Efficient CO2 utilization and sustainable energy conversion via aqueous Zn-CO2 batteries

Author:

Kaur Sukhjot,Kumar Mukesh,Gupta Divyani,Mohanty Prajna Parimita,Das Tisita,Chakraborty Sudip,Ahuja Rajeev,Nagaiah Tharamani C.

Publisher

Elsevier BV

Subject

Electrical and Electronic Engineering,General Materials Science,Renewable Energy, Sustainability and the Environment

Reference48 articles.

1. A comparison of estimates of global carbon dioxide emissions from fossil carbon sources;Andrew;Earth Syst. Sci. Data,2020

2. Irreversible climate change due to carbon dioxide emissions;Solomon;Proc. Natl. Acad. Sci.,2009

3. Direct human health risks of increased atmospheric carbon dioxide;Jacobson;Nat. Sustain.,2019

4. Near-real-time monitoring of global CO2 emissions reveals the effects of the COVID-19 pandemic;Liu;Nat. Commun.,2020

5. Global Carbon Budget 2021;Friedlingstein;Earth Syst. Sci. Data Discuss.,2021

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