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REC Turkey (2011) Regulatory impact assessment of EU waste electrical and electronic equipment (E-WASTE) Directive (2002/96/EC)
Rhee SW (2016) Beneficial use practice of e-wastes in Republic of Korea. Procedia Environ Sci
31:707–714. https://doi.org/10.1016/j.proenv.2016.02.055
Rochman FF, Ashton WS, Wiharjo MGM (2017) E-waste, money and power: mapping electronic waste flows in Yogyakarta, Indonesia. Environ Dev 24(May 2016):1–8. https://doi.
org/10.1016/j.envdev.2017.02.002
Rogers DS, Tibben-Lembke RS (1998) Going backwards: reverse logistics trends and practices.
Reverse Logistics Executive Council, Reno
Sasaki S, Araki T (2013) Employer-employee and buyer-seller relationships among waste pickers
at final disposal site in informal recycling: the case of Bantar Gebang in Indonesia. Habitat Int
40:51–57
Scruggs CE, Nimpuno N, Moore RBB (2016) Improving information flow on chemicals in electronic products and E-waste to minimize negative consequences for health and the environment. Resour Conserv Recycl 113:149–164. https://doi.org/10.1016/j.resconrec.2016.06.009
Shirodkar N, Terkar R (2017) Stepped recycling: the solution for E-waste management and sustainable manufacturing in India. Mater Today Proc 4(8):8911–8917. https://doi.org/10.1016/j.
matpr.2017.07.242
Steubing B, Zah R, Waeger P, Ludwig C (2010) Bioenergy in Switzerland: assessing the domestic sustainable biomass potential. Renew Sust Energ Rev 14(8):2256–2265. https://doi.
org/10.1016/j.rser.2010.03.036
Tang W, Cheng J, Zhao W, Wang W (2015) Mercury levels and estimated total daily intakes for
children and adults from an electronic waste recycling area in Taizhou, China: key role of rice
and fish consumption. J Environ Sci 34:107–115. https://doi.org/10.1016/j.jes.2015.01.029
United Nations Centre for Regional Development – UNCRD (2011) The International partnership for expanding waste management services in local authorities (IPLA). Available at: http://
www.uncrd.or.jp/
United Nations Environment Programme – UNEP (2009) Recycling – from e-waste to resources.
UNEP. Available at: http://www.greenbiz.com/sites/default/files/unep-ewaste-reoprt.pdf
Wang F, Kuehr R, Ahlquist D, Li J (2013) E-waste in China: a country report. UNU-ISP (Institute
for Sustainability and Peace, United Nations University). Prepared for StEP (Solving the
E-waste Problem)
Widmer R, Oswald-Krapf H, Sinha-Khetriwal D, Schnellmann M, Böni H (2005) Global perspectives on e-waste. Environ Impact Assess Rev 25(5 Special Issue):436–458. https://doi.
org/10.1016/j.eiar.2005.04.001
Wong CSC, Duzgoren-Aydin NS, Aydin A, Wong MH (2007) Evidence of excessive releases
of metals from primitive e-waste processing in Guiyu, China. Environ Pollut 148(1):62–72.
https://doi.org/10.1016/j.envpol.2006.11.006
Xavier LH, Carvalho TCMB (2014) Introdução à Gestão de Resíduos de Equipamentos
Eletroeletrônicos. In: Carvalho TCMB, Xavier LH (org) Gestão de Resíduos Eletroeletrônicos:
uma abordagem prática para a sustentabilidade. Elsevier, Rio de Janeiro. (in Portuguese)
Yacob P, bin Mohamad Makmor MF, Zin AWBM, Aziz NSB (2012) Barriers to reverse logistics
practices in Malaysian SMEs. Int J Acad Res Econ Manag Sci 1(5):204
Yadav V, Karmakar S, Dikshit AK, Vanjari S (2016) A feasibility study for the locations of waste
transfer stations in urban centers: a case study on the city of Nashik, India. J Clean Prod
126:191–205. https://doi.org/10.1016/j.jclepro.2016.03.017
Yu J, Williams E, Ju M, Shao C (2010) Managing e-waste in China: policies, pilot projects and
alternative approaches. Resour Conserv Recycl 54(11):991–999. https://doi.org/10.1016/j.
resconrec.2010.02.006
Zhang S, Ding Y, Liu B, Chang C (2017) Supply and demand of some critical metals and present
status of their recycling in E-WASTE. Waste Manag 65:113–127. https://doi.org/10.1016/j.
wasman.2017.04.003
P. Guarnieri et al.
REC Turkey (2011) Regulatory impact assessment of EU waste electrical and electronic equipment (E-WASTE) Directive (2002/96/EC)
Rhee SW (2016) Beneficial use practice of e-wastes in Republic of Korea. Procedia Environ Sci
31:707–714. https://doi.org/10.1016/j.proenv.2016.02.055
Rochman FF, Ashton WS, Wiharjo MGM (2017) E-waste, money and power: mapping electronic waste flows in Yogyakarta, Indonesia. Environ Dev 24(May 2016):1–8. https://doi.
org/10.1016/j.envdev.2017.02.002
Rogers DS, Tibben-Lembke RS (1998) Going backwards: reverse logistics trends and practices.
Reverse Logistics Executive Council, Reno
Sasaki S, Araki T (2013) Employer-employee and buyer-seller relationships among waste pickers
at final disposal site in informal recycling: the case of Bantar Gebang in Indonesia. Habitat Int
40:51–57
Scruggs CE, Nimpuno N, Moore RBB (2016) Improving information flow on chemicals in electronic products and E-waste to minimize negative consequences for health and the environment. Resour Conserv Recycl 113:149–164. https://doi.org/10.1016/j.resconrec.2016.06.009
Shirodkar N, Terkar R (2017) Stepped recycling: the solution for E-waste management and sustainable manufacturing in India. Mater Today Proc 4(8):8911–8917. https://doi.org/10.1016/j.
matpr.2017.07.242
Steubing B, Zah R, Waeger P, Ludwig C (2010) Bioenergy in Switzerland: assessing the domestic sustainable biomass potential. Renew Sust Energ Rev 14(8):2256–2265. https://doi.
org/10.1016/j.rser.2010.03.036
Tang W, Cheng J, Zhao W, Wang W (2015) Mercury levels and estimated total daily intakes for
children and adults from an electronic waste recycling area in Taizhou, China: key role of rice
and fish consumption. J Environ Sci 34:107–115. https://doi.org/10.1016/j.jes.2015.01.029
United Nations Centre for Regional Development – UNCRD (2011) The International partnership for expanding waste management services in local authorities (IPLA). Available at: http://
www.uncrd.or.jp/
United Nations Environment Programme – UNEP (2009) Recycling – from e-waste to resources.
UNEP. Available at: http://www.greenbiz.com/sites/default/files/unep-ewaste-reoprt.pdf
Wang F, Kuehr R, Ahlquist D, Li J (2013) E-waste in China: a country report. UNU-ISP (Institute
for Sustainability and Peace, United Nations University). Prepared for StEP (Solving the
E-waste Problem)
Widmer R, Oswald-Krapf H, Sinha-Khetriwal D, Schnellmann M, Böni H (2005) Global perspectives on e-waste. Environ Impact Assess Rev 25(5 Special Issue):436–458. https://doi.
org/10.1016/j.eiar.2005.04.001
Wong CSC, Duzgoren-Aydin NS, Aydin A, Wong MH (2007) Evidence of excessive releases
of metals from primitive e-waste processing in Guiyu, China. Environ Pollut 148(1):62–72.
https://doi.org/10.1016/j.envpol.2006.11.006
Xavier LH, Carvalho TCMB (2014) Introdução à Gestão de Resíduos de Equipamentos
Eletroeletrônicos. In: Carvalho TCMB, Xavier LH (org) Gestão de Resíduos Eletroeletrônicos:
uma abordagem prática para a sustentabilidade. Elsevier, Rio de Janeiro. (in Portuguese)
Yacob P, bin Mohamad Makmor MF, Zin AWBM, Aziz NSB (2012) Barriers to reverse logistics
practices in Malaysian SMEs. Int J Acad Res Econ Manag Sci 1(5):204
Yadav V, Karmakar S, Dikshit AK, Vanjari S (2016) A feasibility study for the locations of waste
transfer stations in urban centers: a case study on the city of Nashik, India. J Clean Prod
126:191–205. https://doi.org/10.1016/j.jclepro.2016.03.017
Yu J, Williams E, Ju M, Shao C (2010) Managing e-waste in China: policies, pilot projects and
alternative approaches. Resour Conserv Recycl 54(11):991–999. https://doi.org/10.1016/j.
resconrec.2010.02.006
Zhang S, Ding Y, Liu B, Chang C (2017) Supply and demand of some critical metals and present
status of their recycling in E-WASTE. Waste Manag 65:113–127. https://doi.org/10.1016/j.
wasman.2017.04.003
P. Guarnieri et al.
