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偏向性技术进步如何影响雾霾污染?来自 APEC 经济体的证据。

How does biased technological progress affect haze pollution? Evidence from APEC economies.

机构信息

School of Management, Lanzhou University, Lanzhou, 730000, China.

College of Economics and Management, Nanjing University of Aeronautics and Astronautics, Nanjing, 211106, China.

出版信息

Environ Sci Pollut Res Int. 2022 Aug;29(36):54543-54560. doi: 10.1007/s11356-022-19568-2. Epub 2022 Mar 18.

Abstract

Biased technological progress is the act of energy conservation and emission reduction by changing the marginal rate of substitution. In this study, we introduced renewable energy into a production function, and proposed a method of identifying biased characteristics of technological progress, based on marginal productivity theory. A panel dataset for the Asia-Pacific Economic Cooperation (APEC) economies from 2000 to 2017 was analyzed to explore the effect of biased technological progress in reducing particulate matter (PM). We found that input biased technological progress tended to use more non-renewable energy. Input biased technological progress aggravated haze pollution; however, this effect decreased as the PM concentration increased. Output biased technological progress significantly reduced haze pollution in high-income economies, but increased it in low-income economies. The effect of neutral technological progress on haze pollution was the opposite of the effect from output biased technological progress. We also found that increasing renewable energy consumption and reducing energy intensity were separate effective paths for input and output biased technological progress, respectively, to mitigate haze pollution. For neutral technological progress, improving total factor productivity was an important way to mitigate haze pollution. Finally, several policy recommendations are proposed to mitigate haze pollution in APEC economies.

摘要

偏向性技术进步是通过改变边际替代率来实现节能减排的行为。本研究在生产函数中引入可再生能源,基于边际产出理论提出了一种偏向性技术进步特征的识别方法。利用 2000-2017 年亚太经合组织(APEC)经济体的面板数据,探讨了偏向性技术进步对降低颗粒物(PM)的影响。研究发现,投入偏向性技术进步往往更多地使用不可再生能源。投入偏向性技术进步加剧了雾霾污染;但随着 PM 浓度的增加,这种影响会减弱。产出偏向性技术进步显著降低了高收入经济体的雾霾污染,但增加了低收入经济体的雾霾污染。中性技术进步对雾霾污染的影响与产出偏向性技术进步的影响相反。研究还发现,增加可再生能源消费和降低能源强度分别是投入和产出偏向性技术进步缓解雾霾污染的有效途径。对于中性技术进步,提高全要素生产率是缓解雾霾污染的重要途径。最后,提出了几项政策建议,以缓解 APEC 经济体的雾霾污染。

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