Oxidative Upcycling of Polyethylene to Long Chain Diacid over Co‐MCM‐41 Catalyst

Author:

Zhang Qiang1,He Jiajia2,Wei Xiangyue1,Shen Chengfeng1,Ye Pengbo1,An Wenli1,Liu Xuehui3,Li Haoze2,Xu Shimei1ORCID,Su Zhishan2ORCID,Wang Yu‐Zhong1ORCID

Affiliation:

1. The Collaborative Innovation Center for Eco-Friendly and Fire-Safety Polymeric Materials (MoE) State Key Laboratory of Polymer Materials Engineering National Engineering Laboratory of Eco-Friendly Polymeric Materials (Sichuan) College of Chemistry Sichuan University Chengdu 610064 China

2. Key Laboratory of Green Chemistry and Technology Ministry of Education College of Chemistry Sichuan University Chengdu Sichuan 610064 P.R. China

3. The Collaborative Innovation Center for Eco-Friendly and Fire-Safety Polymeric Materials (MoE) State Key Laboratory of Polymer Materials Engineering National Engineering Laboratory of Eco-Friendly Polymeric Materials (Sichuan) College of Architecture and Environment Sichuan University Chengdu 610064 China

Abstract

AbstractPlastic pollution is an emerging global threat due to lack of effective methods for transforming waste plastics into useful resources. Here, we demonstrate a direct oxidative upcycling of polyethylene into high‐value and high‐volume saturated dicarboxylic acids in high carbon yield of 85.9 % in which the carbon yield of long chain dicarboxylic (C10‐C20) acids can reach 58.9% over cobalt‐doped MCM‐41 molecular sieves, in the absence of any solvent or precious metal catalyst. The distribution of the dicarboxylic acids can be controllably adjusted from short‐chain (C4‐C10) to long‐chain ones (C10‐C20) through changing cobalt loading of MCM‐41 under nanoconfinement. Highly and sparsely dispersed cobalt along with confined space of mesoporous structure enables complete degradation of polyethylene and high selectivity of dicarboxylic acid in mild condition. So far, this is the first report on highly selective one‐step preparation of long chain dicarboxylic acids. The approach provides an attractive solution to tackle plastic pollution and a promising alternative route to long chain diacids.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Reference59 articles.

1.  

2. Trash to Treasure: Microwave-Assisted Conversion of Polyethylene to Functional Chemicals

3. Combined Chemical Activation and Fenton Degradation to Convert Waste Polyethylene into High-Value Fine Chemicals

4. Highly Selective Catalytic Oxi‐upcycling of Polyethylene to Aliphatic Dicarboxylic Acid under a Mild Hydrogen‐Free Process

5. G. Rajendran Vol. WO2009117498(A2 A3) Preparing dodecanedioic acid comprises contacting 1 3-butadiene with catalyst oxidizing cyclododeca-1 5 9-triene converting epoxycyclododeca-5 9-diene into mixture comprising cyclododecanone and contacting with catalyst and nitric acid Patent.2009.

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