Environmental impact assessments of compressed air energy storage systems: a review

Author:

Rahman Md Mustafizur,Oni Abayomi Olufemi,Gemechu Eskinder,Kumar Amit

Publisher

Elsevier

Reference47 articles.

1. Techno-economic and environmental assessment of stationary electricity storage technologies for different time scales;Abdon;Energy,2017

2. The role of energy storage in deep decarbonization of electricity production;Arbabzadeh;Nature communications,2019

3. Bauer, C., 2015 Screening of a lifecycle Assessment (LCA) of an Advanced Adiabatic Compressed Air Energy Storage.

4. Energy storage for mitigating the variability of renewable electricity sources: An updated review;Beaudin;Energy for sustainable development,2010

5. Bloomberg, N.E.F., 2018. Global electricity demand to increase 57% by 2050. (accessed 03.10.2019).

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