Coupling Relationship Among Technological Innovation, Industrial Transformation and Environmental Efficiency: A Case Study of the Huaihai Economic Zone, China.

IF 3.1 2区 地球科学 Q2 ENVIRONMENTAL SCIENCES
Chinese Geographical Science Pub Date : 2022-01-01 Epub Date: 2022-07-14 DOI:10.1007/s11769-022-1294-0
Ziyan Zheng, Yingming Zhu, Fangdao Qiu, Litao Wang
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引用次数: 4

Abstract

The 14th Five-Year Plan period is a critical period for China to achieve high-quality development. Based on super-efficiency slacks-based measure (SBM) model, grey-related analysis (GRA) and other models, this paper studies the heterogeneity of the coupling relationship among technological innovation, industrial transformation and environmental efficiency in the Huaihai Economic Zone during the period of 2005-2019. In addition, it analyzes the coupling mechanism of single and binary systems to the ternary system, which is of great significance for the collaborative symbiosis among systems. The findings are as follows. 1) The technological innovation, industrial transformation and environmental efficiency (TIE) systems of the Huaihai Economic Zone had significant spatial-temporal heterogeneity. Although their evaluation value fluctuated, the development trends are all positive. Ultimately, technological innovation is characterized by being high in the northeast and low in the southwest around Xuzhou, while other systems are relatively staggered in space. 2) The coupling of TIE systems is in transition, lack of orderly integration and benign interaction. However, the developing trend of interaction is also upward, and a spatial pattern driven by Xuzhou and Linyi as the dual cores has gradually formed. Moreover, the coupling is mostly manifested as outdated technological innovation and industrial transformation. Except for the final coordination of regenerative cities, the other resource types are all in transition. Cities in all traffic locations are still in transition. The overall system interaction of cities on Longhai Line (Lanzhou-Lianyungang Railway) is relatively optimal, and cities on Xinshi Line (Xinxiang-Rizhao Railway) are accelerating toward synergy. 3) The coupling status of TIE systems depends on the development of the single system and the interaction of the binary (2E) system. The coupling is closely related to technological innovation and Technology-Industry system, and is hindered by the inefficient interaction of Technology-Environment system. Specifically, the synergy of regenerative cities is attributed to the advantage of a single system and the effective integration of 2E systems. Beneficial from the advantages of environmental efficiency, the cities on Xinshi Line promote the synergy of the 2E and TIE systems. Therefore, while the Huaihai Economic Zone stimulates the development potential of the single and 2E systems, it is necessary to amplify the superimposition effect of systems in accordance on the basis of resource and location.

技术创新、产业转型与环境效率的耦合关系——以淮海经济区为例
“十四五”时期是中国实现高质量发展的关键时期。基于超效率slack - Based测度(SBM)模型、灰色关联分析(GRA)等模型,对2005-2019年淮海经济区技术创新、产业转型与环境效率耦合关系的异质性进行了研究。此外,分析了单、二元系统与三元系统的耦合机理,对系统间的协同共生具有重要意义。研究结果如下。1)淮海经济区技术创新、产业转型和环境效率(TIE)系统具有显著的时空异质性。虽然它们的评价值有所波动,但发展趋势都是积极的。最终,以徐州为中心,技术创新呈现东北高、西南低的特征,其他系统在空间上相对错落。2) TIE系统耦合处于过渡状态,缺乏有序整合和良性互动。但相互作用的发展趋势也是向上的,逐渐形成了以徐州和临沂为双核驱动的空间格局。这种耦合主要表现为落后技术创新和产业转型。除了再生城市的最终协调外,其他资源类型都处于过渡阶段。所有交通位置的城市仍处于过渡阶段。陇海线(兰连港铁路)沿线城市整体系统互动较为优化,新石线(新湘-日照铁路)沿线城市加速协同。3) TIE系统的耦合状态取决于单一系统的发展和二元(2E)系统的相互作用。这种耦合与技术创新和技术-产业系统密切相关,并受到技术-环境系统低效交互的阻碍。具体而言,可再生城市的协同作用归因于单一系统的优势和2E系统的有效整合。得益于环境效率的优势,新石线上的城市促进了2E和TIE系统的协同作用。因此,淮海经济区在激发单一系统和2E系统发展潜力的同时,需要根据资源和区位的不同,放大系统的叠加效应。
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来源期刊
Chinese Geographical Science
Chinese Geographical Science 环境科学-环境科学
CiteScore
6.10
自引率
5.90%
发文量
63
审稿时长
3.0 months
期刊介绍: Chinese Geographical Science is an international journal, sponsored by Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences, and published by Science Press, Beijing, China. Chinese Geographical Science is devoted to leading scientific and technological innovation in geography, serving development in China, and promoting international scientific exchange. The journal mainly covers physical geography and its sub-disciplines, human geography and its sub-disciplines, cartography, remote sensing, and geographic information systems. It pays close attention to the major issues the world is concerned with, such as the man-land relationship, population, resources, environment, globalization and regional development.
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