金融发展对哈萨克斯坦碳排放的长期影响

IF 3.2 4区 工程技术 Q3 ENERGY & FUELS
Shahriyar Mukhtarov, Rıdvan Karacan, Sugra Humbatova
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引用次数: 0

摘要

摘要 本研究探讨了金融发展、收入、可再生能源消费和出口对哈萨克斯坦二氧化碳排放的影响。为了进行分析,研究人员对 1993 年至 2020 年的数据采用了机器学习建模方法 Autometrics。估算结果表明,金融发展和收入对哈萨克斯坦的二氧化碳排放有积极的、统计上显著的影响。从数字上看,金融发展每增加 1%,二氧化碳排放量就会增加 0.17%。金融发展对二氧化碳排放产生积极影响的原因在于,先进的金融体系可以提高能源和碳密集型行业(如制造业和大型基础设施项目)的资金可获得性,从而可能导致产出增加和经济增长,但往往伴随着排放水平的提高。此外,出口对二氧化碳有负面影响,而可再生能源消费的影响则不显著。我们的研究结果表明,哈萨克斯坦的政策制定者应优先将财政资源导向生态友好型技术,促进能源转型,推动可持续经济活动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The long-run effect of financial development on carbon emissions in Kazakhstan

This study examined the impact of financial development, alongside income, renewable energy consumption and exports, on CO2 emissions in Kazakhstan. To conduct this analysis, Autometrics- a machine learning modeling approach- was applied to data spanning from 1993 to 2020. The findings of estimation revealed a positive and statistically significant effect of financial development and income on CO2 emissions in Kazakhstan. Numerically, a 1% increase in financial development is associated with a 0.17% rise in CO2 emissions. The positive impact of financial development on CO2 emissions can be seen as an advanced financial system can boost funding accessibility for energy and carbon-intensive sectors, such as manufacturing and large-scale infrastructure projects, potentially resulting in increased output and economic growth, often accompanied by elevated emission levels. In addition, exports have a negative influence on CO2, whereas the impacts of renewable energy consumption are insignificant. Our findings suggest that Kazakhstan’s policymakers should prioritize channeling financial resources towards eco-friendly technologies, facilitating energy transitions, and promoting sustainable economic activities.

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来源期刊
Energy Efficiency
Energy Efficiency ENERGY & FUELS-ENERGY & FUELS
CiteScore
5.80
自引率
6.50%
发文量
59
审稿时长
>12 weeks
期刊介绍: The journal Energy Efficiency covers wide-ranging aspects of energy efficiency in the residential, tertiary, industrial and transport sectors. Coverage includes a number of different topics and disciplines including energy efficiency policies at local, regional, national and international levels; long term impact of energy efficiency; technologies to improve energy efficiency; consumer behavior and the dynamics of consumption; socio-economic impacts of energy efficiency measures; energy efficiency as a virtual utility; transportation issues; building issues; energy management systems and energy services; energy planning and risk assessment; energy efficiency in developing countries and economies in transition; non-energy benefits of energy efficiency and opportunities for policy integration; energy education and training, and emerging technologies. See Aims and Scope for more details.
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