Solar‐Biohybrid Upcycling of Polylactic Acid Plastics to Alanine

M Mengmeng Du H Haolan Tao (State Key Laboratory of Chemical Engineering) X Xuyun Guo B Bin Xie M Mingzhu Han (Department of Chemistry College of Sciences Nanjing Agricultural University Nanjing 210095 China) Y Yingxin Ma (Department of Chemistry College of Sciences Nanjing Agricultural University Nanjing 210095 China) V Valeria Nicolosi (CRANN & AMBER Research Centres and School of Chemistry) W Weiliang Dong M Min Jiang C Cheng Lian (State Key Laboratory of Chemical Engineering, School of Chemistry and Molecular Engineering) J Jie Zhou B Bocheng Qiu (Department of Chemistry College of Sciences Nanjing Agricultural University Nanjing 210095 China)

Abstract

Abstract Upcycling of waste plastics into commodity chemicals such as amino acids represents a promising route toward achieving negative carbon emissions and enabling a circular carbon economy. However, existing thermocatalytic methods typically require harsh conditions. While photocatalytic upcycling operates under mild conditions, its dependence on a high‐temperature hydrolysis step for plastic pretreatment undermines its overall practicality. Here we report a bio‐photocatalytic hybrid system that converts polylactic acid (PLA) plastics into alanine under ambient conditions. The integrated system begins with enzymatic depolymerization of PLA to lactic acid (LA) with 92% conversion at 55°C and pH 10, catalyzed by an engineered peptidase derived from the Micromonospora sp. strain. Without any purification, the resulting hydrolysate is fed directly to the photosynthesis system, where the LA monomers are converted to alanine over a Ni/ZnIn 2 S 4 catalyst using ammonia as a nitrogen source. This photocatalytic process, which proceeds via an oxygen‐centered radical intermediate pathway, achieves an alanine production rate of 61.91 mmol g −1  h −1 and an overall yield of 60%. Life cycle assessment demonstrates that our tandem bio‐photoconversion system substantially reduces the carbon footprint compared to single‐step thermocatalytic and photocatalytic systems. This work thus establishes a sustainable route for valued chemicals production from low‐cost feedstocks.

Article Details

Volume / Issue Vol. 65, Issue 7
Published February 09, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (12)

M

Mengmeng Du

H

Haolan Tao

State Key Laboratory of Chemical Engineering

X

Xuyun Guo

B

Bin Xie

M

Mingzhu Han

Department of Chemistry College of Sciences Nanjing Agricultural University Nanjing 210095 China

Y

Yingxin Ma

Department of Chemistry College of Sciences Nanjing Agricultural University Nanjing 210095 China

V

Valeria Nicolosi

CRANN & AMBER Research Centres and School of Chemistry

W

Weiliang Dong

M

Min Jiang

C

Cheng Lian

State Key Laboratory of Chemical Engineering, School of Chemistry and Molecular Engineering

J

Jie Zhou

B

Bocheng Qiu

Department of Chemistry College of Sciences Nanjing Agricultural University Nanjing 210095 China