[HTML][HTML] Biobased phase change materials in energy storage and thermal management technologies

G Simonsen, R Ravotti, P O'Neill… - … and Sustainable Energy …, 2023 - Elsevier
Harnessing the potential of phase change materials can revolutionise thermal energy
storage, addressing the discrepancy between energy generation and consumption. Phase …

[HTML][HTML] What about greener phase change materials? A review on biobased phase change materials for thermal energy storage applications

O Okogeri, VN Stathopoulos - International Journal of Thermofluids, 2021 - Elsevier
The increasing energy demand in conjunction with greater environmental concern has lifted
the development of sustainable energy sources, including materials for energy storage. The …

Biobased phase change materials from a perspective of recycling, resources conservation and green buildings

MF Junaid, Z ur Rehman, N Ijaz, M Čekon, J Čurpek… - Energy and …, 2022 - Elsevier
Implementation of thermal energy storage (TES) systems in buildings heavily relies on
orthodox phase change materials (PCMs) which are derived from precious and non …

Stabilization of an aqueous bio-based wax nano-emulsion through encapsulation

P Samyn, VK Rastogi - Nanomaterials, 2022 - mdpi.com
The emulsification of biowaxes in an aqueous environment is important to broaden their
application range and make them suitable for incorporation in water-based systems. The …

[HTML][HTML] Parametric study of low-temperature thermal energy storage using carbon dioxide as the phase change material in pillow plate heat exchangers

MM Joybari, H Selvnes, E Vingelsgård… - Applied Thermal …, 2023 - Elsevier
Industrial low-temperature freezing applications are often batch processes, requiring a lot of
energy, exerting stress on the electrical grid. To relieve this stress, thermal energy storage …

Optimal control of a bio-based phase change material thermal energy storage for demand response

AC Nunna, O Galteland, L Georges, Y Zong - Energy Conversion and …, 2025 - Elsevier
In this study, the design and development of an optimal control strategy for the operation of
an innovative bio-wax phase change material based pillow plate thermal energy storage …

Recent advances in design and performance optimization of pillow-plate heat exchangers: a critical review

A Sabourishirazi, M Ghodrat, JL Liow… - Journal of Thermal …, 2023 - Springer
Over the last two decades, extensive research has been dedicated to the crisis stemming
from fossil fuel usage and its environmental repercussions. This pressing concern has …

Holistic Energy Systems Analysis for Norwegian Farms

T Aas, SB Olsen - 2024 - ntnuopen.ntnu.no
Gårder kan spille en viktig rolle i den nåværende omstillingen mot økt fornybar energibruk.
Den pågående utviklingen av teknologier knyttet til energiproduksjon,-lagring og-forbuk kan …

Fourteen months operation of a 200 kWh latent heat storage pilot

O Galteland, M Gouis… - 2023 8th International …, 2023 - ieeexplore.ieee.org
A latent heat storage was in 2021 installed in an office building in Trondheim, Norway. The
unit contains 3 tons of CrodaTherm 37, which is a bio-based wax phase-change material …

Benytte historiske data til å forbedre det termiske energilagringssystemet til ZEB-laboratoriet

A Johannessen, JM Madebo - 2024 - ntnuopen.ntnu.no
Denne bacheloroppgaven har beregnet på forskjellige muligheter med bruk av et fase
endrende materialet som energilagringssystem i ZEB-laboratoriet på Gløshaugen …