This document reports work performed at the Savannah River National Laboratory (SRNL) that further develops the use of a proton exchange membrane or PEM-type electrochemical cell to produce hydrogen via SO{sub 2}-depolarized water electrolysis. This work was begun at SRNL in 2005. This research is valuable in achieving the ultimate goal of an economical hydrogen production process based on the Hybrid Sulfur (HyS) Cycle. The HyS Process is a hybrid thermochemical cycle that may be used in conjunction with advanced nuclear reactors or centralized solar receivers to produce hydrogen by water-splitting. Like all other sulfur-based cycles, HyS utilizes the high temperature thermal decomposition of sulfuric acid to produce oxygen. The unique aspe...
Thermochemical processes are being developed to provide global-scale quantities of hydrogen. A varia...
• Develop a conceptual design for the hybrid sulfur (HyS) thermochemical hydrogen production system,...
The chemical stability, sulfur dioxide transport, ionic conductivity, and electrolyzer performance h...
The Hybrid Sulfur (HyS) process is one of the leading thermochemical cycles being studied as part of...
This document is the Close-Out Report for design and partial fabrication of the Pressurized Button C...
Thermochemical processes are being developed to provide global-scale quantities of hydrogen. A varia...
Thermochemical water splitting cycles, using the heat of nuclear power plants, offer an alternate hi...
The Hybrid Sulfur (HyS) Thermochemical Process is a means of producing hydrogen via water-splitting ...
The primary objective of the DOE-NE Nuclear Hydrogen Initiative (NHI) is to develop the nuclear hydr...
Over the past several years, Savannah River National Laboratory (SRNL) has led a team of collaborato...
The single cell test system development for the SRNL sulfur dioxide-depolarized electrolyzer has bee...
The proof of concept of SO2 electrolysis for the hybrid sulfur (HyS) process is the second priority ...
Thermochemical processes are being developed to provide global-scale quantities of hydrogen. A varia...
The application of PFSA-based proton exchange membranes was investigated for the production of hydro...
The chemical stability, sulfur dioxide transport, ionic conductivity, and electrolyzer performance h...
Thermochemical processes are being developed to provide global-scale quantities of hydrogen. A varia...
• Develop a conceptual design for the hybrid sulfur (HyS) thermochemical hydrogen production system,...
The chemical stability, sulfur dioxide transport, ionic conductivity, and electrolyzer performance h...
The Hybrid Sulfur (HyS) process is one of the leading thermochemical cycles being studied as part of...
This document is the Close-Out Report for design and partial fabrication of the Pressurized Button C...
Thermochemical processes are being developed to provide global-scale quantities of hydrogen. A varia...
Thermochemical water splitting cycles, using the heat of nuclear power plants, offer an alternate hi...
The Hybrid Sulfur (HyS) Thermochemical Process is a means of producing hydrogen via water-splitting ...
The primary objective of the DOE-NE Nuclear Hydrogen Initiative (NHI) is to develop the nuclear hydr...
Over the past several years, Savannah River National Laboratory (SRNL) has led a team of collaborato...
The single cell test system development for the SRNL sulfur dioxide-depolarized electrolyzer has bee...
The proof of concept of SO2 electrolysis for the hybrid sulfur (HyS) process is the second priority ...
Thermochemical processes are being developed to provide global-scale quantities of hydrogen. A varia...
The application of PFSA-based proton exchange membranes was investigated for the production of hydro...
The chemical stability, sulfur dioxide transport, ionic conductivity, and electrolyzer performance h...
Thermochemical processes are being developed to provide global-scale quantities of hydrogen. A varia...
• Develop a conceptual design for the hybrid sulfur (HyS) thermochemical hydrogen production system,...
The chemical stability, sulfur dioxide transport, ionic conductivity, and electrolyzer performance h...