen-Geiger climate classification updated , 2006 .
[53] G. Hemery,et al. Applications of the crown diameter–stem diameter relationship for different species of broadleaved trees , 2005 .
[54] William D. Smith,et al. Regional Assessment of Ozone Sensitive Tree Species Using Bioindicator Plants , 2003, Environmental monitoring and assessment.
[55] C. Nali,et al. Monitoring and Biomonitoring of Surface Ozone in Florence, Italy , 2001, Environmental monitoring and assessment.
[56] Gail Taylor,et al. THE CAPTURE OF PARTICULATE POLLUTION BY TREES AT FIVE CONTRASTING URBAN SITES , 2000 .
[57] P. Bolund,et al. Ecosystem services in urban areas , 1999 .
[58] H. Hochman,et al. Pareto Optimal Redistribution , 1969 .
[59] H. Metzner. Progress in photosynthesis research , 1969 .