The ‘vicious cycle’ of energy poverty and productivity: insights from 45 developing countries

被引:0
作者
Canh Phuc Nguyen
Thanh Dinh Su
机构
[1] University of Economics Ho Chi Minh City,School of Public Finance
来源
Environmental Science and Pollution Research | 2021年 / 28卷
关键词
Productivity; Total factor productivity; Energy poverty; Human capital; Internet usage; Developing countries; O13; Q43; E24; J24; O17; O40; L86; Q01;
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学科分类号
摘要
This study is the first proper attempt to examine the influence of energy poverty on productivity. Specifically, the study investigates the effects on the level and convergence of total factor productivity of no access to clean fuels and technologies for cooking; no access to electricity in the total population; no access to electricity in the rural population; no access to electricity in the urban population; non-renewable electricity production; and non-renewable electricity consumption. The study examines a global sample of 45 developing countries from 2002 to 2017 and offers three empirical analysis findings. First, the mutual causalities between the five dimensions of energy poverty and total factor productivity are shown by a non-Granger causality test for panel data, except one-direction causality from no access to clean fuels and technologies for cooking to total factor productivity convergence, which hints a ‘vicious cycle’ of two variables. Second, the two-step system generalised method of moments estimates show significant negative impacts of no access to clean fuels and technologies for cooking and the three variables of no access to electricity on total factor productivity. In contrast, the production and consumption of non-renewable electricity appear to have significant positive effects. Third, the three-stage least squares estimates provide statistical evidence that the effects of energy poverty on total factor productivity are transmitted through human capital accumulation, Internet usage, and the shadow economy.
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页码:56345 / 56362
页数:17
相关论文
共 162 条
[51]  
Wang P(2000)The effects of openness, trade orientation, and human capital on total factor productivity J Dev Econ 63 399-1240
[52]  
Liu J-T(2016)Energy consumption and total factor productivity growth in Iranian agriculture Energy Rep 2 218-199
[53]  
Chen S(2017)Demand side management potentials for mitigating energy poverty in South Africa Energy Policy 111 298-32
[54]  
Santos-Paulino AU(2021)An inquiry into the nexus between energy poverty and income inequality in the light of global evidence Energy Econ 99 105289-136
[55]  
d’Agostino G(2016)Measuring energy poverty in Japan, 2004–2013 Energy Policy 98 557-210
[56]  
Scarlato M(2011)Measuring and monitoring energy poverty Energy Policy 39 7497-282
[57]  
Defever F(2004)On measuring energy poverty in Indian households World Dev 32 2083-719
[58]  
Imbruno M(2018)EU services liberalization and TFP growth: industry level evidence Econ Lett 172 16-345
[59]  
Kneller R(2010)Rural electrification and energy poverty: empirical evidences from Brazil Renew Sust Energ Rev 14 1229-undefined
[60]  
Demir F(2019)Do fossil fuel and renewable energy consumption affect total factor productivity growth? Evidence from cross-country data with policy insights Energy Policy 127 186-undefined