Current advancements in the bio-based production of polyamides

JA Lee, JY Kim, JH Ahn, YJ Ahn, SY Lee - Trends in Chemistry, 2023 - cell.com
Polyamides, also known as nylons, are important industrial polymers with repeating amide
bonds. With the growing concern about climate change, technologies that can establish the …

Recent advances in microbial production of diamines, aminocarboxylic acids, and diacids as potential platform chemicals and bio-based polyamides monomers

J Son, YJ Sohn, KA Baritugo, SY Jo, HM Song… - Biotechnology …, 2023 - Elsevier
Recently, bio-based manufacturing processes of value-added platform chemicals and
polymers in biorefineries using renewable resources have extensively been developed for …

[HTML][HTML] COSMO-RS prediction and experimental verification of 1, 5-pentanediamine extraction from aqueous solution by ionic liquids

C Jiang, H Cheng, Z Qin, R Wang, L Chen… - Green Energy & …, 2021 - Elsevier
Pentanediamine (PDA) produced by biological fermentation becomes popular, but the
separation of PDA from the broth is a typical difficult problem. In this work, the performance …

Highly efficient removal of aromatic diamines from the polyurethane bio-hydrolysate by MIL-53 series MOFs

L Chen, M Rong, J Yu, Q Meng, S Ni, X Wu… - Chemical Engineering …, 2023 - Elsevier
Due to the biotoxicity and ecological hazards of 2, 4-toluene diamine (TDA) and 4, 4′-
methylene dianiline (MDA), it is the key process for upcycling polyurethane (PU) waste to …

Synthesis, characterization, and application of fully biobased and biodegradable nylon-4, 4 and-5, 4

JA Lee, JH Ahn, I Kim, S Li, SY Lee - ACS Sustainable Chemistry …, 2020 - ACS Publications
Nylons are widely used polyamides produced in large amounts from petrochemical-derived
monomers. The production of fully biobased nylons using fermentatively produced diacids …

Construction of super-hydrophobic hypercrosslinked porous polymers for selectively removing aromatic diamines from the polyurethane bio-hydrolysate

L Chen, M Rong, L Yang, J Yu, H Qu, Q Meng… - Chemical Engineering …, 2022 - Elsevier
The upcycling of Polyurethane (PU) degradation products has been gaining tremendous
attention and research interest in recent years. In particular, due to the toxicity to …

Cellular engineering and biocatalysis strategies toward sustainable cadaverine production: state of the art and perspectives

J Mi, S Liu, H Qi, J Huang, X Lan… - … Sustainable Chemistry & …, 2021 - ACS Publications
Cadaverine, a diamine monomer, broadly exists in living organisms participating in
metabolism processes. As a promising substitute of 1, 6-diaminohexane, cadaverine can …

Rapid and selective removal of aromatic diamines from the polyurethane bio-hydrolysate by β-cyclodextrin appended hyper-cross-linked porous polymers

L Chen, M Rong, J Yu, Q Meng, X Wu, L Wang… - Separation and …, 2023 - Elsevier
During the degradation and recycling process of polyurethane (PU) through biotechnology,
it is essential to remove toxic and hazardous aromatic diamines (4, 4′-methylene dianiline …

Trends in valorization of highly-toxic lignocellulosic biomass derived-compounds via engineered microbes

LN Jayakody, B Chinmoy, TL Turner - Bioresource Technology, 2022 - Elsevier
Lignocellulosic biomass-derived fuels, chemicals, and materials are promising sustainable
solutions to replace the current petroleum-based production. The direct microbial conversion …

An environmentally friendly strategy for cadaverine bio-production: in situ utilization of CO2 self-released from L-lysine decarboxylation for pH control

G Wei, A Zhang, X Lu, F He, H Li, S Xu, G Li… - Journal of CO2 …, 2020 - Elsevier
In this study, we propose a novel in situ pH control method for bio-production of cadaverine.
The CO 2 released from l-lysine decarboxylation in whole cell catalysis process was used to …