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adopting green infrastructure strategies in New Borg El-Arab City. M.Sc. Master of Science in
Resource Efficiency in Architecture and Planning Hafen City University, Hamburg, Germany
February, available at: http://edoc.sub.uni-hamburg.de/hcu/volltexte/2018/428/pdf/Hussein_
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81. Itoh S, Eguchi T, Kato N, Takahashi S (2014) Radioactive particles in soil, plant, and dust
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82. Gupta DK, Chatterjee S, Datta S, Voronina AV, Walther C (2016) Radionuclides: accumulation
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and remediation through plants. Springer, Berlin
83. Mimura T, Mimura M, Kobayashi D, Komiyama C, Sekimoto H, Miyamoto M (2014)
Radioactive pollution and accumulation of radionuclides in wild plants in Fukushima. J Plant
Res 127:5–10
84. Hu N, Ding D, Li G (2014) Natural plant selection for radioactive waste remediation. Radionuclide contamination and remediation through plants. Springer, Cham, International Publishing
Switzerland, pp 33–53
85. Pulhani VA, Dafauti S, Hegde AG, Sharma RM, Mishra UC (2005) Uptake and distribution
of natural radioactivity in wheat plants from soil. J Environ Radioact 79(3):331–346
86. Li G, Hu N, Ding DX, Zheng JF, Liu YL, Wang YD, Nie XQ (2011) Screening of plant species
for phytoremediation of uranium, thorium, barium, nickel, strontium and lead contaminated
soils from a uranium mill tailings repository in South China. Bull Environ Cont Toxicol
86:646–652
87. Juszak I, Schaepman-Strub G (2015) The impact of vegetation type on the shortwave radiation balance of the Arctic tundra. In: EGU general assembly conference abstracts, vol 17.
April, Bibliographic Code: 2015EGUGA.17.9051J. Available at: http://adsabs.harvard.edu/
abs/2015EGUGA..17.9051J
88. Donohoea A, Armour KC, Pendergrass AG, Battisti DS (2014) Shortwave and longwave radiative contributions to global warming under increasing CO 2 . Proc Natl Acad Sci
111(47):16700–16705
89. UNFCCC (2012) United Nations framework convention on climate change handbook. https://
unfccc.int/resource/docs/publications/handbook.pdf
90. Wang K, Liang S (2009) Daytime net radiation from shortwave radiation measurements and
meteorological observations. J Appl Meteorol Climat 48:643–648
E. M. Koriesh and I. H. Abo-Soud
72. Wilson M (2007) New gardening: how to garden in a changing climate. Mitchell Beazley and
the Royal Horticultural Society. MITCH Publisher, London
73. Cross R, Spencer R (2009) Sustainable gardens. CSIRO, Collingwood. ISBN 9780643094222
74. Walker J (2011) How to create an eco garden: the practical guide to greener, planet-friendly
gardening?. Aquamarine, Wigston
75. Clifford DP, Eckbo G (2017) Garden and landscape design. Encyclopædia Britannica, inc.
https://www.britannica.com/art/garden-and-landscape-design
76. Haynes J, McLaughlin J, Vasquez L, Hunsberger A (2001) Low-maintenance landscape plants
for South Florida. Environmental Horticulture Department, Florida Cooperative Extension
Service, University of Florida-IFAS Publication ENH854, Florida, USA
77. Hussein M (2018) Sustainable regeneration of urban green areas in Egypt’s desert cities
adopting green infrastructure strategies in New Borg El-Arab City. M.Sc. Master of Science in
Resource Efficiency in Architecture and Planning Hafen City University, Hamburg, Germany
February, available at: http://edoc.sub.uni-hamburg.de/hcu/volltexte/2018/428/pdf/Hussein_
Mahmoud_Master_thesis_2018.pdf
78. Prieur D (2016) Environment, topics. Perennial plants can fight climate change, says Dr. Jerry
Glover, Medill New Service. Available at: http://dc.medill.northwestern.edu/blog/2016/08/
04/perennials-fighting-climate-change/#sthash.lZXd0d2L.DtR9oOsK.dpbs
79. SENES Consultants Limited (2005) NWT environmental audit status of the environment
report air quality, climate and climate change. Available at: https://www.aadncaandc.gc.ca/
DAM/DAM-INTER-NWT/STAGING/textetext/soeaq_1316619536106_eng.pdf
80. Sawidis T (1988) Uptake of radionuclides by plants after the Chernobyl accident. Environ
Pollut 50(4):317–324
81. Itoh S, Eguchi T, Kato N, Takahashi S (2014) Radioactive particles in soil, plant, and dust
samples after the Fukushima nuclear accident. Soil Sci Plant Nutr 60(4):540–550
82. Gupta DK, Chatterjee S, Datta S, Voronina AV, Walther C (2016) Radionuclides: accumulation
and transport in plants. In: Reviews of environmental contamination and toxicology, vol 241.
Springer, Cham, pp 139–160. Gupta DK, Walther C (eds) (2014) Radionuclide contamination
and remediation through plants. Springer, Berlin
83. Mimura T, Mimura M, Kobayashi D, Komiyama C, Sekimoto H, Miyamoto M (2014)
Radioactive pollution and accumulation of radionuclides in wild plants in Fukushima. J Plant
Res 127:5–10
84. Hu N, Ding D, Li G (2014) Natural plant selection for radioactive waste remediation. Radionuclide contamination and remediation through plants. Springer, Cham, International Publishing
Switzerland, pp 33–53
85. Pulhani VA, Dafauti S, Hegde AG, Sharma RM, Mishra UC (2005) Uptake and distribution
of natural radioactivity in wheat plants from soil. J Environ Radioact 79(3):331–346
86. Li G, Hu N, Ding DX, Zheng JF, Liu YL, Wang YD, Nie XQ (2011) Screening of plant species
for phytoremediation of uranium, thorium, barium, nickel, strontium and lead contaminated
soils from a uranium mill tailings repository in South China. Bull Environ Cont Toxicol
86:646–652
87. Juszak I, Schaepman-Strub G (2015) The impact of vegetation type on the shortwave radiation balance of the Arctic tundra. In: EGU general assembly conference abstracts, vol 17.
April, Bibliographic Code: 2015EGUGA.17.9051J. Available at: http://adsabs.harvard.edu/
abs/2015EGUGA..17.9051J
88. Donohoea A, Armour KC, Pendergrass AG, Battisti DS (2014) Shortwave and longwave radiative contributions to global warming under increasing CO 2 . Proc Natl Acad Sci
111(47):16700–16705
89. UNFCCC (2012) United Nations framework convention on climate change handbook. https://
unfccc.int/resource/docs/publications/handbook.pdf
90. Wang K, Liang S (2009) Daytime net radiation from shortwave radiation measurements and
meteorological observations. J Appl Meteorol Climat 48:643–648
