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Assessment of a novel ternary eutectic chloride salt for next generation high-temperature sensible heat storage

Date

2018-05-02

Authors

Mohan, Gowtham
Brahmadesham Venkataraman, Mahesh
Gomez-Vidal, Judith
Coventry, Joseph

Journal Title

Journal ISSN

Volume Title

Publisher

Pergamon Press Ltd.

Abstract

A novel ternary eutectic salt mixture for high-temperature sensible heat storage, composed of sodium chloride, potassium chloride and magnesium chloride (NaKMg–Cl) was developed based on a phase diagram generated with FactSage®. The differential scanning calorimetry (DSC) technique was used to experimentally validate the predicted melting point of the ternary eutectic composition, which was measured as 387°C, in good agreement with the prediction. The ternary eutectic was compared to two binary salts formulated based on prediction of the eutectic composition by FactSage, but unfortunately DSC measurements showed that neither binary salt composition was eutectic. Nonetheless, the measured thermo-physical properties of the ternary and the two binary mixtures are compared. Liquid heat capacities of both the ternary and binary salts were determined by using DSC with sapphire as the standard reference. The average heat capacity of the ternary mixture was recorded as 1.18 J g−1 K−1. The mass loss of the molten eutectic salts was studied up to 1000°C using a thermogravimetric analyser in nitrogen, argon and air. The results showed a significant mass loss due to vaporisation in an open system, particularly above 700°C. However, simulation of mass loss in a closed system with an inert cover gas indicates storage temperatures above 700°C may be feasible, and highlights the importance of the design of the storage tank system. In terms of storage material cost, the NaKMg-Cl mixture is approximately 4.5 USD/kWh, which is 60% cheaper than current state-of-the-art nitrate salt mixtures.

Description

Keywords

High-temperature, Sensible heat storage, Melting point, Heat capacity, Mass loss, Molten salt

Citation

Source

Energy Conversion and Management

Type

Journal article

Book Title

Entity type

Access Statement

License Rights

DOI

10.1016/j.enconman.2018.04.100

Restricted until

2037-12-31