Environmental Engineering Reference
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Report. European Commission, Joint Research Centre. Luxembourg:
Publications Office of the European Union; (2010), pp. 367.
Wang H, Liu Y, Li Z, Zhang X, Zhang S, Zhang Y. Glycolysis of
poly(ethylene terephthalate) catalyzed by ionic liquids. Eur Polym J
2009;45 (5):1535-1544.
Waste & Resources Action Program (WRAP). (2006). Environmental
Benefits of Recycling: An International Review of Life Cycle Comparisons
for Key Materials in the UK Recycling Sector . SAP097. BioIntelligence
Service and Copenhagen Resource Institute, Banbury.
Welle F. Investigation into the decontamination efficiency of a new PET
recycling concept. Food Addit Contam 2008;25 (1):123-131.
Welle F. Twenty years of PET bottle to bottle recycling—an overview.
Resour Conserv Recycl 2011;55 (11):865-875.
Williams PT, Williams EA. Fluidised bed pyrolysis of low density
polyethylene to produce petrochemical feedstock. J Anal Appl Pyrolysis
1999;51:107-126.
Wong HW, Broadbelt LJ. Tertiary resource recovery from waste polymers
via pyrolysis: neat and binary mixture reactions of polypropylene and
polystyrene. Ind Eng Chem Res 2001;40 (22):4716-4723.
Woo OS, Ayala N, Broadbelt LJ. Mechanistic interpretation of
base-catalyzed de-polymerization of polystyrene. Catal Today 2000;55
(1-2):161-171.
Wright PE, Inglis SF, Stehman SM, Bonhotal J. Reduction of selected
pathogens in anaerobic digestion. Paper presented at the Fifth Annual
NYSERDA Innovations in Agriculture Conference. 2001. pp. 1-11
Xiao R, Jin B, Zhou H. Air gasification of polypropylene plastic waste in
fluidized bed gasifier. Energy Convers Manag 2007;48:778-786.
Yang X, Sun L, Xiang J, Hu S, Su S. Pyrolysis and dehalogenation of
plastics from waste electrical and electronic equipment (WEEE): a review.
Waste Manag 2013;33 (2):462-473.
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