US 2246563A
· Winters
· 1941
[cited by applicant]
US 3901961A
· Goerter et al.
· 1975
[cited by applicant]
US 3940233A
· Fox et al.
· 1976
[cited by applicant]
US 3947256A
· Tsukagoshi
· 1976
[cited by examiner]
US 3952053A
· Brown, Jr. et al.
· 1976
[cited by applicant]
US 3984288A
· Yoshida
· 1976
[cited by examiner]
US 4098649A
· Redker
· 1978
[cited by applicant]
US 4208252A
· Yoshida
· 1980
[cited by examiner]
US 4851601A
· Fukuda et al.
· 1989
[cited by applicant]
US 5135638A
· Miller
· 1992
[cited by applicant]
US 5208005A
· Miller
· 1993
[cited by applicant]
US 5216149A
· Evans et al.
· 1993
[cited by applicant]
US 5253479A
· Di Cintio et al.
· 1993
[cited by applicant]
US 5292862A
· Miura et al.
· 1994
[cited by applicant]
US 5300704A
· Evans et al.
· 1994
[cited by applicant]
US 5321174A
· Evans et al.
· 1994
[cited by applicant]
US 5354930A
· Atkins et al.
· 1994
[cited by applicant]
US 5359061A
· Evans et al.
· 1994
[cited by applicant]
US 5359099A
· Evans et al.
· 1994
[cited by applicant]
US 5364985A
· Hermanson
· 1994
[cited by applicant]
US 5364995A
· Kirkwood et al.
· 1994
[cited by applicant]
US 5481052A
· Hardman et al.
· 1996
[cited by applicant]
US 5523502A
· Rubin
· 1996
[cited by applicant]
US 5542372A
· Sun et al.
· 1996
[cited by applicant]
US 5584969A
· Nagai
· 1996
[cited by examiner]
US 5608136A
· Maezawa
· 1997
[cited by examiner]
US 5639937A
· Hover et al.
· 1997
[cited by applicant]
US 5731483A
· Stabel
· 1998
[cited by examiner]
US 5738025A
· Tachibana
· 1998
[cited by examiner]
US 5744668A
· Zhou et al.
· 1998
[cited by applicant]
US 5821553A
· Evans et al.
· 1998
[cited by applicant]
US 5824193A
· Edwards
· 1998
[cited by examiner]
US 5849964A
· Holighaus et al.
· 1998
[cited by applicant]
US 5904838A
· Kalnes et al.
· 1999
[cited by applicant]
US 6011187A
· Horizoe
· 2000
[cited by examiner]
US 6048380A
· Asanuma
· 2000
[cited by examiner]
US 6111156A
· Oballa et al.
· 2000
[cited by applicant]
US 6143940A
· Miller et al.
· 2000
[cited by applicant]
US 6150577A
· Miller et al.
· 2000
[cited by applicant]
US 6288296B1
· Miller et al.
· 2001
[cited by applicant]
US 6346220B1
· Kosugi
· 2002
[cited by examiner]
US 6620895B1
· Cotts
· 2003
[cited by applicant]
US 6703535B2
· Johnson et al.
· 2004
[cited by applicant]
US 6774272B2
· Miller
· 2004
[cited by applicant]
US 6777581B1
· Zmuda
· 2004
[cited by examiner]
US 6808305B2
· Sharpe
· 2004
[cited by applicant]
US 6822126B2
· Miller
· 2004
[cited by applicant]
US 6881303B2
· Inoue
· 2005
[cited by examiner]
US H2118H
· Winter
· 2005
[cited by examiner]
US RE40124E
· Kaiser et al.
· 2008
[cited by applicant]
US 7452392B2
· Nick et al.
· 2008
[cited by applicant]
US 7604791B2
· Sato
· 2009
[cited by examiner]
US 7714178B2
· Bylicki et al.
· 2010
[cited by applicant]
US 7758729B1
· Dewhitt
· 2010
[cited by applicant]
US 7834226B2
· Miller
· 2010
[cited by applicant]
US 7862651B2
· Stein et al.
· 2011
[cited by applicant]
US 7867959B2
· Miller et al.
· 2011
[cited by applicant]
US 7968006B2
· Johnson et al.
· 2011
[cited by applicant]
US 7968022B1
· Brooks et al.
· 2011
[cited by applicant]
US 8017040B2
· Johnson et al.
· 2011
[cited by applicant]
US 8017041B2
· Johnson et al.
· 2011
[cited by applicant]
US 8021577B2
· Johnson et al.
· 2011
[cited by applicant]
US 8088961B2
· Miller
· 2012
[cited by applicant]
US 8137508B2
· Grispin
· 2012
[cited by applicant]
US 8187428B2
· Shimo
· 2012
[cited by examiner]
US 8192586B2
· Garrison et al.
· 2012
[cited by applicant]
US 8192587B2
· Garrison et al.
· 2012
[cited by applicant]
US 8222471B2
· Elomari et al.
· 2012
[cited by applicant]
US 8323589B2
· Hamby et al.
· 2012
[cited by applicant]
US 8404912B1
· Miller
· 2013
[cited by applicant]
US 8420875B1
· Mackay et al.
· 2013
[cited by applicant]
US 8460410B2
· Tsang et al.
· 2013
[cited by applicant]
US 8480880B2
· Miller
· 2013
[cited by applicant]
US 8500959B2
· Lehto
· 2013
[cited by applicant]
US 8524968B2
· Elomari et al.
· 2013
[cited by applicant]
US 8552245B2
· Simon et al.
· 2013
[cited by applicant]
US 8575081B2
· Miller et al.
· 2013
[cited by applicant]
US 8581015B2
· Jeon
· 2013
[cited by examiner]
US 8668810B1
· Vardanyan et al.
· 2014
[cited by applicant]
US 8674154B2
· Podeszfa
· 2014
[cited by examiner]
US 8680349B2
· Fraczak
· 2014
[cited by examiner]
US 8696994B2
· Miller
· 2014
[cited by applicant]
US 8864946B2
· Scheirs
· 2014
[cited by examiner]
US 8927797B2
· Sarker
· 2015
[cited by applicant]
US 8975459B2
· Vermeiren et al.
· 2015
[cited by applicant]
US 9017522B2
· Gildenhuys et al.
· 2015
[cited by applicant]
US 9074140B2
· Fraczak
· 2015
[cited by examiner]
US 9080107B2
· Fraczak et al.
· 2015
[cited by applicant]
US 9096801B2
· Baker
· 2015
[cited by examiner]
US 9109238B2
· Miller et al.
· 2015
[cited by applicant]
US 9309452B2
· Elomari et al.
· 2016
[cited by applicant]
US 9365775B1
· La Crosse et al.
· 2016
[cited by applicant]
US 9376632B2
· Fraczak
· 2016
[cited by examiner]
US 9399179B2
· Venter et al.
· 2016
[cited by applicant]
US 9404046B2
· Sarker
· 2016
[cited by applicant]
US 9428695B2
· Narayanaswamy et al.
· 2016
[cited by applicant]
US 9447332B2
· Narayanaswamy et al.
· 2016
[cited by applicant]
US 9714391B2
· Combs
· 2017
[cited by applicant]
US 10518242B2
· Van Cauwenberge et al.
· 2019
[cited by applicant]
US 20120070347A1
· Bacon et al.
· 2012
[cited by applicant]
US 20130184505A1
· Maxwell
· 2013
[cited by applicant]
US 20150247096A1
· Barger et al.
· 2015
[cited by applicant]
US 20160090539A1
· Frey et al.
· 2016
[cited by applicant]
US 20160264874A1
· Narayanaswamy et al.
· 2016
[cited by applicant]
US 20160264883A1
· Narayanaswamy et al.
· 2016
[cited by applicant]
US 20160264885A1
· Narayanaswamy et al.
· 2016
[cited by applicant]
US 20180187087A1
· Atkins et al.
· 2018
[cited by applicant]
US 20190241838A1
· Scheibel et al.
· 2019
[cited by applicant]
US 20190284476A1
· Gaber et al.
· 2019
[cited by applicant]
US 20200308492A1
· Streiff et al.
· 2020
[cited by applicant]
US 20200369965A1
· Bitting et al.
· 2020
[cited by applicant]
US 20200369966A1
· Bitting et al.
· 2020
[cited by applicant]
US 20210061972A1
· Nagy et al.
· 2021
[cited by applicant]
US 20210139620A1
· Slivensky et al.
· 2021
[cited by applicant]
US 20220010212A1
· Shi et al.
· 2022
[cited by applicant]
US 20220010217A1
· Barger et al.
· 2022
[cited by applicant]
US 20220010218A1
· Davydov
· 2022
[cited by applicant]
US 20220041905A1
· Boaventura et al.
· 2022
[cited by applicant]
US 20220098045A1
· Stapela
· 2022
[cited by applicant]
US 20220154077A1
· Bitting et al.
· 2022
[cited by applicant]
US 20220204870A1
· Portela et al.
· 2022
[cited by applicant]
US 20230039224A1
· Bozzano et al.
· 2023
[cited by applicant]
US 20230272293A1
· Weiss et al.
· 2023
[cited by applicant]
US 20230312438A1
· Timken
· 2023
[cited by applicant]
US 20230312439A1
· Timken
· 2023
[cited by applicant]
US 20230312862A1
· Liu et al.
· 2023
[cited by applicant]
US 20240010583A1
· Schmidt et al.
· 2024
[cited by applicant]
US 20240010928A1
· Schmidt et al.
· 2024
[cited by applicant]
US 20240010940A1
· Liu et al.
· 2024
[cited by applicant]
US 20240182793A1
· Mathias Aloysius Becker Neto
· 2024
[cited by examiner]
US 20240384173A1
· McNamara
· 2024
[cited by examiner]
CA 2287564A1
· 2001
[cited by applicant]
CA 3226858A1
· 2021
[cited by applicant]
EP 1025186A1
· 2000
[cited by applicant]
EP 2406348A2
· 2012
[cited by applicant]
EP 3784756A1
· 2021
[cited by applicant]
EP 3950889A1
· 2022
[cited by applicant]
EP 4108737A1
· 2022
[cited by applicant]
EP 4141088A1
· 2023
[cited by applicant]
EP 4458908A1
· 2024
[cited by applicant]
JP H0256769A
· 1994
[cited by applicant]
JP H0841465A
· 1996
[cited by examiner]
JP H11302663A
· 1999
[cited by applicant]
WO WO2009087080A2
· 2009
[cited by examiner]
WO 2017167947A1
· 2017
[cited by applicant]
WO 2018011642A1
· 2018
[cited by applicant]
WO 2020152317A1
· 2020
[cited by applicant]
WO 2020216893A1
· 2020
[cited by applicant]
WO 2020242914A1
· 2020
[cited by applicant]
WO 2020247192A1
· 2020
[cited by applicant]
WO 2020252228A1
· 2020
[cited by applicant]
WO 2021133881A1
· 2021
[cited by applicant]
WO 2021201932A1
· 2021
[cited by applicant]
WO 2020242912A1
· 2022
[cited by applicant]
WO 2022093131A1
· 2022
[cited by applicant]
WO 2022193015A1
· 2022
[cited by applicant]
WO 2022213021A1
· 2022
[cited by applicant]
WO 2023038855A1
· 2023
[cited by applicant]
WO 2023187732A1
· 2023
[cited by applicant]
PE2E translation of JP-H0841465-A.
[cited by examiner]
PE2E translation of WO-2009087080-A2.
[cited by examiner]
Enabling a circular economy for chemicals with the mass balance approach, A white paper from co.project mass balance, Ellen Macarthur Foundation, 2019, 35 pages.
[cited by applicant]
Safety Data Sheet for Crude Oil CAS-2068009-57-2; Oct. 7, 2020; 17 pages.
[cited by applicant]
Dinkel et al., Question 60 publication, AFPM, 2017.
[cited by applicant]
O'Reilly, Defend Against Silicon Poisoning, Hydrocarbon Eng. Special Reports, 2017.
[cited by applicant]
Verdier, et al., Hydroprocessing of Renewable Feedstocks—Challenges and Solutions, Haldor Topsoe Whitepaper, Mar. 6, 2019.
[cited by applicant]
Sundaram, K.M., Stancato, B., Lummus Technology, “How Much is Too Much?—Feed Contaminants and Their Consequences,” AICHE 2018 Spring National Meeting Paper No. 32d, 2018.
[cited by applicant]
Kusenberg et al., “Challenges and Opportunities for Plastic Waste Pyrolysis Oils As Steam Cracking Feedstock,” AICHE 2021 Spring National Meeting Paper No. 41a, 2021.
[cited by applicant]
“Shell uses plastic waste to produce chemicals.” Nov. 21, 2019, https://www.shell.com/business-customers/ chemicals/media-releases/2019-media-releases/shell-uses-plastic-waste-to-produce-chemicals.html, accessed Jun. 20…
[cited by applicant]
Chemical Recycling: Tackling Plastic Waste. Shell Chemicals is working to utilise plastic waste as feedstock in our global chemical plants. https://www.shell.com/business-customers/chemicals/chemical-recycling-tackling-…
[cited by applicant]
Rezvani Ghomi, Erfan, et al. “The flame retardancy of polyethylene composites: from fundamental concepts to nanocomposites.” Molecules 25.21 (2020): 5157. https://doi.org/10.3390/molecules25215157.
[cited by applicant]
Pan, Y. Q., et al. “Improved flame retardant of intumescent flame retardant flame-retarded high density polyethylene with fullerene decorated by iron compound.” eXPRESS Polymer Letters 13.9 (2019). <https://doi.org/10.3…
[cited by applicant]
Deng, Cong, et al. “Effect of two types of iron MMTs on the flame retardation of LDPE composite.” Polymer degradation and stability 103 (2014): 1-10. https://doi.org/10.1016/j.polymdegradstab.2014.03.001.
[cited by applicant]
Gary, J.H., et al., 2007, Petroleum Refining Technology and Economics, 5th ed., CRC Press, 465 pp. (Year: 2007).
[cited by applicant]
Gary, JH et al. 2007, Petroleum Refining Technology and Economics, 5th ed. CRC Press, p. 463.
[cited by applicant]
Carvalho, Bárbara O., et al. “Replacing harmful flame retardants with biodegradable starch-based materials in polyethylene formulations.” Polymers 15.20 (2023): 4078.
[cited by applicant]
International Search Report and Written Opinion mailed Aug. 28, 2024 in International Application No. PCT/ US24/21598 (15 pages).
[cited by applicant]
Extended European Search Report mailed Oct. 8, 2024 in European Application No. 24167096.7 (8 pages).
[cited by applicant]
Extended European Search Report mailed Oct. 4, 2024 in European Application No. 24167095.9 (8 pages).
[cited by applicant]
Extended European Search Report mailed Oct. 8, 2024 in European Application No. 24167097.5 (7 pages).
[cited by applicant]
Nexus and Shell sign strategic supply agreement to scale up commercial production of chemical from plastic waste Nov. 19, 2020. https://www.shell.com/business-customers/chemicals/media-releases/2020-media-releases/nexus…
[cited by applicant]
Shell, YouTube, Plastic Waste to mChemicals, 2019.pdf.
[cited by applicant]
Shell, Sustainability Report 2020. 13 pages.
[cited by applicant]
Shell uses plastic waste to produce resin feedsocks, Plastics Today, Jan. 21, 2020, https://www.plasticstoday.com/sustainability/shell-uses-plastic-waste-to-produce-resin-feedstocks, Accessed Mar. 3, 2025.
[cited by applicant]
The path to zero waste—the value of chemical recycling. Eastman. May 2023 https://www.eastman.com/content/dam/eastman/corporate/en/literature/c/circrt12181.pdf, Accessed Mar. 4, 2025.
[cited by applicant]
Coleman B et al. LCA carbon footprint summary report for Eastman carbon renewal technology. Jun. 10, 2020. 12 pages.
[cited by applicant]
Karanam S. The role of advanced recycling in closing the loop for plastics and circular economy. Mar. 9, 2020. 26 pages.
[cited by applicant]
ChemCycling®: Creating a circular plastics economy with chemical recycling. BASF. Sep. 2024, https://www.basf.com/us/en/who-we-are/sustainability/we-drive-sustainable-solutions/circular-economy/mass-balance-approach/che…
[cited by applicant]
Chemical Recycling: Accelerating Circularity. BASF. Apr. 20, 2023, 5 pages.
[cited by applicant]
Sharuddin SDA et al. A review on pyrolysis of plastic wastes. Energy Conversion and Management, vol. 115, May 1, 2016, pp. 308-326.
[cited by applicant]
Thibodeaux A. Plastic waste is new resource for Shell Norco, Jan. 24, 2020. https://www.heraldguide.com/featured/plastic-waste-is-new-resource-for-shell-norco/; Accessed Mar. 4, 2025.
[cited by applicant]
SABIC Mass Balance. Sep. 11, 2019. https://www.youtube.com/watch?v=-imvDD6i6Lo; Accessed Mar. 4, 2025.
[cited by applicant]
Sharma, B. et al. Production, characterization and fuel properties of alternative diesel fuel from pyrolysis of waste plastic grocery bags. Fuel Processing Technology, vol. 122, Jun. 2014, pp. 79-90.
[cited by applicant]
Khan et al. Pyrolytic waste plastic oil and its diesel blend: fuel characterization. Journal of Environmental and Public Health, vol. 2016, Jun. 5, 2016.
[cited by applicant]
International Search Report and Written Opinion mailed Mar. 28, 2025 in International Application No. PCT/US2025/013656 (13 pages).
[cited by applicant]
Plastic Additives by Grace (Year: 2024).
[cited by applicant]
International Search Report and Written Opinion mailed May 20, 2025 in International Application No. PCT/US2025/013657 (15 pages).
[cited by applicant]
Somoza-Tornos A et al.Realizing the Potential High Benefits of Circular Economy in the Chemical Industry: Ethylene Monomer Recovery via Polyethylene Pyrolysis, ACS Sustainable Chemistry & Engineering 2020, 8, 3561-3572.
[cited by applicant]
Miandad R et al. Catalytic Pyrolysis of Plastic Waste: Moving Toward Pyrolysis Based Biorefineries. Fronteier in Energy Research, 2019, 7, 27 (17 pages).
[cited by applicant]
Miller SJ et al. Conversion of Waste Plastic to Lubricating Base Oil, Energy & Fuels 2005, 19, 1580-1586.
[cited by applicant]
Sarker M et al. Mixture of LDPE, PP and PS Waste Plastics into Fuel by Thermolysis Process, International Journal of Engineering and Technology Research, 2013, 1(1), 16 pages.
[cited by applicant]
Garieb Alla MM et al. Simulation And Design For Process To Convert Plastic Waste To Liquid Fuel Using Aspen Hysys Program, Integer. J. Engg. Res. Tech. 2014, 1(6), 270-274.
[cited by applicant]
Fivga A et al. Pyrolysis of plastic waste for production of heavy fuel substitute: A techno-economic assessment, Energy (2018), doi: 10.1016/j.energy.2018.02.094.
[cited by applicant]
Adeniyi AG et al. Computer Aided Modelling Of Low Density Polyethylene Pyrolysis To Produce Synthetic Fuels, Nigerian Journal of Technology, 2018, 37(4), 945-959.
[cited by applicant]
Selvaganapathy T. et al. Simulation of Waste Plastic Pyrolysis Process Using Aspen Hysys V9 Simulator under Steady State Operating Condition, Chapter 11, Emerging Trends in Engineering Research and Technology vol. 2, 20…
[cited by applicant]
Tollini F et al. Influence of the catalytic system on the methanolysis of polyethylene terephthalate at mild conditions: A systematic investigation, Chemical Engineering Science, 2022, 260, 117875.
[cited by applicant]
Jeya G et al. A short review on latest developments in catalytic depolymerization of Poly(ethylene terephathalate) wastes, Journal of the Indian Chemical Society, 2022, 99, 100291.
[cited by applicant]
Xin J et al. Progress in the catalytic glycolysis of polyethylene terephthalate, journal of Environmental Management, 2021, 296, 113267.
[cited by applicant]
Liu Y et al. Catalytic depolymerization of polyethylene terephthalate in hot compressed water, The Journal of Supercritical Fluids, 2012, 62, 226-231.
[cited by applicant]
Khan A et al. Efficient chemical recycling of waste polyethylene terephthalate, Resources, Conservation & Recycling, 2022, 187, 106639.
[cited by applicant]
Pashan RK et al. Chemical Depolymerization of PET Bottles via Combined Chemolysis Methods. Chapter 7, Recycling of Polyethylene Terephthalae Bottles, 2019, pp. 135-147.
[cited by applicant]
Langer E et al. Method of PET Recycling, Plasticizers derived from Post-Consumer PET, chapter 5, pp. 127-171.
[cited by applicant]
Biermann L et al. Development of a continuous PET depolymerization process as a basis for a back-to-monomer recycling method, Green Processing and Synthesis 2021; 10: 361-373.
[cited by applicant]
Tullo AH. Plastic has a problem, is chemistry the solution? Chemical and Engineering News, 2019, 97(39), 8 pages.
[cited by applicant]
Tullo A. Chemical firms back depolymerization. Chemical and Engineering News, 2018, 96(39), 1 page.
[cited by applicant]
Hofmann M et al. Zinc(II) acetate Catalyzed Depolymerization of Poly(ethylene terephthalate), Chemistry Select, 2020, 5, 10010-10014.
[cited by applicant]
Tournier V et al. An engineered PET depolymerase to break down and recycle plastic bottles, Nature, 2020, 580, 216.
[cited by applicant]
Garcia JM et al. The future of plastics recycling, Science, 2017, 358, 870.
[cited by applicant]
Chen JY et al. Depolymerization of poly(ethylene terephthalate) resin under pressure, Journal of Applied Polymer Science, 1991, 42(6), 1501-1507.
[cited by applicant]
Zope VS et al. Kinetics of Neutral Hydrolytic Depolymerization of PET (Polyethylene Terephthalate) Waste at Higher Temperature and Autogenious Pressures, Journal of Applied Polymer Science, 2008, 110, 2179-2183.
[cited by applicant]
Kao et al. Kinetics of Hydrolytic Depolymerization of Melt Poly(ethylene terephthalate), Ind. Eng. Chem. Res. 1998, 37, 1228-1234.
[cited by applicant]
Guo Z. et al. An efficient recycling process of glycolysis of PET in the presence of a sustainable nanocatalyst, Journal of Applied Polymer Science, 2018, 135(21), 46285.
[cited by applicant]
Ma M et al. Insights into the depolymerization of polyethylene terephthalate in methanol, Journal Of Applied POlymer Science, 2022, 139(35), e52814.
[cited by applicant]
Zenda K. et al. Depolymerization of poly(ethylene terephthalate) in dilute aqueous ammonia solution under hydrothermal , conditions. J Chem Technol Biotechnol 83:1381-1386 (2008).
[cited by applicant]
Fukushima K et al. Organocatalytic Depolymerization of Poly(ethylene terephthalate), Journal of Polymer Science Part A: Polymer Chemistry, vol. 49, 1273-1281 (2011).
[cited by applicant]
Goje AS et al. Chemical Kinetics, Simulation, and Thermodynamics of Glycolytic Depolymerization of Poly(ethylene terephthalate) Waste with Catalyst Optimization for Recycling of Value Added Monomeric Products, Macromol.…
[cited by applicant]
Makower J. Inside Eastman's moonshot goal for endlessly circular plastics, 2020, https://trellis.net/article/inside-eastmans-moonshot-goal-endlessly-circular-plastics/, Accessed Mar. 3, 2025.
[cited by applicant]
Tricker AW et al. Stages and Kinetics of Mechanochemical Depolymerization of Poly(ethylene terephthalate) with Sodium Hydroxide, ACS Sustainable Chem. Eng. 2022, 10, 11338-11347.
[cited by applicant]
Pudak C et al. PET Recycling—Contributions of Crystallization to Sustainability, Chem. Ing. Tech. 2020, 92, No. 4, 452-458.
[cited by applicant]
Khoonkari M et al. Chemical Recycling of PET Wastes with Different Catalysts, Hindawi Publishing Corporation International Journal of Polymer Science, vol. 2015, Article ID 124524, 11 pages, http://dx.doi.org/10.1155/20…
[cited by applicant]
Singh A et al. Techno-economic, life-cycle, and socioeconomic impact analysis of enzymatic recycling of poly(ethylene terephthalate), Joule 2021, 5, 2479-2503.
[cited by applicant]
Dzhabarov, G.V., et al., A kinetic study on the depolymerization of polyethylene terephthalate waste with crude glycerol. Chemical Papers, 2021. 75(11): p. 6035-6046.
[cited by applicant]
Zhao YB et al. Solvent-based separation and recycling of waste plastics: A review. Chemosphere, 2018. 209: p. 707-720.
[cited by applicant]