Grave-to-cradle dry reforming of plastics via Joule heating.

Ma, Qing; Gao, Yongjun; Sun, Bo; Du, Jianlong; Zhang, Hong; Ma, Ding · Nat Commun · 2024

basic_science · Level V

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Abstract

Both plastics and CO<sub>2</sub> are waste carbon resources, and their accumulation in nature has led to severe environmental pollution. However, simultaneously converting plastic waste and CO<sub>2</sub> into value-added chemicals remains a challenge. Here we demonstrate a catalytic reforming process that converts plastics and CO<sub>2</sub> into syngas over an electrified FeCrAl heating wire. The temperature of the electrified heating wire can quickly exceed 800 °C, facilitating the decomposition of polyethylene into gaseous hydrocarbons. The high-temperature heating wire promote the CO<sub>2</sub> deoxygenation, resulting in the generation of CO, as well as the dehydrogenation of gaseous hydrocarbons. Significantly, the additional O species from CO<sub>2</sub> and the carbon species from hydrocarbons can react to form CO, maintaining the high catalytic activity of the electrified heating wire. This novel approach is of paramount to achieving a circular economy in addressing the ongoing environmental crisis caused by the accumulation of plastic waste and excessive CO<sub>2</sub> emissions.