At present, the traditional anthraquinone method is the main method for producing high-quality and high-concentration H 2 O 2 , but it involves the use of H 2 , resulting in high carbon emissions and certain risks. The double-electron oxygen reduction reaction has become a more environmentally friendly alternative method for producing H 2 O 2 . However, at high overpotentials, the production and conversion rates of H 2 O 2 are still limited. Here, we report an electrochemical method that can convert H 2 O and formaldehyde into high-concentration H 2 O 2 and high-value formate salts with high product purity under environmental conditions. At a current density of 30 milliamperes per square centimeter, continuous operation for 5 hours can produce 6.522% (m/v) H 2 O 2 , and the product does not contain acid, alkali, or excessive impurities. Faraday efficiency reaches 83%. The chronopotentiometry method shows stable current performance of the electrode after 360 hours of operation. This low-carbon, safe, and sustainable approach provides a promising alternative to traditional H 2 O 2 production.
Guo et al. (Fri,) studied this question.