Review on urban vegetation and particle air pollution – Deposition and dispersion

[1]  Ulrich Corsmeier,et al.  Spatial variability of particle number concentrations and NOx in the Karlsruhe (Germany) area obtained with the mobile laboratory ‘AERO-TRAM’ , 2014 .

[2]  Prashant Kumar,et al.  The influence of roadside vegetation barriers on airborne nanoparticles and pedestrians exposure under varying wind conditions , 2014 .

[3]  A. Sæbø,et al.  Accumulation of particulate matter and trace elements on vegetation as affected by pollution level, rainfall and the passage of time. , 2014, The Science of the total environment.

[4]  J. Wolch,et al.  Urban green space, public health, and environmental justice: The challenge of making cities ‘just green enough’ , 2014 .

[5]  Xiaoping Liu,et al.  Dispersion of air pollutants around buildings: A review of past studies and their methodologies , 2014 .

[6]  Ingo Kowarik,et al.  Herbaceous plants as filters: immobilization of particulates along urban street corridors. , 2014, Environmental pollution.

[7]  U. Berardi,et al.  State-of-the-art analysis of the environmental benefits of green roofs , 2014 .

[8]  Wai-Yin Ng,et al.  A modeling investigation of the impact of street and building configurations on personal air pollutant exposure in isolated deep urban canyons. , 2014, The Science of the total environment.

[9]  Gayle S W Hagler,et al.  Field assessment of the effects of roadside vegetation on near-road black carbon and particulate matter. , 2014, The Science of the total environment.

[10]  Stijn Janssen,et al.  Improving local air quality in cities: to tree or not to tree? , 2013, Environmental pollution.

[11]  A. Pennanen,et al.  Does urban vegetation mitigate air pollution in northern conditions? , 2013, Environmental pollution.

[12]  Y. Mao,et al.  Effects of a shelterbelt on road dust dispersion , 2013 .

[13]  Ana Isabel Miranda,et al.  Pedestrian Exposure to Air Pollution in Cities: Modeling the Effect of Roadside Trees , 2013 .

[14]  C Borrego,et al.  CFD modelling of the aerodynamic effect of trees on urban air pollution dispersion. , 2013, The Science of the total environment.

[15]  V Dorer,et al.  Performance assessment of Large Eddy Simulation (LES) for modeling dispersion in an urban street canyon with tree planting , 2013 .

[16]  B. Cerabolini,et al.  Forest Filter Effect: Role of leaves in capturing/releasing air particulate matter and its associated PAHs , 2013 .

[17]  H. Gawrońska,et al.  Particulate Matter on Foliage of 13 Woody Species: Deposition on Surfaces and Phytostabilisation in Waxes – a 3-Year Study , 2013, International journal of phytoremediation.

[18]  Yungang Wang,et al.  Modeling multi-scale aerosol dynamics and micro-environmental air quality near a large highway intersection using the CTAG model. , 2013, The Science of the total environment.

[19]  G Laing,et al.  The influence of vegetation on the horizontal and vertical distribution of pollutants in a street canyon. , 2013, The Science of the total environment.

[20]  C. Chau,et al.  Evaluating the role of vegetation on the ventilation performance in isolated deep street canyons , 2012 .

[21]  D. Nowak,et al.  Development of a distributed air pollutant dry deposition modeling framework. , 2012, Environmental pollution.

[22]  Claire L. Smith,et al.  Urban particulate pollution reduction by four species of green roof vegetation in a UK city , 2012 .

[23]  Jong‐Jin Baik,et al.  Effects of building roof greening on air quality in street canyons , 2012 .

[24]  C. N. Hewitt,et al.  Effectiveness of green infrastructure for improvement of air quality in urban street canyons. , 2012, Environmental science & technology.

[25]  B Nawrot,et al.  Plant species differences in particulate matter accumulation on leaf surfaces. , 2012, The Science of the total environment.

[26]  Gabriel G. Katul,et al.  A branch scale analytical model for predicting the vegetation collection efficiency of ultrafine particles , 2012 .

[27]  A. Khlystov,et al.  Investigation of Ultrafine Particle Deposition to Vegetation Branches in a Wind Tunnel , 2012 .

[28]  F. Escobedo,et al.  The role of a peri-urban forest on air quality improvement in the Mexico City megalopolis. , 2012, Environmental pollution.

[29]  Jonathan T. Steffens,et al.  Exploration of effects of a vegetation barrier on particle size distributions in a near-road environment , 2012 .

[30]  Vlad Isakov,et al.  Field investigation of roadside vegetative and structural barrier impact on near-road ultrafine particle concentrations under a variety of wind conditions. , 2012, The Science of the total environment.

[31]  Bodo Ruck,et al.  Pollutant Concentrations in Street Canyons of Different Aspect Ratio with Avenues of Trees for Various Wind Directions , 2012, Boundary-Layer Meteorology.

[32]  Nadège Blond,et al.  Analysing the influence of different street vegetation on traffic-induced particle dispersion using microscale simulations. , 2012, Journal of environmental management.

[33]  M. Sofiev,et al.  A methodology for evaluation of vertical dispersion and dry deposition of atmospheric aerosols , 2012 .

[34]  Se-Jin Yook,et al.  Experimental investigation of submicron and ultrafine soot particle removal by tree leaves , 2011 .

[35]  K. M. Zhang,et al.  Impact of local traffic exclusion on near-road air quality: findings from the New York City "Summer Streets" campaign. , 2011, Environmental pollution.

[36]  J. E. Wagner,et al.  Urban forests and pollution mitigation: analyzing ecosystem services and disservices. , 2011, Environmental pollution.

[37]  Christof Gromke,et al.  A vegetation modeling concept for Building and Environmental Aerodynamics wind tunnel tests and its application in pollutant dispersion studies. , 2011, Environmental pollution.

[38]  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.

[39]  Riccardo Buccolieri,et al.  Analysis of local scale tree-atmosphere interaction on pollutant concentration in idealized street canyons and application to a real urban junction , 2011 .

[40]  Leiming Zhang,et al.  Development and validation of a size-resolved particle dry deposition scheme for application in aerosol transport models , 2010 .

[41]  Zhi Ning,et al.  Impact of roadside noise barriers on particle size distributions and pollutants concentrations near freeways , 2010 .

[42]  D. Covert,et al.  Size-dependent aerosol deposition velocities during BEARPEX'07 , 2010 .

[43]  Zaid Chalabi,et al.  An integrated tool to assess the role of new planting in PM10 capture and the human health benefits: a case study in London. , 2009, Environmental pollution.

[44]  Riccardo Buccolieri,et al.  Aerodynamic effects of trees on pollutant concentration in street canyons. , 2009, The Science of the total environment.

[45]  F. Escobedo,et al.  Spatial heterogeneity and air pollution removal by an urban forest , 2009 .

[46]  P. Verboven,et al.  CFD modelling and wind tunnel validation of airflow through plant canopies using 3D canopy architecture , 2009 .

[47]  P. Verboven,et al.  Original paper: Modelling airflow within model plant canopies using an integrated approach , 2009 .

[48]  Sara C. Pryor,et al.  An extended dry deposition model for aerosols onto broadleaf canopies , 2009 .

[49]  Riccardo Buccolieri,et al.  Dispersion study in a street canyon with tree planting by means of wind tunnel and numerical investigations – Evaluation of CFD data with experimental data , 2008 .

[50]  Geoffrey C. Bowker,et al.  Impacts of noise barriers on near-road air quality , 2008 .

[51]  E. Pardyjak,et al.  Near source deposition of vehicle generated fugitive dust on vegetation and buildings: Model development and theory , 2008 .

[52]  Bodo Ruck,et al.  Aerodynamic modelling of trees for small-scale wind tunnel studies , 2008 .

[53]  W. Kuttler,et al.  On the reduction of urban particle concentration by vegetation : a review , 2008 .

[54]  F. Lindberg,et al.  SOLWEIG 1.0 – Modelling spatial variations of 3D radiant fluxes and mean radiant temperature in complex urban settings , 2008, International journal of biometeorology.

[55]  Fabien Anselmet,et al.  Aerosol dry deposition on vegetative canopies. Part II: A new modelling approach and applications , 2008 .

[56]  F. Anselmet,et al.  Aerosol dry deposition on vegetative canopies. Part I: Review of present knowledge , 2008 .

[57]  Rex Britter,et al.  Simulations of pollutant dispersion within idealised urban-type geometries with CFD and integral models , 2007 .

[58]  C. N. Hewitt,et al.  Quantifying the effect of urban tree planting on concentrations and depositions of PM10 in two UK conurbations , 2007 .

[59]  W. J. Bealey,et al.  Estimating the reduction of urban PM10 concentrations by trees within an environmental information system for planners. , 2007, Journal of environmental management.

[60]  Sang-Hyun Lee,et al.  A Vegetated Urban Canopy Model for Meteorological and Environmental Modelling , 2007 .

[61]  A. Tuzet,et al.  Measured winds about a thick hedge , 2007 .

[62]  Bodo Ruck,et al.  Influence of trees on the dispersion of pollutants in an urban street canyon - experimental investigation of the flow and concentration field , 2007 .

[63]  A. Tuzet,et al.  Filtering of windborne particles by a natural windbreak , 2007 .

[64]  Herve Morvan,et al.  Modelling the size-dependent collection efficiency of hedgerows for ambient aerosols , 2006 .

[65]  J. C. Stevens,et al.  Air pollution removal by urban trees and shrubs in the United States , 2006 .

[66]  B. Ruck,et al.  Double-Arranged Mound-Mounted Shelterbelts: Influence of Porosity on Wind Reduction between the Shelters , 2005 .

[67]  J. Veranth,et al.  Deposition and Removal of Fugitive Dust in the Arid Southwestern United States: Measurements and Model Results , 2004, Journal of the Air & Waste Management Association.

[68]  G. Taylor,et al.  Capture of Particulate Pollution by Trees: A Comparison of Species Typical of Semi-Arid Areas (Ficus Nitida and Eucalyptus Globulus) with European and North American Species , 2004 .

[69]  Eric R. Pardyjak,et al.  Vehicle-generated fugitive dust transport: analytic models and field study , 2003 .

[70]  N. Woods,et al.  The entrapment of particles by windbreaks , 2001 .

[71]  Gail Taylor,et al.  Particulate pollution capture by urban trees: effect of species and windspeed , 2000 .

[72]  M. Gallagher,et al.  Measurements of aerosol fluxes to Speulder forest using a micrometeorological technique , 1997 .

[73]  S. Orszag,et al.  Development of turbulence models for shear flows by a double expansion technique , 1992 .

[74]  M. Wesely,et al.  Measurements and parameterization of particulate sulfur dry deposition over grass , 1985 .

[75]  M. L. Laucks,et al.  Aerosol Technology Properties, Behavior, and Measurement of Airborne Particles , 2000 .

[76]  Cliff I. Davidson,et al.  The influence of surface structure on predicted particle dry deposition to natural grass canopies , 1982 .

[77]  J. Monteith,et al.  Boundary Layer Climates. , 1979 .

[78]  S. Janhäll,et al.  An integrated method for assessing climate-related risks and adaptation alternatives in urban areas , 2015 .

[79]  A. Coppalle,et al.  Measurement in a wind tunnel of dry deposition velocities of submicron aerosol with associated turbulence onto rough and smooth urban surfaces , 2013 .

[80]  J. Colls,et al.  Collection of ambient particulate matter by porous vegetation barriers : Sampling and characterization methods , 2008 .

[81]  Gail Taylor,et al.  Deposition velocities to Sorbus aria, Acer campestre, Populus deltoides X trichocarpa 'Beaupré', Pinus nigra and X Cupressocyparis leylandii for coarse, fine and ultra-fine particles in the urban environment. , 2005, Environmental pollution.

[82]  William G. Nickling,et al.  Direct field measurement of wind drag on vegetation for application to windbreak design and modelling , 1998 .

[83]  David J. Nowak,et al.  Air pollution removal by Chicago's urban forest , 1994 .

[84]  Cliff I. Davidson,et al.  Dry Deposition of Particles and Vapors , 1990 .

[85]  W. Slinn,et al.  Predictions for particle deposition to vegetative canopies , 1982 .

[86]  J. Gandemer,et al.  The aerodynamic characteristics of windbreaks, resulting in empirical design rules , 1981 .