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논문 기본 정보

자료유형
학술저널
저자정보
Ou, Jia Lu (Kyung Hee University) Kwak, Jae Sung (Kyung Hee University)
저널정보
한국기후변화학회 한국기후변화학회지 Journal of Climate Change Research Vol.15 No.3
발행연도
2024.6
수록면
271 - 288 (18page)
DOI
10.15531/KSCCR.2024.15.3.271

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초록· 키워드

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Due to global climate change, China is facing severe climate challenges, characterized by extreme high temperatures, urban floods, and intensified heat island effects. These factors pose a serious threat to the economic development of Chinese cities and hinder their resilience. This article studies 55 cities along the southeast coast of China to explore the impact of climate change on green innovation. The purpose is to evaluate the mechanisms by which climate change affects green innovation and explore policies and practices to promote green innovation. We collect a balanced panel and estimate the data from 2009 to 2019 using the System Generalized Method of Moments (SYS-GMM). The study also introduces climate variability as an independent variable to investigate the impact of abnormal temperatures and precipitation on green innovation. The benchmark results indicate that climate change can drive green innovation and maintain robustness across various dependent variables. Under the specific context where precipitation exceeds the national average along the southeast coast of China, further investigation shows that both precipitation and abnormal precipitation significantly affect green innovation. Meanwhile, among the temperature variables, only abnormal high temperatures have a positive impact on green innovation. In the heterogeneity test, abnormal high temperatures have a stimulating effect on green innovation in cities with a larger manufacturing sector, while cities with a larger service sector experience a restraining effect. Abnormal precipitation has no significant effect on these two industries. This analysis reveals the multifaceted interactions among climate change, industrial composition, and green innovation in sample cities. Overall, the research findings provide a reference for policymakers to promote green innovation and alleviate greenhouse gas emissions while facing abnormal weather and urban industrial structural transformation.

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ABSTRACT
1. Introduction
2. Literature review and research hypothesis
3. Research design and methodology
4. Results of dynamic panel SYS-GMM model
5. Moderating effect of climate change impacts on green innovation
6. Conclusion, limitation and policy recommendations
References

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