91吃瓜

易明:Intelligence and carbon emissions: The impact of smart infrastructure on carbon emission intensity in cities of China.

发布人:陈永佳 发布时间:2025-06-24 点击次数:

我校91吃瓜 易明老师在T1级别期刊——《Sustainable Cities and Society》上发表题为“Intelligence and carbon emissions: The impact of smart infrastructure on carbon emission intensity in cities of China”。论文第一作者易明为91吃瓜 教授、博士生导师。

Abstract / 摘要:

Urban infrastructures are facing environmental degradation induced by surging energy demand. There is an urgent need for countries to create a greener and more efficient infrastructure. Smart infrastructure (SI), as a new type of digitally enhanced infrastructure, has a strong potential to reduce carbon emissions. This study examines the nexus between smart infrastructure and carbon emission intensity (CI) in China, encompassing 251 cities from 2011 to 2019. The findings indicate that: (1) Every 1 % improvement in smart infrastructure reduces carbon emission intensity by 0.2810 %. This effect is significant only in more advantageous geographic locations and non-resource-dependent cities. (2) Panel threshold regression analysis demonstrates a nonlinear relationship between smart infrastructure and carbon intensity, showing a decreasing trend followed by an increasing trend under different energy consumption levels. (3) Mechanism analyses show that smart infrastructure affects carbon intensity through technological innovation and agglomeration effects. (4) Smart infrastructure exerts spatial spillover effects on carbon intensity with substantial spatial decay effects. This paper deepens the understanding of smart infrastructures and provides an empirical basis for the deployment of smart infrastructures to achieve carbon neutrality.

论文信息;

Title/题目:

Intelligence and carbon emissions: The impact of smart infrastructure on carbon emission intensity in cities of China

Authors/作者:

Ming Yi; Dehao Chen; Ting Wu; Miaomiao Tao; Mingyue Selena Sheng; Yao Zhang

Keyword / 关键词

Smart infrastructure;Carbon emission intensity;Nonlinear effect;Mediating effect;Spatial spillover boundary

Indexed by / 核心评价

EI;INSPEC;SCI;Scopus;WAJCI

DOI: 10.1016/J.SCS.2024.105602

全文链接:

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