The development of alternative methods for thermal energy storage is important for improving the efficiency and decreasing the cost for Concentrating Solar-thermal Power (CSP). We focus on the underlying technology that allows metal hydrides to function as Thermal Energy Storage (TES) systems and highlight the current state-of-the-art materials that can operate at temperatures as low as room-temperature and as high as 1100 oC. The potential of metal hydrides for thermal storage is explored while current knowledge gaps about hydride properties, such as hydride thermodynamics, intrinsic kinetics and cyclic stability, are identified. The engineering challenges associated with utilising metal hydrides for high-temperature thermal energy storage...
© 2019 The Royal Society of Chemistry. Metal hydrides have demonstrated ideal physical propertie...
Concentrating solar–thermal power (CSP) with thermal energy storage (TES) represents an attractive a...
HEATS Project: PNNL is developing a thermal energy storage system based on a Reversible Metal Hydrid...
The development of alternative methods for thermal energy storage is important for improving the eff...
The development of alternative methods for thermal energy storage is important for improving the eff...
Thermochemical energy storage materials have advantage of much higher energy densities compared to l...
© 2016. Springer-Verlag Berlin Heidelberg. Recently, there has been increasing interest in thermal e...
Thermochemical energy storage materials have advantage of much higher energy densities compared to l...
This manuscript aims to study destabilised calcium hydrides system as thermal energy storage for con...
Increased reliance on solar energy conversion technologies will necessarily constitute a major plank...
CSP (concentrating solar thermal power) is emerging as a viable and cost effective solution to renew...
Metal hydrides can be utilized for hydrogen storage and for thermal energy storage (TES) application...
The potential and research surrounding metal hydride (MH) based thermal energy storage is discussed,...
The research focused on renewable energy storage using hydrogen-rich materials. These materials can ...
This thesis project furthers the development of innovative high temperature thermal energy storage u...
© 2019 The Royal Society of Chemistry. Metal hydrides have demonstrated ideal physical propertie...
Concentrating solar–thermal power (CSP) with thermal energy storage (TES) represents an attractive a...
HEATS Project: PNNL is developing a thermal energy storage system based on a Reversible Metal Hydrid...
The development of alternative methods for thermal energy storage is important for improving the eff...
The development of alternative methods for thermal energy storage is important for improving the eff...
Thermochemical energy storage materials have advantage of much higher energy densities compared to l...
© 2016. Springer-Verlag Berlin Heidelberg. Recently, there has been increasing interest in thermal e...
Thermochemical energy storage materials have advantage of much higher energy densities compared to l...
This manuscript aims to study destabilised calcium hydrides system as thermal energy storage for con...
Increased reliance on solar energy conversion technologies will necessarily constitute a major plank...
CSP (concentrating solar thermal power) is emerging as a viable and cost effective solution to renew...
Metal hydrides can be utilized for hydrogen storage and for thermal energy storage (TES) application...
The potential and research surrounding metal hydride (MH) based thermal energy storage is discussed,...
The research focused on renewable energy storage using hydrogen-rich materials. These materials can ...
This thesis project furthers the development of innovative high temperature thermal energy storage u...
© 2019 The Royal Society of Chemistry. Metal hydrides have demonstrated ideal physical propertie...
Concentrating solar–thermal power (CSP) with thermal energy storage (TES) represents an attractive a...
HEATS Project: PNNL is developing a thermal energy storage system based on a Reversible Metal Hydrid...