106
Abdulrahman D, Gunasekaran A, Subramanian N (2014) Critical barriers in implementing reverse
logistics in the Chinese manufacturing sectors. Int J Prod Econ 147(Part B):460–471. https://
doi.org/10.1016/j.ijpe.2012.08.003
Achillas CH, Vlachokostas CH, Aidonis D, Moussiopoulos N, Iakovou E, Banias G (2010)
Optimising reverse logistics network to support policy-making in the case of electrical and
electronic equipment. Waste Manag 30:2592–2600
Agoramoorthy G, Chakraborty C (2012) Environment: control electronic waste in India. Nature
485(7398):309
Agrawal S, Singh RK, Murtaza Q (2014) Forecasting product returns for recycling in Indian electronics industry. J Adv Manag Res 11(1):102–114. https://doi.org/10.1108/JAMR-02-2013-0013
Alcántara-Concepción V, Gavilán-García A, Gavilán-García IC (2016) Environmental impacts
at the end of life of computers and their management alternatives in México. J Clean Prod
131:615–628. https://doi.org/10.1016/j.jclepro.2016.04.125
Amankwah-Amoah J (2016) Global business and emerging economies: towards a new perspective
on the effects of e-waste. Technol Forecast Soc Chang 105:20–26. https://doi.org/10.1016/j.
techfore.2016.01.026
Andarani P, Goto N (2014) Potential e-waste generated from households in Indonesia using
material flow analysis. J Mater Cycles Waste Manag 16(2):306–320. https://doi.org/10.1007/
s10163-013-0191-0
Anderson M (2010) What an E-waste. IEEE Spectr 47(9):72
Appelbaum A (2002) Europe cracks down on e-waste. IEEE Spectrum (May), pp 46–51. https://
doi.org/10.1109/6.999794
Araujo MVF, Oliveira UR, Marins FAS, Muniz J Jr (2015) Cost assessment and benefits of using
RFID in reverse logistics of waste electrical & electronic equipment (E-WASTE). Proc Comp
Sci 55:688–697. https://doi.org/10.1016/j.procs.2015.07.075
Ardi R, Leisten R (2016) Assessing the role of informal sector in E-WASTE management
systems: a system dynamics approach. Waste Manag 57:3–16. https://doi.org/10.1016/j.
wasman.2015.11.038
Awasthi AK, Cucchiella F, D’Adamo I, Li J, Rosa P, Terzi S, Zeng X (2018) Modelling the correlations of e-waste quantity with economic increase. Sci Total Environ 613:46–53. https://doi.
org/10.1016/j.scitotenv.2017.08.288
Aydin Temel F, Konuk N, Turan NG, Ayeri T, Ardali Y (2018) The SWOT analysis for sustainable
MSWM and minimization practices in Turkey. Global NEST J 20(1):83–87
Bakhiyi B, Gravel S, Ceballos D, Flynn MA, Zayed J (2018) Has the question of e-waste opened a
Pandora’s box? An overview of unpredictable issues and challenges. Environ Int 110:173–192.
https://doi.org/10.1016/j.envint.2017.10.021
Baldé CP, Forti V, Gray V, Kuehr R, Stegmann P (2017) The global E-waste monitor – 2017, United
Nations University (UNU), International Telecommunication Union (ITU) & International
Solid Waste Association (ISWA), Bonn/Geneva/Vienna. Available at: https://www.itu.int/en/
ITU-D/Climate-Change/Pages/Global-E-waste-Monitor-2017.aspx
Bardin L (1977) Análise de conteúdo. Lisboa: Edições 70
Bob U, Padayachee A, Gordon M, Moutlana I (2017) Enhancing innovation and technological
capabilities in the management of E-waste: case study of South African government sector. Sci
Technol Soc 22(2):332–349. https://doi.org/10.1177/0971721817702293
Boeni H, Silva U, Ott D (2008) E-waste recycling in Latin America: overview, challenges and
potential. Focus 11(June 2014):1–10. Retrieved from http://ewasteguide.info/files/2008_
Keynote_Boeni_REWAS.pdf
Borthakur A, Govind M (2017) Public understandings of E-waste and its disposal in urban India:
from a review towards a conceptual framework. J Clean Prod 172:1053–1066. https://doi.
org/10.1016/j.jclepro.2017.10.218
Bouzon M, Govindan K, Rodriguez CMT (2015) Reducing the extraction of minerals: reverse
logistics in the machinery manufacturing industry sector in Brazil using ISM approach. Resour
Policy 46:27–36
P. Guarnieri et al.
Abdulrahman D, Gunasekaran A, Subramanian N (2014) Critical barriers in implementing reverse
logistics in the Chinese manufacturing sectors. Int J Prod Econ 147(Part B):460–471. https://
doi.org/10.1016/j.ijpe.2012.08.003
Achillas CH, Vlachokostas CH, Aidonis D, Moussiopoulos N, Iakovou E, Banias G (2010)
Optimising reverse logistics network to support policy-making in the case of electrical and
electronic equipment. Waste Manag 30:2592–2600
Agoramoorthy G, Chakraborty C (2012) Environment: control electronic waste in India. Nature
485(7398):309
Agrawal S, Singh RK, Murtaza Q (2014) Forecasting product returns for recycling in Indian electronics industry. J Adv Manag Res 11(1):102–114. https://doi.org/10.1108/JAMR-02-2013-0013
Alcántara-Concepción V, Gavilán-García A, Gavilán-García IC (2016) Environmental impacts
at the end of life of computers and their management alternatives in México. J Clean Prod
131:615–628. https://doi.org/10.1016/j.jclepro.2016.04.125
Amankwah-Amoah J (2016) Global business and emerging economies: towards a new perspective
on the effects of e-waste. Technol Forecast Soc Chang 105:20–26. https://doi.org/10.1016/j.
techfore.2016.01.026
Andarani P, Goto N (2014) Potential e-waste generated from households in Indonesia using
material flow analysis. J Mater Cycles Waste Manag 16(2):306–320. https://doi.org/10.1007/
s10163-013-0191-0
Anderson M (2010) What an E-waste. IEEE Spectr 47(9):72
Appelbaum A (2002) Europe cracks down on e-waste. IEEE Spectrum (May), pp 46–51. https://
doi.org/10.1109/6.999794
Araujo MVF, Oliveira UR, Marins FAS, Muniz J Jr (2015) Cost assessment and benefits of using
RFID in reverse logistics of waste electrical & electronic equipment (E-WASTE). Proc Comp
Sci 55:688–697. https://doi.org/10.1016/j.procs.2015.07.075
Ardi R, Leisten R (2016) Assessing the role of informal sector in E-WASTE management
systems: a system dynamics approach. Waste Manag 57:3–16. https://doi.org/10.1016/j.
wasman.2015.11.038
Awasthi AK, Cucchiella F, D’Adamo I, Li J, Rosa P, Terzi S, Zeng X (2018) Modelling the correlations of e-waste quantity with economic increase. Sci Total Environ 613:46–53. https://doi.
org/10.1016/j.scitotenv.2017.08.288
Aydin Temel F, Konuk N, Turan NG, Ayeri T, Ardali Y (2018) The SWOT analysis for sustainable
MSWM and minimization practices in Turkey. Global NEST J 20(1):83–87
Bakhiyi B, Gravel S, Ceballos D, Flynn MA, Zayed J (2018) Has the question of e-waste opened a
Pandora’s box? An overview of unpredictable issues and challenges. Environ Int 110:173–192.
https://doi.org/10.1016/j.envint.2017.10.021
Baldé CP, Forti V, Gray V, Kuehr R, Stegmann P (2017) The global E-waste monitor – 2017, United
Nations University (UNU), International Telecommunication Union (ITU) & International
Solid Waste Association (ISWA), Bonn/Geneva/Vienna. Available at: https://www.itu.int/en/
ITU-D/Climate-Change/Pages/Global-E-waste-Monitor-2017.aspx
Bardin L (1977) Análise de conteúdo. Lisboa: Edições 70
Bob U, Padayachee A, Gordon M, Moutlana I (2017) Enhancing innovation and technological
capabilities in the management of E-waste: case study of South African government sector. Sci
Technol Soc 22(2):332–349. https://doi.org/10.1177/0971721817702293
Boeni H, Silva U, Ott D (2008) E-waste recycling in Latin America: overview, challenges and
potential. Focus 11(June 2014):1–10. Retrieved from http://ewasteguide.info/files/2008_
Keynote_Boeni_REWAS.pdf
Borthakur A, Govind M (2017) Public understandings of E-waste and its disposal in urban India:
from a review towards a conceptual framework. J Clean Prod 172:1053–1066. https://doi.
org/10.1016/j.jclepro.2017.10.218
Bouzon M, Govindan K, Rodriguez CMT (2015) Reducing the extraction of minerals: reverse
logistics in the machinery manufacturing industry sector in Brazil using ISM approach. Resour
Policy 46:27–36
P. Guarnieri et al.
