Bibliography
Chemical recycling explained: an overview | Pryme. (n.d.). Pryme.
Chemical Recycling: Making Plastics Circular - cefic.org. (n.d.). cefic.org.
Science of Plastics. (2016, July 18). Science History Institute.
Conversion: turning it into raw materials - cefic.org. (n.d.). cefic.org.
Circular Economy. (n.d.). Towards Zero Waste.
WWF Singapore | Circular Economy. (n.d.). WWF Singapore.
Waste Statistics and Overall Recycling. (2023, May 3). NEA | Waste Statistics and Overall Recycling.
Cesaro, R. (2021, April 2). The Singapore Green Plan 2030 - Zero Waste Consultant. Zero Waste Consultant.
F., L., R., L., Y., & X. (2022, November 3). Research and progress of chemical depolymerization of waste PET and high-value application of its depolymerization products - RSC Advances (RSC Publishing) DOI:10.1039/D2RA06499E. Research and Progress of Chemical Depolymerization of Waste PET and High-value Application of Its Depolymerization Products - RSC Advances (RSC Publishing) DOI:10.1039/D2RA06499E.
K., & C. (2022, January 11). Recent advances in chemical recycling of polyethylene terephthalate waste into value added products for sustainable coating solutions – hope vs . hype . . . - Materials Advances (RSC Publishing) DOI:10.1039/D1MA01112J. Recent Advances in Chemical Recycling of Polyethylene Terephthalate Waste Into Value Added Products for Sustainable Coating Solutions – Hope Vs . Hype . . . - Materials Advances (RSC Publishing) DOI:10.1039/D1MA01112J.
Types of Recyclables and Recycling Processes. (2019, June 4). NEA | Types of Recyclables and Recycling Processes.
W. (2020, January 16). LDPE vs. HDPE: Similarities and Differences - OMICO Plastics, Inc. OMICO Plastics, Inc.
Kortsha, M. (2022, April 27). Plastic-eating Enzyme Could Eliminate Billions of Tons of Landfill Waste - UT News. Plastic-eating Enzyme Could Eliminate Billions of Tons of Landfill Waste - UT News.
newoil. (2021, April). Pioneering Plastic Chemical Recycling in Singapore. In Singapore Chemical Industry Council. Retrieved May 24, 2023, from https://www.scic.sg/images/ESA__Pioneering_Plastic_Chemical_Recycling_in_Singapore_.pdf
Nguyen. (n.d.). Current Methodologies for Depolymerisation. In The Knowles Group. Retrieved May 24, 2023, from https://knowleslab.princeton.edu/wpcontent/uploads/presentations/SN030919_Depolymerization-group-meeting.pdf
Hann, & Connock. (2020, December 8). Chemical Recycling: State of Play. In CHEM Trust. Retrieved May 24, 2023, from https://chemtrust.org/wp-content/uploads/Chemical-Recycling-Eunomia.pdf
Chemical Recycling of Polymeric Materials from Waste in the Circular Economy. (2021, August). In European Chemicals Agency. Retrieved May 24, 2023, from https://echa.europa.eu/documents/10162/1459379/chem_recycling_final_report_en.pdf/887c4182-8327-e197-0bc4-17a5d608de6e
Lu, H., Diaz, D. J., Czarnecki, N. J., Zhu, C., Kim, W., Shroff, R., Acosta, D. J., Alexander, B. R., Cole, H. O., Zhang, Y., Lynd, N. A., Ellington, A. D., & Alper, H. S. (2022, April 27). Machine learning-aided engineering of hydrolases for PET depolymerization - Nature. Nature.