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Technology policy and environmental quality at crossroads: Designing SDG policies for select Asia Pacific countries

机译:交叉路技术政策和环境质量:设计SDG政策选择亚太国家

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Since the inception of Sustainable Development Goals (SDGs), the Asia Pacific countries are facing difficulties in attaining the SDG objectives, as maintaining the environmental quality has been a challenge for them. In this study, we have revisited the technology policies of these countries, and in doing so, we have tried to address the problem of environmental degradation, while addressing the issues of sustainable economic growth, clean and affordable energy, and quality education. In this pursuit, we have designed two indices for environmental degradation and technological advancement, and then analyzed the association between them following the Environmental Kuznets Curve (EKC) hypothesis. Following IPAT framework, and by using quantile approach, over a period of 1990-2017, we have found that the turnaround points of EKCs rise with the rise in quantiles, i.e. quantiles with low pollutions are having turnaround points within sample range, whereas quantiles with high pollutions are having turnaround points outside sample range. Using Rolling Window Heterogeneous Panel Causality test, unidirectional causality has been found running from technological advancement to environmental degradation. Following the results obtained from the analysis, we have tried to address the objectives of SDG 13, SDG 4, SDG 8, SDG 9, SDG 7, and SDG 10.
机译:自成立以来,可持续发展目标(SDGS),亚太国家在实现SDG目标方面面临困难,因为保持环境质量对他们来说是挑战。在本研究中,我们重新审视了这些国家的技术政策,并在这样做时,我们试图解决环境退化问题,同时解决可持续经济增长,干净,经济的能源和素质教育问题。在这种追求中,我们设计了两个用于环境退化和技术进步的指标,然后在环境库兹涅茨曲线(EKC)假设之后分析了它们之间的关联。在iPat框架之后,通过使用量级方法,在1990 - 2017年的一段时间内,我们发现EKCS的周转点随着量级的上升而上升,即具有低污染的量级在样本范围内具有周转点,而定量高污染具有外部样本范围的转变点。使用滚动窗异质面板因果关系试验,发现单向因果关系从技术进步到环境退化。在从分析获得的结果之后,我们已经尝试解决SDG 13,SDG 4,SDG 8,SDG 9,SDG 7和SDG 10的目标。

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