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Correction: Evaluation of redox pairs for low-grade heat energy harvesting with a thermally regenerative cycle

José Tomás Bórquez Maldifassia, Joseph B. Russellb, Jungmyung Kimb, Edward Brightmanc, Xiangjie Chenb and Dowon Bae*ab
aInstitute of Mechanical, Process and Energy Engineering (IMPEE), School of Engineering and Physical Sciences, Heriot-Watt University, Edinburgh EH14 4AS, UK
bWolfson School of Mechanical, Electrical and Manufacturing Engineering, Loughborough University, Loughborough LE11 3TU, UK. E-mail: d.bae@lboro.ac.uk
cDepartment of Chemical and Process Engineering, University of Strathclyde, Glasgow G1 1XL, UK

Received 14th February 2025 , Accepted 14th February 2025

First published on 26th February 2025


Abstract

Correction for ‘Evaluation of redox pairs for low-grade heat energy harvesting with a thermally regenerative cycle’ by José Tomás Bórquez Maldifassi et al., Energy Adv., 2024, 3, 2877–2886, https://doi.org/10.1039/D4YA00368C.


The authors regret an error in the α/mV values of Fe2+/3+‖Cu0/2+ and Fe2+/3+‖CuHCF in Table 2. Additionally, the solubility for the Fe2+/3+‖CuHCF pairs was incorrectly stated to be 1.4M and 1.5M on page 2882 and 2883; the correct value is 1.3M. A corrected version of Table 2 is provided below:
Table 2 Specifications of the selected redox couple combinations and theoretical performance metrics. Note that the calculation is based on 99% of the depth of discharging (DoD). The calculation method, assumptions for the calculations, and values for other DoDs are discussed in the ESI
Combination α/mV

image file: d5ya90008e-t1.tif

Net work/W h L−1 Qh/W h L−1 η0.5HR/% η0.7HR/% η0.9HR/% η0.99HR/% ηCarnot@0.99HR/%
[Fe(CN)6]3−/4−‖I3/3I 2.46 0.19 1.41 9.22 0.05 0.08 0.24 2.07 13.28
Fe2+/3+‖Cu0/2+ 2.06 0.395 3.89 25.09 0.13 0.22 0.63 4.63 29.80
Fe2+/3+‖CuHCF −2.12 0.47 3.94 25.82 0.13 0.22 0.64 4.66 29.90
[Zn(NH3)4]2+/Zn‖NiHCF −2.27 1.8 21.72 141.66 0.70 1.14 2.98 10.83 69.55


The Royal Society of Chemistry apologises for these errors and any consequent inconvenience to authors and readers.


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