HySelect EU-Project hat dies direkt geteilt
📢📄#PaperAlert: How is the reaction mechanism for #sulphur combustion? Knowledge of validated reaction mechanisms is a prerequisite for estimating combustion properties necessary to design optimised combustion devices that provide high power densities. We are excited to share that our latest paper, “Computational Investigation of the Isomers Formed from the Reaction S₂ + O₂,” has been published in the “Journal of Sulfur Chemistry”. In this #study, scientists who are part of the SULPHURREAL project, investigated the oxidation of sulphur and #oxygen species, contributing to the development of detailed reaction mechanisms for sulphur combustion—a crucial step in optimising energy generation processes. 💡 Key Insights: ➡️ Scope of this study is to develop and evaluate rate coefficients of reactions involving oxygenated sulphur species, which are free of hydrocarbons, for use in pure sulphur combustion. ➡️ Results show that ¹SS(=O)=O, ³SO, ¹SO₂, and ³S are the low energy products. Sulphur combustion is one part of the SULPHURREAL cycle. The SULPHURREAL project aims to demonstrate an innovative approach to the direct #storage of concentrated #solar energy in solid elemental sulphur, which can be combusted on demand to release the stored solar energy. Read the full paper here: 👉 https://lnkd.in/eAjS4AnD Authors: Nadia Sebbar, Henning Bockhorn, Joseph W. Bozzelli and Dimosthenis Trimis #Sulphurreal #EnergyResearc #ChemicalEngineering #SulphurChemistry