The integration of Concentrating Solar Thermal technology (CST) with thermochemical processes is regarded as a frontier innovation, with potential applications to energy storage and chemical industry. In this context, the development of novel multiphase reactors for CST becomes a strategic goal. This study aims to investigate the potentiality of a Directly Irradiated Fluidized Bed Autothermal Reactor (DIFBAR), that incorporates a solar particle receiver/reactor and a solid-solid heat exchanger for heat recovery. A laboratory prototype is tested with a high-flux solar simulator. The bed inventory is continuously recycled to a reservoir, that can also be operated as a secondary reactor. Black proppant, mullite and doped silica are used for inert experiments. Solid circulation rates in the range 0.5–2.5 g/s and heat transfer coefficients in the range 300–900 W/(m2 K) are estimated. Calcium Looping process is chosen for reactive experiments, using a mixture of limestone and black proppant.

Experimental investigation of Directly Irradiated Fluidized Bed Autothermal Reactor (DIFBAR) for thermochemical processes

Padula, Stefano;Troiano, Maurizio;Solimene, Roberto
;
Salatino, Piero
2024

Abstract

The integration of Concentrating Solar Thermal technology (CST) with thermochemical processes is regarded as a frontier innovation, with potential applications to energy storage and chemical industry. In this context, the development of novel multiphase reactors for CST becomes a strategic goal. This study aims to investigate the potentiality of a Directly Irradiated Fluidized Bed Autothermal Reactor (DIFBAR), that incorporates a solar particle receiver/reactor and a solid-solid heat exchanger for heat recovery. A laboratory prototype is tested with a high-flux solar simulator. The bed inventory is continuously recycled to a reservoir, that can also be operated as a secondary reactor. Black proppant, mullite and doped silica are used for inert experiments. Solid circulation rates in the range 0.5–2.5 g/s and heat transfer coefficients in the range 300–900 W/(m2 K) are estimated. Calcium Looping process is chosen for reactive experiments, using a mixture of limestone and black proppant.
2024
Istituto di Scienze e Tecnologie per l'Energia e la Mobilità Sostenibili - STEMS
Fluidized beds, Circulating fluidized beds, Thermochemical energy storage, Concentrated solar thermal, Autothermal reactor
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/533399
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