Effect of chloride salts and microwaves on polyethylene terephthalate (PET) hydrolysis by iron chloride/acetic acid Lewis/Brønsted acidic deep eutectic solvent
Literature Information
Marco Rollo, Massimo A. G. Perini, Alessandro Sanzone, Lorenzo Polastri, Matteo Tiecco, Alejandro Torregrosa-Chinillach, Elisa Martinelli, Gianluca Ciancaleoni
Chemical recycling offers a convenient solution for the disposal of plastic items made of polyethylene terephthalate (PET); however, there is still much room for improvement in terms of integration into the current waste treatment cycles. Recently, deep eutectic solvents (DESs) have exhibited interesting properties in PET glycolysis and hydrolysis, in some cases under mild conditions. In particular, we recently reported good results with Lewis/Brønsted acidic DESs (LBDESs) containing iron(III) chloride and sulfonic acids. However, the choice of weaker acids, such as acetic acid, is more cost effective and sustainable, with an associated reduced risk of corrosion and improved safety. In this study, we demonstrate that a simple post-reaction procedure significantly enhances the yield of terephthalic acid (TA) using FeCl3·6H2O/acetic acid (molar ratio 1 : 1) LBDES from 4% (literature value) to 54% under the same experimental conditions. Furthermore, we investigate the effect of chloride salts as additives and microwave irradiation on the reaction, achieving quantitative conversion and a high yield of TA in 10 minutes at 180 °C.
Related Literature
In situ magnetic resonance imaging of electrically-induced water diffusion in a Nafion ionic polymer film
Richard T. Baker, Leila Naji, Karen Lochhead, John A. Chudek
DOI: 10.1039/B301039B
Comment: 2004’s fastest organic and biomolecular chemistry!
Caroline V. Potter, Sarah Thomas, Janet L. Dean, Adrian P. Kybett, Richard Kidd, Melanie James, Helen Saxton
DOI: 10.1039/B417565B
Zeolitenanoparticles with immobilized metal ions: isolation and MALDI-TOF-MS/MS identification of phosphopeptides
Yahong Zhang, Xijuan Yu, Xiaoyan Wang, Wei Shan, Pengyuan Yang, Yi Tang
DOI: 10.1039/B411336E
Attachment of glycosaminoglycan oligosaccharides to thiol-derivatised gold surfaces
Susannah J. Patey, Jeremy E. Turnbull
DOI: 10.1039/B411726C
Modified micro-space using self-organized nanoparticles for reduction of methylene blue
Xianying Li, Hongzhi Wang, Kouzou Inoue, Masato Uehara, Hiroyuki Nakamura, Masaya Miyazaki, Eiichi Abe, Hideaki Maeda
DOI: 10.1039/B300765K
A new type of bromide anion conducting solid
Nobuhito Imanaka, Yasuhiro Kato
DOI: 10.1039/B300691C
Controlled assembly of luminescent racks based on heteroleptic dinuclear lanthanide complexes
M. Margarita Castaño-Briones, Andrew P. Bassett, Linette L. Meason, Peter R. Ashton, Zoe Pikramenou
DOI: 10.1039/B412999G
Block copolymer libraries: modular versatility of the macromolecular Lego® system
Bas G. G. Lohmeijer, Daan Wouters, Zhihui Yin, Ulrich S. Schubert
DOI: 10.1039/B411777H
Excimer formation by interstrand stacked pyrenes
Simon M. Langenegger, Robert Häner
DOI: 10.1039/B412831A
Highly efficient bromination of aromatic compounds using 3-methylimidazolium tribromide as reagent/solvent
Cinzia Chiappe, Elsa Leandri, Daniela Pieraccini
DOI: 10.1039/B410796A
You might also like
What industries use (1R,3S)-1,3-Cyclopentanediol (CAS: 16326-97-9)?
(1R,3S)-1,3-Cyclopentanediol finds applications in various industries. In the ph...
What precautions should be taken when handling N'-[4-(Dimethylamino)phenyl]-N,N-dimethyl-1,4-benzenediamine (CAS: 637-31-0)?
When handling N'-[4-(Dimethylamino)phenyl]-N,N-dimethyl-1,4-benzenediamine, it i...
Are there alternatives to 5-(2,4-Difluorophenyl)-2-methoxypyrimidine (CAS: 1352318-16-1) in synthesis?
There are several alternatives to 5-(2,4-Difluorophenyl)-2-methoxypyrimidine in ...
What regulatory guidelines apply to 1-(3-Methoxyphenoxy)propan-2-ol (CAS: 382141-68-6)?
1-(3-Methoxyphenoxy)propan-2-ol (CAS: 382141-68-6) must comply with the Globally...
Is Tetrodotoxin Citrate (CAS: 18660-81-6) safe?
Tetrodotoxin Citrate is extremely dangerous and should be handled with extreme c...
What are the main uses of 2-Methyl-2-propanyl [(1R,3S)-3-hydroxycyclopentyl]carbamate (CAS: 225641-84-9)?
2-Methyl-2-propanyl [(1R,3S)-3-hydroxycyclopentyl]carbamate (CAS: 225641-84-9) i...
How should waste containing 4-(2-Hydroxyhexafluoroisopropyl)Benzoic Acid (CAS: 16261-80-6) be handled?
Waste containing 4-(2-Hydroxyhexafluoroisopropyl)Benzoic Acid (CAS: 16261-80-6) ...
How is 2-Methyl-2-proanyl {(2S)-1-[(benzyloxy)amino]-3-hydroxy-3-methyl-1-oxo-2-butanyl}carbamate (CAS: 102507-19-7) typically synthesized?
2-Methyl-2-proanyl {(2S)-1-[(benzyloxy)amino]-3-hydroxy-3-methyl-1-oxo-2-butanyl...
What is Benzeneethanamine, α-ethyl-, hydrochloride (1:1) (CAS: 20735-15-3)?
Benzeneethanamine, α-ethyl-, hydrochloride (1:1) is an organic compound with the...
Are there alternatives to 3-{(E)-[4-(Dimethylamino)phenyl]diazenyl}benzoic acid (CAS: 20691-84-3) in synthesis?
In the synthesis of compounds similar to 3-{(E)-[4-(Dimethylamino)phenyl]diazeny...















