| Literature DB >> 35734759 |
Adnan Safi1, Yingying Chen1, Liya Zheng1.
Abstract
Emerging economies are showing promising growth and economic success, but the growth process has significantly increased carbon emissions in these countries and deteriorated environmental quality. Environmental degradation is an issue of serious concern as it is directly linked to human lives and health. Since the creation of the Sustainable Development Goals (SDGs), the Emerging Seven (E-7) countries have struggled to meet the SDG targets, as it's been a challenge for them to lower carbon emissions and improve the quality of the environment. Thus, the present study explores the key factors that significantly affect environmental quality. This study examines the effect of institutional quality, energy productivity, and eco-innovation on consumption-based carbon dioxide (CCO2) emissions for E-7 economies. The cointegration analysis results show a long-run relationship between institutional quality, energy productivity, GDP, eco-innovation exports, imports, and CCO2 emissions. The results obtained using the cross-sectionally augmented autoregressive distributed lag (CS-ARDL) model show that institutional quality, energy productivity, eco-innovation, and exports adversely affect CCO2 emissions and improve environmental quality in the short and long run. In contrast, imports and GDP are positively linked with CCO2 emissions and contribute to environmental degradation. Policies that target institutional quality, eco-innovation, and energy productivity significantly affect CCO2 emissions and help improve environmental quality.Entities:
Keywords: E-7 countries; carbon emission; consumption-based carbon dioxide emission; eco-innovation; energy productivity; institutional quality; public health; trade
Mesh:
Substances:
Year: 2022 PMID: 35734759 PMCID: PMC9207935 DOI: 10.3389/fpubh.2022.878243
Source DB: PubMed Journal: Front Public Health ISSN: 2296-2565
Ratios and difference for consumption and territory-based emissions.
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| Brazil | 1.0107206 | 5.1853943 |
| Mexico | 1.0396787 | 18.06601 |
| Turkey | 1.0336859 | 14.12912 |
| China | 0.870745 | −1330.027 |
| Indonesia | 0.96190721 | −23.422668 |
| India | 0.905758 | −245.011 |
| Russia | 0.83621317 | −277.06946 |
TCO.
CD test analysis.
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| CCO2 | 13.807*** | 0.562 |
| GDP | 22.072*** | 0.894 |
| IMP | 5.529*** | 0.452 |
| EXP | 6.996*** | 0.396 |
| EnPd | 10.259*** | 0.708 |
| EcoInov | 2.127*** | 0.218 |
| InsQy | −2.661*** | 0.439 |
Asterisks *** show a 1% level of significance.
Slope heterogeneity test.
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| Model 1 | CCO2 GDP IMP EXP EcoInov |
| 9.772375*** |
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| 11.00957*** | ||
| Model 2 | CCO2 GDP IMP EXP EcoInov EnPd |
| 9.765034*** |
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| 11.25676*** | ||
| Model 3 | CCO2 GDP IMP EXP EcoInov EnPd InsQy |
| 9.417859*** |
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| 11.12092*** |
Asterisks *** show a 1% level of significance.
Unit root test.
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| CCO2 | −3.457*** | −3.296*** | −4.368989*** | −4.667316*** |
| GDP | −1.373426 | −1.210632 | −2.934399*** | −3.295852*** |
| IMP | −1.922559 | −2.478043 | −4.542213*** | −4.581494*** |
| EXP | −1.573971 | −2.281165 | −4.367194*** | −4.498726*** |
| EcoInov | −3.965779*** | −4.140779*** | −5.844922*** | −5.967767*** |
| EnPd | −2.077191 | −1.979793 | −3.591024*** | −4.016477*** |
| InsQy | −1.049 | −2.256349 | −3.17351*** | −3.296686*** |
Asterisks *** show a 1% level of significance.
Panel cointegration test.
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| Gt | −7.803*** | −14.983 | −7.939*** | −14.929 | −7.051*** | −11.994 |
| Ga | −25.816*** | −5.929 | −25.710*** | −4.819 | −20.013** | −1.952 |
| Pt | −25.984*** | −17.1331 | −24.771*** | −16.196 | −18.568*** | −10.846 |
| Pa | −29.858*** | −8.5926 | −27.206*** | −6.379 | −23.674*** | −4.1293 |
Asterisks *** and ** shows 1 and 5% level of significance.
CS-ARDL.
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| ΔIMP | 0.2466*** | 0.1155* | 0.1142* |
| (0.0608) | (0.0677) | (0.0569) | |
| ΔEXP | −0.3528*** | −0.2716*** | −0.3789*** |
| (0.0983) | (0.0750) | (0.0906) | |
| ΔGDP | 0.5479*** | 0.4712*** | 0.5412*** |
| (0.1403) | (0.1132) | (0.1555) | |
| ΔEcoInov | −0.0157* | −0.0342*** | −0.0282* |
| (0.0081) | (0.0099) | (0.0151) | |
| ΔInsQy | −0.0029** | −0.0061** | |
| (0.0014) | (0.0030) | ||
| ΔEnPd | −0.7486*** | ||
| (0.2697) | |||
| ECM (-1) | −0.9123*** | −0.8383*** | −0.9984*** |
| (0.0473) | (0.0823) | (0.0819) | |
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| GDP | 0.6438*** | 0.6105*** | 0.5739*** |
| (0.2080) | (0.1721) | (0.1739) | |
| EXP | −0.4043*** | −0.3083*** | −0.3895*** |
| (0.1176) | (0.0819) | (0.0964) | |
| IMP | 0.2735*** | 0.1758* | 0.1189** |
| (0.0692) | (0.0892) | (0.0588) | |
| EcoInov | −0.0174* | −0.0384*** | −0.0320* |
| (0.0092) | (0.0109) | (0.0181) | |
| InsQy | −0.0038** | −0.0041** | |
| (0.0018) | (0.0020) | ||
| EnPd | −0.8806** | ||
| (0.4032) | |||
| F | 1.5671** | 2.7239*** | 1.6320** |
| CD-Stat | −1.7289* | −2.7497*** | −1.7570* |
| [0.0838] | [0.0060] | [0.0789] |
The standard errors are in parentheses, in the CD stat row, the brackets [] give the p-values, and Asterisks *, **, *** show the significance level at 10, 5 and 1 percent.
AMG analysis.
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| GDP | 0.459*** | 0.600*** | 0.791*** |
| (0.056) | (0.093) | (0.111) | |
| IMP | 0.054 | 0.215** | 0.173*** |
| (0.065) | (0.094) | (0.050) | |
| EXP | −0.261*** | −0.360*** | −0.346*** |
| (0.058) | (0.062) | (0.046) | |
| EcoInov | −0.0108* | −0.027*** | −0.0832** |
| (0.0057) | (0.002) | (0.0390) | |
| InsQy | 0.006* | 0.005* | |
| (0.003) | (0.002) | ||
| EnPd | −0.731*** | ||
| (0.264) | |||
| constant | −30.977*** | −31.869*** | −47.370*** |
| (1.824) | (0.798) | (5.986) | |
| Wald-Statistics | 87.544 | 146.362 | 126.419 |
The standard errors are in parentheses, and asterisks *, **, *** show the significance level at 10, 5 and 1 percent.
Causality analysis.
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| GDP → CCO2 | 4.818*** | 7.142 | 0.000 |
| IMP → CCO2 | 4.183*** | 5.955 | 0.000 |
| EXP → CCO2 | 5.058*** | 7.592 | 0.000 |
| EcoInov → CCO2 | 4.784* | 1.927 | 0.054 |
| EnPd → CCO2 | 10.457*** | 6.040 | 0.000 |
| InsQy → CCO2 | 8.897** | 2.213 | 0.027 |
Asterisks *, **, *** show the significance level at 10, 5 and 1 percent.