Facing Climate Change: Urban Gardening and Sustainable …
415
91. Heo HK, Park CY, Yang B, Lee DK (2018) Heat stress mitigation of urban trees—fine scale
assessment based on terrestrial LiDAR data. Geophysical Research Abstracts 20, EGU201811878. Available at: https://meetingorganizer.copernicus.org/EGU2018/EGU2018-11878.
pdf
92. Kuusk A (1992) Absorption profiles of shortwave radiation in a vegetation canopy. Agric For
Meteorol 62(3–4):191–204
93. Galluzzo G (2012) Particulate matter and climate change. University of Iowa. Available at:
https://now.uiowa.edu/2012/03/particulate-matter-and-climate-change
94. Shi J, Zhang G, An H, Yin W (2017) Quantifying the particulate matter accumulation on leaf
surfaces of urban plants in Beijing, China. Atmos Pollut Res 2017:1042–1309
95. Chen X, Pei T, Zhou Z, Teng M, He L, Luo M, Liu X (2015) Efficiency differences of
roadside greenbelts with three configurations in removing coarse particles (PM10): a street
scale investigation in Wuhan, China. Urban Forestry and Urban Greening 14(2):354–360
96. Chen X, Zhou Z, Teng M, Wang P, Zhou L (2015) Accumulation of three different sizes of
particulate matter on plant leaf surfaces: effect on leaf traits. Arch Biol Sci 67(4):1257–1267
97. Walling DE, Moorehead PW (1989) The particle size characteristics of fluvial suspended
sediment: an overview. Sediment/water interactions. Springer, Dordrecht, pp 125–149
98. Ankers C, Walling D, Smith R (2003) The influence of catchment characteristics on suspended
sediment properties. Hydrobiologia 494(1–3):159–1616
99. Krein A, Petticrew E, Udelhoven T (2003) The use of fine sediment fractal dimensions and
colour to determine sediment sources in a small watershed. CATENA 53(2):165–179
100. Ingold CT (1971) Fungal spores. Clarendon Press, Oxford, p 302
101. Tewari DN (1994) Urban forestry. Indian For 120(8):647–657
102. Bond TC, Doherty SJ, Fahey DW, Forster PM, Berntsen T, DeAngelo BJ, Flanner MG, Ghan
S, Kärcher B, Koch D, Kinne S, Kondo Y, Quinn PK, Sarofi MC, Schultz MG, Schulz M,
Venkataraman C, Zhang H, Zhang S, Bellouin N, Guttikunda SK, Hopke PK, Jacobson MZ,
Kaiser JW, Klimont Z, Lohmann U, Schwarz JP, Shindell D, Storelvmo T, Warren SG, Zender
CS (2013) Bounding the role of black carbon in the climate system: A scientific assessment.
J Geophys Res Atmos 118:5380–5552
103. Silva RA, West JJ, Zhang Y, Anenberg SC, Lamarque JF, Shindell DT, Collins WJ, Dalsoren
S, Faluvegi G, Folberth G, Horowitz LW, Nagashima T, Naik V, Rumbold S, Skeie R, Sudo
K, Takemura T, Bergmann D, Cameron-Smith P, Cionni I, Doherty RM, Eyring V, Josse B,
MacKenzie IA, Plummer D, Righi M, Stevenson DS, Strode S, Szopa S, Zeng G (2013) Global
premature mortality due to anthropogenic outdoor air pollution and the contribution of past
climate change. Environ Res Lett 8(3):1–11
104. EEA (European Environmental Agency) (2007) Air pollution in Europe 1990–2004. Report
No 2. European Environmental Agency Report No. 2/2007. Available from: http://www.eea.
europa.eu
105. Volk HE, Lurman F, Penfold B, Herz-Picciotto I, McConnell R (2013) Traffic-related air
pollution, particulate matter and autism. JAMA Psychiatry 70:71–76
106. Gawro´ nska H, Bakera B (2015) Phytoremediation of particulate matter from indoor air by
Chlorophytum comosum L. plants. Air Qual Atmos Health 8(3):265–272.
107. Beckett KP, Freer-Smith P, Taylor G (1998) Urban woodlands: their role in reducing the
effects of particulate pollution. Environ Pollut 99:347–360
108. Fuzzi S, Baltensperger U, Carslaw K, Decesari S, Denier Van Der Gon H, Facchini MC,
Fowler D, Koren I, Langford B, Lohmann U, Nemitz E, Pandis S, Riipinen I, Rudich Y,
Schaap M, Slowik JG, Spracklen DV, Vignati E, Wild M, Williams M, Gilardoni S (2015)
Particulate matter, air quality and climate: lessons learned and future needs. Atmos Chem
Phys 15(14):8217–8299
109. Ban-Weiss GA, Collins W (2015) Aerosols: role in radiative transfer. Encyclopedia of
atmospheric sciences, 2nd edn, pp 66–75. https://doi.org/10.1016/b978-0-12-382225-3.
00053-0
110. Lagzi I, Mészáros R, Gelybó G, Leel˝ ossy Á (2014) Atmospheric chemistry. Eötvös Loránd
University
415
91. Heo HK, Park CY, Yang B, Lee DK (2018) Heat stress mitigation of urban trees—fine scale
assessment based on terrestrial LiDAR data. Geophysical Research Abstracts 20, EGU201811878. Available at: https://meetingorganizer.copernicus.org/EGU2018/EGU2018-11878.
92. Kuusk A (1992) Absorption profiles of shortwave radiation in a vegetation canopy. Agric For
Meteorol 62(3–4):191–204
93. Galluzzo G (2012) Particulate matter and climate change. University of Iowa. Available at:
https://now.uiowa.edu/2012/03/particulate-matter-and-climate-change
94. Shi J, Zhang G, An H, Yin W (2017) Quantifying the particulate matter accumulation on leaf
surfaces of urban plants in Beijing, China. Atmos Pollut Res 2017:1042–1309
95. Chen X, Pei T, Zhou Z, Teng M, He L, Luo M, Liu X (2015) Efficiency differences of
roadside greenbelts with three configurations in removing coarse particles (PM10): a street
scale investigation in Wuhan, China. Urban Forestry and Urban Greening 14(2):354–360
96. Chen X, Zhou Z, Teng M, Wang P, Zhou L (2015) Accumulation of three different sizes of
particulate matter on plant leaf surfaces: effect on leaf traits. Arch Biol Sci 67(4):1257–1267
97. Walling DE, Moorehead PW (1989) The particle size characteristics of fluvial suspended
sediment: an overview. Sediment/water interactions. Springer, Dordrecht, pp 125–149
98. Ankers C, Walling D, Smith R (2003) The influence of catchment characteristics on suspended
sediment properties. Hydrobiologia 494(1–3):159–1616
99. Krein A, Petticrew E, Udelhoven T (2003) The use of fine sediment fractal dimensions and
colour to determine sediment sources in a small watershed. CATENA 53(2):165–179
100. Ingold CT (1971) Fungal spores. Clarendon Press, Oxford, p 302
101. Tewari DN (1994) Urban forestry. Indian For 120(8):647–657
102. Bond TC, Doherty SJ, Fahey DW, Forster PM, Berntsen T, DeAngelo BJ, Flanner MG, Ghan
S, Kärcher B, Koch D, Kinne S, Kondo Y, Quinn PK, Sarofi MC, Schultz MG, Schulz M,
Venkataraman C, Zhang H, Zhang S, Bellouin N, Guttikunda SK, Hopke PK, Jacobson MZ,
Kaiser JW, Klimont Z, Lohmann U, Schwarz JP, Shindell D, Storelvmo T, Warren SG, Zender
CS (2013) Bounding the role of black carbon in the climate system: A scientific assessment.
J Geophys Res Atmos 118:5380–5552
103. Silva RA, West JJ, Zhang Y, Anenberg SC, Lamarque JF, Shindell DT, Collins WJ, Dalsoren
S, Faluvegi G, Folberth G, Horowitz LW, Nagashima T, Naik V, Rumbold S, Skeie R, Sudo
K, Takemura T, Bergmann D, Cameron-Smith P, Cionni I, Doherty RM, Eyring V, Josse B,
MacKenzie IA, Plummer D, Righi M, Stevenson DS, Strode S, Szopa S, Zeng G (2013) Global
premature mortality due to anthropogenic outdoor air pollution and the contribution of past
climate change. Environ Res Lett 8(3):1–11
104. EEA (European Environmental Agency) (2007) Air pollution in Europe 1990–2004. Report
No 2. European Environmental Agency Report No. 2/2007. Available from: http://www.eea.
europa.eu
105. Volk HE, Lurman F, Penfold B, Herz-Picciotto I, McConnell R (2013) Traffic-related air
pollution, particulate matter and autism. JAMA Psychiatry 70:71–76
106. Gawro´ nska H, Bakera B (2015) Phytoremediation of particulate matter from indoor air by
Chlorophytum comosum L. plants. Air Qual Atmos Health 8(3):265–272.
107. Beckett KP, Freer-Smith P, Taylor G (1998) Urban woodlands: their role in reducing the
effects of particulate pollution. Environ Pollut 99:347–360
108. Fuzzi S, Baltensperger U, Carslaw K, Decesari S, Denier Van Der Gon H, Facchini MC,
Fowler D, Koren I, Langford B, Lohmann U, Nemitz E, Pandis S, Riipinen I, Rudich Y,
Schaap M, Slowik JG, Spracklen DV, Vignati E, Wild M, Williams M, Gilardoni S (2015)
Particulate matter, air quality and climate: lessons learned and future needs. Atmos Chem
Phys 15(14):8217–8299
109. Ban-Weiss GA, Collins W (2015) Aerosols: role in radiative transfer. Encyclopedia of
atmospheric sciences, 2nd edn, pp 66–75. https://doi.org/10.1016/b978-0-12-382225-3.
00053-0
110. Lagzi I, Mészáros R, Gelybó G, Leel˝ ossy Á (2014) Atmospheric chemistry. Eötvös Loránd
University
