4.8 Article

Optimisation of PET glycolysis by applying recyclable heterogeneous organocatalysts

相关参考文献

注意:仅列出部分参考文献,下载原文获取全部文献信息。
Article Chemistry, Multidisciplinary

Recycling of Plastics in the United States: Plastic Material Flows and Polyethylene Terephthalate (PET) Recycling Processes

Raymond L. Smith et al.

Summary: This article studies the recycling system of PET plastics, discusses the barriers and solutions, and simulates the sorting process at material recovery facilities and reclaimer operations to analyze the resource use and emissions.

ACS SUSTAINABLE CHEMISTRY & ENGINEERING (2022)

Article Polymer Science

A new class of catalysts for the glycolysis of PET: Deep eutectic solvent@ZIF-8 composite

Rui Wang et al.

Summary: The study combined DES and ZIF to synthesize DES@ZIF-8 composite, which showed excellent catalytic performance in PET degradation reaction with PET conversion rate reaching 100% and BHET yield of 83.2%. The catalyst can be easily recovered and recycled, demonstrating good reusability.

POLYMER DEGRADATION AND STABILITY (2021)

Review Chemistry, Physical

Chemical and biological catalysis for plastics recycling and upcycling

Lucas D. Ellis et al.

Summary: Plastic pollution is causing an environmental crisis, driving the development of new recycling and upcycling methods. Both chemical and biological catalysis face challenges and opportunities, requiring innovative design to overcome limitations.

NATURE CATALYSIS (2021)

Review Chemistry, Multidisciplinary

Chemolytic depolymerisation of PET: a review

Elaine Barnard et al.

Summary: Developing new methods for plastic recycling is crucial for reducing CO2 emissions and improving resource efficiency. Chemical recycling, which involves depolymerization to reclaim original components, is gaining attention as a viable route. Lowering the energy barrier for depolymerization through catalysts under mild conditions is a key focus of research in this field.

GREEN CHEMISTRY (2021)

Review Chemistry, Multidisciplinary

Catalytic methods for chemical recycling or upcycling of commercial polymers

Sophia C. Kosloski-Oh et al.

Summary: Polymers have transformed our lives by providing inexpensive and versatile materials, but their longevity has led to environmental issues. Chemical recycling and upcycling are promising methods for dealing with polymer waste, but they are often cost-prohibitive. Catalysts can improve product selectivity in chemical recycling and upcycling processes.

MATERIALS HORIZONS (2021)

Article Environmental Sciences

Taguchi method for optimization of reaction conditions in microwave glycolysis of waste PET

Rahui Park et al.

JOURNAL OF MATERIAL CYCLES AND WASTE MANAGEMENT (2020)

Article Engineering, Chemical

ZnO nanodispersion as pseudohomogeneous catalyst for alcoholysis of polyethylene terephthalate

Jin-Tao Du et al.

CHEMICAL ENGINEERING SCIENCE (2020)

Article Chemistry, Multidisciplinary

Degradation of poly(ethylene terephthalate) catalyzed by metal-free choline-based ionic liquids

Yachan Liu et al.

GREEN CHEMISTRY (2020)

Review Polymer Science

Advances and approaches for chemical recycling of plastic waste

Timmy Thiounn et al.

JOURNAL OF POLYMER SCIENCE (2020)

Article Polymer Science

Dual-catalytic depolymerization of polyethylene terephthalate (PET)

Kayla R. R. Delle Chiaie et al.

POLYMER CHEMISTRY (2020)

Article Engineering, Environmental

One-Pot Depolymerization and Polycondensation of PET Based Random Oligo- and Polyesters

Levente Karpati et al.

JOURNAL OF POLYMERS AND THE ENVIRONMENT (2019)

Article Engineering, Environmental

Chemical Recycling of Polyethlylene Terephthalate by Glycolysis Using Deep Eutectic Solvents

Emine Sert et al.

JOURNAL OF POLYMERS AND THE ENVIRONMENT (2019)

Article Chemistry, Inorganic & Nuclear

Metal-catalysed Poly(Ethylene) terephthalate and polyurethane degradations by glycolysis

Raymundo Esquer et al.

JOURNAL OF ORGANOMETALLIC CHEMISTRY (2019)

Article Chemistry, Multidisciplinary

Ultrasmall Cobalt Nanoparticles as a Catalyst for PET Glycolysis: A Green Protocol for Pure Hydroxyethyl Terephthalate Precipitation without Water

Fernanda Reis Veregue et al.

ACS SUSTAINABLE CHEMISTRY & ENGINEERING (2018)

Article Multidisciplinary Sciences

Production, use, and fate of all plastics ever made

Roland Geyer et al.

SCIENCE ADVANCES (2017)

Article Chemistry, Multidisciplinary

Recyclable organocatalysts based on hybrid silicas

M. Ferre et al.

GREEN CHEMISTRY (2016)

Article Engineering, Chemical

Ionic Liquid-Coordinated Ferrous Acetate Complex Immobilized on Bentonite As a Novel Separable Catalyst for PET Glycolysis

A. M. Al-Sabagh et al.

INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH (2015)

Review Engineering, Chemical

Recent Developments in the Chemical Recycling of Postconsumer Poly(ethylene terephthalate) Waste

Neena George et al.

INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH (2014)

Article Environmental Sciences

Chemical depolymerisation of PET complex waste: hydrolysis vs. glycolysis

Alicia Aguado et al.

JOURNAL OF MATERIAL CYCLES AND WASTE MANAGEMENT (2014)

Article Polymer Science

Unexpected efficiency of cyclic amidine catalysts in depolymerizing poly(ethylene terephthalate)

Kazuki Fukushima et al.

JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY (2013)

Article Chemistry, Applied

TBD-functionalized mesoporous silica: Synthesis and catalytic activity in corn oil transesterification

Phuong-Trinh Nguyen et al.

MICROPOROUS AND MESOPOROUS MATERIALS (2013)

Article Engineering, Environmental

Kinetics of catalytic glycolysis of PET wastes with sodium carbonate

Ruben Lopez-Fonseca et al.

CHEMICAL ENGINEERING JOURNAL (2011)

Article Polymer Science

Organocatalytic Depolymerization of Poly(ethylene terephthalate)

Kazuki Fukushima et al.

JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY (2011)

Review Materials Science, Multidisciplinary

Chemical recycling of poly(ethylene terephthalate)

George P. Karayannidis et al.

MACROMOLECULAR MATERIALS AND ENGINEERING (2007)