Economic Growth And Carbon Dioxide Emissions: The Environmental Kuznets Curve Hypothesis In Yemen

IF 0.5 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE International Journal of Embedded Systems Pub Date : 2021-03-13 DOI:10.31272/IJES2021.68.3
Essa Alhannom, Ghaleb Mushabab
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引用次数: 1

Abstract

Abstract This study investigates the validity of the Environmental Kuznets Curve hypothesis in Yemen and the causal relationships between Carbon dioxide emissions, per capita income, energy consumption, trade openness, and industrial share to GDP. ARDL bounds testing approach to cointegration, Error Correction Model, and Toda-Yamamoto procedure to Granger causality techniques were employed on annual data covering the period from 1990 to 2010. long run relationship between CO2 emissions and its determinants with significant effects for per capita GDP and trade openness, whereas, energy consumption and trade openness appear to be important determinants of CO2 emissions in the short run. Besides, based on Narayan and Narayan (2010) approach, it is found that the EKC hypothesis does not hold in Yemen and therefore the effect of per capita income on CO2 emissions is monotonically increasing. Toda-Yamamoto causality test proved the existence of bidirectional causal relationships between economic growth and CO2 emissions, between energy consumption and economic growth, and between trade openness and energy consumption
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经济增长与二氧化碳排放:也门的环境库兹涅茨曲线假说
摘要本研究调查了环境库兹涅茨曲线假说在也门的有效性,以及二氧化碳排放量、人均收入、能源消耗、贸易开放度和工业占GDP之间的因果关系。对1990年至2010年的年度数据采用了协整的ARDL边界检验方法、误差校正模型和Granger因果关系技术的Toda-Yamamoto程序。二氧化碳排放及其决定因素之间的长期关系对人均GDP和贸易开放具有显著影响,而能源消耗和贸易开放似乎是短期内二氧化碳排放的重要决定因素。此外,基于Narayan和Narayan(2010)的方法,发现EKC假说在也门不成立,因此人均收入对二氧化碳排放的影响单调增加。Toda-Yamamoto因果检验证明了经济增长与二氧化碳排放、能源消费与经济增长、贸易开放与能源消费之间存在双向因果关系
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来源期刊
International Journal of Embedded Systems
International Journal of Embedded Systems COMPUTER SCIENCE, HARDWARE & ARCHITECTURE-
CiteScore
2.50
自引率
41.70%
发文量
56
期刊介绍: With the advent of VLSI system level integration and system-on-chip, the centre of gravity of the computer industry is now moving from personal computing into embedded computing. Embedded systems are increasingly becoming a key technological component of all kinds of complex technical systems, ranging from vehicles, telephones, audio-video-equipment, aircraft, toys, security systems, medical diagnostics, to weapons, pacemakers, climate control systems, manufacturing systems, intelligent power systems etc. IJES addresses the state of the art of all aspects of embedded computing systems with emphasis on algorithms, systems, models, compilers, architectures, tools, design methodologies, test and applications.
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