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Converting waste PET plastics into automobile fuels and antifreeze components

Chemistry

Converting waste PET plastics into automobile fuels and antifreeze components

Z. Gao, B. Ma, et al.

Discover an innovative low-cost method to tackle plastic pollution through the transformation of PET waste into valuable p-xylene and ethylene glycol. This research, conducted by Zhiwen Gao, Bing Ma, Shuang Chen, Jingqing Tian, and Chen Zhao, showcases a groundbreaking one-pot approach that harnesses a modified Cu/SiO2 catalyst and methanol, providing an in-situ hydrogen source and making strides towards environmental sustainability.

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Abstract
With the aim to solve the serious problem of white plastic pollution, we report herein a low-cost process to quantitatively convert polyethylene terephthalate (PET) into p-xylene (PX) and ethylene glycol (EG) over modified Cu/SiO2 catalyst using methanol as both solvent and hydrogen donor. Kinetic and in-situ Fourier-transform infrared spectroscopy (FTIR) studies demonstrate that the degradation of PET into PX involves tandem PET methanolysis and dimethyl terephthalate (DMT) selective hydro-deoxygenation (HDO) steps with the in-situ produced H2 from methanol decomposition at 210 °C. The overall high activities are attributed to the high Cu+/Cu2+ ratio derived from the dense and granular copper silicate precursor, as formed by the induction of proper NaCl addition during the hydrothermal synthesis. This hydrogen-free one-pot approach allows to directly produce gasoline fuels and antifreeze components from waste poly-ester plastic, providing a feasible solution to the plastic problem in islands.
Publisher
Nature Communications
Published On
Jun 10, 2022
Authors
Zhiwen Gao, Bing Ma, Shuang Chen, Jingqing Tian, Chen Zhao
Tags
polyethylene terephthalate
waste conversion
p-xylene
ethylene glycol
catalysis
methanolysis
hydro-deoxygenation
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