How wind-based renewable energy contribute to CO2 emissions abatement? Evidence from Quantile-on-Quantile estimation

Renewable energy initiatives are required to achieve carbon neutrality, which is a primary goal of mitigating climate change. Renewable energy is attaining attention as it is environmentally friendly and more effective than typical forms of energy. For a sustainable environment, the latest green ene...

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Main Authors: Ali, S., Muhammad, Saeed Meo *
Format: Article
Published: Springer 2024
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Online Access:http://eprints.sunway.edu.my/2654/
https://link.springer.com/article/10.1007/s13762-023-05409-3
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spelling my.sunway.eprints.26542024-06-11T02:20:15Z http://eprints.sunway.edu.my/2654/ How wind-based renewable energy contribute to CO2 emissions abatement? Evidence from Quantile-on-Quantile estimation Ali, S. Muhammad, Saeed Meo * QD Chemistry TD Environmental technology. Sanitary engineering TJ Mechanical engineering and machinery Renewable energy initiatives are required to achieve carbon neutrality, which is a primary goal of mitigating climate change. Renewable energy is attaining attention as it is environmentally friendly and more effective than typical forms of energy. For a sustainable environment, the latest green energy techniques like wind energy, are predominantly employed in emerging countries. The present study considered the nonlinear wind energy-CO2 emissions nexus in the top ten wind energy-consumer nations (the USA, China, India, Germany, France, Spain, the UK, Brazil, Canada, and Italy). Most previous studies use panel data tools that provide typical outcomes on the wind energy-CO2 emissions nexus, regardless of the reality that few countries have no proof of such a connection individually. The present research, conversely applies a unique econometric methodology “Quantile-on-Quantile” that can analyze time-series dependence in every nation individually to attain global yet country-specific evidence for the nexus between the variables. We specifically investigate how the wind energy quantiles impact the CO2 emissions quantiles asymmetrically by providing a suitable foundation to apprehend the overall dependent framework. The outcomes reveal that the usage of wind energy is helpful in achieving carbon neutrality at distinct quantiles in selected nations. The degree of the asymmetric association between wind energy-CO2 nexus changes by nation, requiring individual attention and awareness on the governments’ part when forming the policies of wind energy to achieve carbon neutrality. Springer 2024 Article PeerReviewed Ali, S. and Muhammad, Saeed Meo * (2024) How wind-based renewable energy contribute to CO2 emissions abatement? Evidence from Quantile-on-Quantile estimation. International Journal of Environmental Science and Technology, 21 (6). pp. 6583-6596. ISSN 1735-2630 https://link.springer.com/article/10.1007/s13762-023-05409-3 10.1007/s13762-023-05409-3
institution Sunway University
building Sunway Campus Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Sunway University
content_source Sunway Institutional Repository
url_provider http://eprints.sunway.edu.my/
topic QD Chemistry
TD Environmental technology. Sanitary engineering
TJ Mechanical engineering and machinery
spellingShingle QD Chemistry
TD Environmental technology. Sanitary engineering
TJ Mechanical engineering and machinery
Ali, S.
Muhammad, Saeed Meo *
How wind-based renewable energy contribute to CO2 emissions abatement? Evidence from Quantile-on-Quantile estimation
description Renewable energy initiatives are required to achieve carbon neutrality, which is a primary goal of mitigating climate change. Renewable energy is attaining attention as it is environmentally friendly and more effective than typical forms of energy. For a sustainable environment, the latest green energy techniques like wind energy, are predominantly employed in emerging countries. The present study considered the nonlinear wind energy-CO2 emissions nexus in the top ten wind energy-consumer nations (the USA, China, India, Germany, France, Spain, the UK, Brazil, Canada, and Italy). Most previous studies use panel data tools that provide typical outcomes on the wind energy-CO2 emissions nexus, regardless of the reality that few countries have no proof of such a connection individually. The present research, conversely applies a unique econometric methodology “Quantile-on-Quantile” that can analyze time-series dependence in every nation individually to attain global yet country-specific evidence for the nexus between the variables. We specifically investigate how the wind energy quantiles impact the CO2 emissions quantiles asymmetrically by providing a suitable foundation to apprehend the overall dependent framework. The outcomes reveal that the usage of wind energy is helpful in achieving carbon neutrality at distinct quantiles in selected nations. The degree of the asymmetric association between wind energy-CO2 nexus changes by nation, requiring individual attention and awareness on the governments’ part when forming the policies of wind energy to achieve carbon neutrality.
format Article
author Ali, S.
Muhammad, Saeed Meo *
author_facet Ali, S.
Muhammad, Saeed Meo *
author_sort Ali, S.
title How wind-based renewable energy contribute to CO2 emissions abatement? Evidence from Quantile-on-Quantile estimation
title_short How wind-based renewable energy contribute to CO2 emissions abatement? Evidence from Quantile-on-Quantile estimation
title_full How wind-based renewable energy contribute to CO2 emissions abatement? Evidence from Quantile-on-Quantile estimation
title_fullStr How wind-based renewable energy contribute to CO2 emissions abatement? Evidence from Quantile-on-Quantile estimation
title_full_unstemmed How wind-based renewable energy contribute to CO2 emissions abatement? Evidence from Quantile-on-Quantile estimation
title_sort how wind-based renewable energy contribute to co2 emissions abatement? evidence from quantile-on-quantile estimation
publisher Springer
publishDate 2024
url http://eprints.sunway.edu.my/2654/
https://link.springer.com/article/10.1007/s13762-023-05409-3
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