37
Kang H-Y, Schoenung JM (2006) Economic analysis of electronic waste recycling: modeling the cost and revenue of a materials recovery facility in California. Environ Sci Technol
40:1672–1680
Keri C (2012) 15 – recycling cooling and freezing appliances. In: Goodship V, Stevels A (eds)
Waste electrical and electronic equipment (WEEE) handbook. Woodhead Publishing, London,
pp 339–351
Kuo TC (2010) The construction of a collaborative-design platform to support waste electrical and
electronic equipment recycling. Robot Comput Integr Manuf 26:100–108
Lambert AJD (2002) Determining optimum disassembly sequences in electronic equipment.
Comput Ind Eng 43:553–575
Lambert AJD (2003) Disassembly sequencing: a survey. Int J Prod Res 41:3721–3759. https://doi.
org/10.1080/0020754031000120078
Lee SG, Lye SW, Khoo MK (2001) A multi-objective methodology for evaluating product end-oflife options and disassembly. Int J Adv Manuf Technol 18:148–156
Lee J, Song HT, Yoo JM (2007) Present status of the recycling of waste electrical and electronic equipment in Korea. Resour Conserv Recycl 50:380–397. https://doi.org/10.1016/j.
resconrec.2007.01.010
Li JR, Khoo LP, Tor SB (2006) Generation of possible multiple components disassembly sequence
for maintenance using a disassembly constraint graph. Int J Prod Econ 102:51–65
Li J, Lopez NBN, Liu L et al (2013) Regional or global WEEE recycling. Where to go? Waste
Manag 33:923–934. https://doi.org/10.1016/j.wasman.2012.11.011
Li J, Barwood M, Rahimifard S (2017) Robotic disassembly for increased recovery of strategically
important materials from electrical vehicles. Robot Comput Integr Manuf 50:203–212
Liu X, Tanaka M, Matsui Y (2009) Economic evaluation of optional recycling processes for waste
electronic home appliances. J Clean Prod 17:53–60
LME (2018) London metal exchange – metals – trading summary. London. https://www.lme.com/
en-GB/Metals. Accessed 21 Mar 2018
Luttropp C, Johansson J (2010) Improved recycling with life cycle information tagged to the product. J Clean Prod 18:346–354. https://doi.org/10.1016/j.jclepro.2009.10.023
Nowakowski P (2015) Logistyka recyklingu zużytego sprzętu elektrycznego i elektronicznego. Od
projektowania po przetwarzanie – Monografia. Wydaw. Politechniki Śląskiej
Nowakowski P (2016) The influence of residents’ behaviour on waste electrical and electronic
equipment collection effectiveness. Waste Manag Res 34:1126–1135
Nowakowski P (2017) Identyfikacja czynników wpływających na efektywność łańcucha logistyki
zwrotnej zużytego sprzętu elektrycznego i elektronicznego. (in polish – identification of the factors having impact of the efficiency of the reverse supply chain of WEEE). In: Knosala R (ed)
Innowacje w zarządzaniu i inżynierii produkcji. T. 2. Oficyna Wydaw. Polskiego Towarzystwa
Zarządzania Produkcją, Opole, pp 65–78
Nowakowski P (2018) A novel, cost efficient identification method for disassembly planning of waste electrical and electronic equipment. J Clean Prod 172:2695–2707. https://doi.
org/10.1016/j.jclepro.2017.11.142
Oguchi M, Murakami S, Sakanakura H et al (2011) A preliminary categorization of end-of-life
electrical and electronic equipment as secondary metal resources. Waste Manag 31:2150–2160.
https://doi.org/10.1016/j.wasman.2011.05.009
Park S, Kim S, Han Y, Park J (2015) Apparatus for electronic component disassembly from printed
circuit board assembly in e-wastes. Int J Miner Process 144:11–15. https://doi.org/10.1016/j.
minpro.2015.09.013
Rosa P, Terzi S (2016) Comparison of current practices for a combined management of printed circuit boards from different waste streams. J Clean Prod 137:300–312. https://doi.org/10.1016/j.
jclepro.2016.07.089
Santochi M, Dini G, Failli F (2002) Disassembly for recycling, maintenance and remanufacturing:
state of the art and perspectives. AMST ’02 Adv Manuf Syst Technol 1:73–89
2 Reconfigurable Recycling Systems of E-waste
Kang H-Y, Schoenung JM (2006) Economic analysis of electronic waste recycling: modeling the cost and revenue of a materials recovery facility in California. Environ Sci Technol
40:1672–1680
Keri C (2012) 15 – recycling cooling and freezing appliances. In: Goodship V, Stevels A (eds)
Waste electrical and electronic equipment (WEEE) handbook. Woodhead Publishing, London,
pp 339–351
Kuo TC (2010) The construction of a collaborative-design platform to support waste electrical and
electronic equipment recycling. Robot Comput Integr Manuf 26:100–108
Lambert AJD (2002) Determining optimum disassembly sequences in electronic equipment.
Comput Ind Eng 43:553–575
Lambert AJD (2003) Disassembly sequencing: a survey. Int J Prod Res 41:3721–3759. https://doi.
org/10.1080/0020754031000120078
Lee SG, Lye SW, Khoo MK (2001) A multi-objective methodology for evaluating product end-oflife options and disassembly. Int J Adv Manuf Technol 18:148–156
Lee J, Song HT, Yoo JM (2007) Present status of the recycling of waste electrical and electronic equipment in Korea. Resour Conserv Recycl 50:380–397. https://doi.org/10.1016/j.
resconrec.2007.01.010
Li JR, Khoo LP, Tor SB (2006) Generation of possible multiple components disassembly sequence
for maintenance using a disassembly constraint graph. Int J Prod Econ 102:51–65
Li J, Lopez NBN, Liu L et al (2013) Regional or global WEEE recycling. Where to go? Waste
Manag 33:923–934. https://doi.org/10.1016/j.wasman.2012.11.011
Li J, Barwood M, Rahimifard S (2017) Robotic disassembly for increased recovery of strategically
important materials from electrical vehicles. Robot Comput Integr Manuf 50:203–212
Liu X, Tanaka M, Matsui Y (2009) Economic evaluation of optional recycling processes for waste
electronic home appliances. J Clean Prod 17:53–60
LME (2018) London metal exchange – metals – trading summary. London. https://www.lme.com/
en-GB/Metals. Accessed 21 Mar 2018
Luttropp C, Johansson J (2010) Improved recycling with life cycle information tagged to the product. J Clean Prod 18:346–354. https://doi.org/10.1016/j.jclepro.2009.10.023
Nowakowski P (2015) Logistyka recyklingu zużytego sprzętu elektrycznego i elektronicznego. Od
projektowania po przetwarzanie – Monografia. Wydaw. Politechniki Śląskiej
Nowakowski P (2016) The influence of residents’ behaviour on waste electrical and electronic
equipment collection effectiveness. Waste Manag Res 34:1126–1135
Nowakowski P (2017) Identyfikacja czynników wpływających na efektywność łańcucha logistyki
zwrotnej zużytego sprzętu elektrycznego i elektronicznego. (in polish – identification of the factors having impact of the efficiency of the reverse supply chain of WEEE). In: Knosala R (ed)
Innowacje w zarządzaniu i inżynierii produkcji. T. 2. Oficyna Wydaw. Polskiego Towarzystwa
Zarządzania Produkcją, Opole, pp 65–78
Nowakowski P (2018) A novel, cost efficient identification method for disassembly planning of waste electrical and electronic equipment. J Clean Prod 172:2695–2707. https://doi.
org/10.1016/j.jclepro.2017.11.142
Oguchi M, Murakami S, Sakanakura H et al (2011) A preliminary categorization of end-of-life
electrical and electronic equipment as secondary metal resources. Waste Manag 31:2150–2160.
https://doi.org/10.1016/j.wasman.2011.05.009
Park S, Kim S, Han Y, Park J (2015) Apparatus for electronic component disassembly from printed
circuit board assembly in e-wastes. Int J Miner Process 144:11–15. https://doi.org/10.1016/j.
minpro.2015.09.013
Rosa P, Terzi S (2016) Comparison of current practices for a combined management of printed circuit boards from different waste streams. J Clean Prod 137:300–312. https://doi.org/10.1016/j.
jclepro.2016.07.089
Santochi M, Dini G, Failli F (2002) Disassembly for recycling, maintenance and remanufacturing:
state of the art and perspectives. AMST ’02 Adv Manuf Syst Technol 1:73–89
2 Reconfigurable Recycling Systems of E-waste
