Adebayo Tomiwa Sunday, Agyekum Ephraim Bonah, Altuntaş Mehmet, Khudoyqulov Sadriddin, Zawbaa Hossam M, Kamel Salah
Department of Business Administration, Faculty of Economics and Administrative Science, Cyprus International University, Nicosia, Northern Cyprus, TR-10 Mersin, Turkey.
Department of Nuclear and Renewable Energy, Ural Federal University Named After the First President of Russia Boris, 19 Mira Street, Ekaterinburg, 620002 Yeltsin, Russia.
Heliyon. 2022 Mar 15;8(3):e09108. doi: 10.1016/j.heliyon.2022.e09108. eCollection 2022 Mar.
Although ICT has played a critical role in the socio-economic growth of human cultures, it has also brought with it significant environmental risks. Nevertheless, scholars remain divided on this topic; some believe that ICT has had a positive influence on the quality of the environment, while others believe that ICT has created major environmental issues. Hence, this research is another effort to assess the effects of ICT on CO emissions in the top 10 ICT nations (Denmark, Japan, Luxemburg, South Korea, Netherlands, Iceland, Norway, Sweden, Switzerland, and the United Kingdom) using a dataset from the period between 1986Q1 and 2019Q4. All prior studies have established symmetric association between ICT and CO. As a result, we applied the novel non-parametric approaches (quantile-on-quantile regression and Granger causality in quantile) to assess this association. The findings from the QQR uncovered that in the majority of the quantiles, for Denmark, Japan, Luxemburg, Netherland, Norway, Sweden, United Kingdom and Switzerland, the effect of ICT on CO emissions is negative, while in the majority of the quantiles, the effect of ICT on CO emissions is positive for the Netherlands, South Korea, and Iceland. Furthermore, we applied the novel Granger causality in the quantiles approach and the outcomes provided evidence of bidirectional causality between CO emissions and ICT in all the selected nations. The study proposes that sustainable ICT should be used to improve carbon reduction and energy savings potential by optimizing other industries, including managing and monitoring energy usage.
尽管信息通信技术在人类文化的社会经济增长中发挥了关键作用,但它也带来了重大的环境风险。然而,学者们在这个问题上仍然存在分歧;一些人认为信息通信技术对环境质量有积极影响,而另一些人则认为信息通信技术造成了重大的环境问题。因此,本研究再次尝试利用1986年第一季度至2019年第四季度期间的数据集,评估信息通信技术对十大信息通信技术国家(丹麦、日本、卢森堡、韩国、荷兰、冰岛、挪威、瑞典、瑞士和英国)碳排放的影响。所有先前的研究都确定了信息通信技术与碳排放之间的对称关联。因此,我们应用了新颖的非参数方法(分位数对分位数回归和分位数格兰杰因果检验)来评估这种关联。分位数对分位数回归的结果表明,在大多数分位数中,对于丹麦、日本、卢森堡、荷兰、挪威、瑞典、英国和瑞士,信息通信技术对碳排放的影响是负面的,而在大多数分位数中,信息通信技术对碳排放的影响对荷兰、韩国和冰岛是正面的。此外,我们应用了新颖的分位数格兰杰因果检验方法,结果证明了所有选定国家的碳排放与信息通信技术之间存在双向因果关系。该研究建议,应使用可持续的信息通信技术,通过优化包括能源使用管理和监测在内的其他行业,提高碳减排和节能潜力。