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Beyond biodegradation: upcycling of polylactic acid plastic waste into amino acids via cascade catalysis under mild conditions.

Authors :
Yingxin Ma
Xuyun Guo
Mengmeng Du
Sailei Kang
Weiliang Dong
Nicolosi, Valeria
Zhongli Cui
Yu Zhang
Bocheng Qiu
Source :
Green Chemistry. 4/7/2024, Vol. 26 Issue 7, p3995-4004. 10p.
Publication Year :
2024

Abstract

Biodegradable plastics, represented by polylactic acid (PLA), are considered suitable alternatives to nondegradable commodity plastics; however, their degradation through microbial decomposition is seen as a waste of carbon resources and inevitably brings about CO2 emission. Alternatively, waste PLA plastics can be utilized as feedstocks for the sustainable production of value-added chemicals, which not only avoids a carbon footprint but also realizes upcycling of plastic waste. Here, we show a cascade system that combines alkali-induced depolymerization, pulsed electrooxidation, and electrochemical reductive amination to produce alanine with an overall yield of 69% under near ambient conditions. Specifically, we first implement an alkali catalyst in an aqueous solution to depolymerize PLA into lactate. The obtained PLA hydrolysate is directly utilized as both feedstock and electrolyte for pyruvate production over a nickel hydroxide-supported Pd electrocatalyst (Pd/Ni(OH)2) via a pulsed potential, which is followed by the transformation of pyruvate into alanine using a TiO2 catalyst. This cascade process for alanine production benefits from high efficiencies maintained in three consecutive processes, mild operation conditions, and the use of cost-effective feedstocks (plastic wastes), without suffering harsh conditions and expensive feedstock consumption required by conventional biological and chemical approaches for alanine synthesis, respectively. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14639262
Volume :
26
Issue :
7
Database :
Academic Search Index
Journal :
Green Chemistry
Publication Type :
Academic Journal
Accession number :
176524793
Full Text :
https://doi.org/10.1039/d3gc04460b