長江経済帯における都市化と炭素排出の結合調整:時空間特性と予測
Coupling Coordination of Urbanization and Carbon Emissions in the Yangtze River Economic Belt: Spatiotemporal Characteristics and Prediction (原題)
Hongqiang Wang, Dezhi Fang, Wenyi Xu, Yingjie Zhang
🤖 gxceed AI 要約
日本語
本研究は、長江経済帯の11省・市を対象に、2000年から2021年のパネルデータを用いて都市化と炭素排出の結合調整度を分析し、システムダイナミクスモデルで2022年から2032年までの発展傾向を予測した。結果、都市化レベルは持続的に成長し、結合調整度は上昇傾向にある。地域別に東部は低炭素ストック最適化、中部は低炭素産業移転、西部はクリーンエネルギー転換の道筋を示した。
English
This study analyzes the coupling coordination between urbanization and carbon emissions in the Yangtze River Economic Belt using panel data from 2000-2021, and simulates trends to 2032 with a system dynamics model. Results show sustained urbanization growth and rising coordination, with differentiated low-carbon pathways for eastern, central, and western regions.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
中国の地域研究だが、日本の都市政策や地域脱炭素計画に示唆を与える。特に、都市化と炭素排出の結合調整分析は、日本のコンパクトシティ政策や地域脱炭素ロードマップの評価に応用可能。
In the global GX context
This study offers a methodological framework for assessing urbanization-carbon emission coordination, relevant to global urban sustainability and climate policy. Its regional differentiation approach can inform integrated low-carbon development strategies in other countries.
👥 読者別の含意
🔬研究者:Provides a novel integrated framework combining coupling coordination and system dynamics for long-term carbon-urbanization analysis.
🏢実務担当者:Offers regional low-carbon development pathways that could inform corporate regional planning and sustainability strategies.
🏛政策担当者:Highlights differentiated policy approaches for balancing urbanization and carbon reduction, useful for regional climate planning.
📄 Abstract(原文)
Against the dual strategic backdrop of carbon peaking and carbon neutrality goals and high-quality urbanization development, extant literature exhibits four prominent research gaps: oversimplified evaluation indicator systems, exclusive exploration of the unidirectional carbon impacts exerted by urbanization, a scarcity of long-time-series coupling analyses targeting the Yangtze River Economic Belt (YEB), and functional fragmentation between coupling coordination assessment and predictive simulation tools. Drawing on panel data covering 11 provinces and municipalities within the YEB spanning 2000 to 2021, this study constructs a comprehensive urbanization evaluation framework encompassing four dimensions: population, economy, society, and spatial layout. Meanwhile, an integrated carbon emission assessment system is established from the perspectives of population, economy, energy consumption, and carbon sinks. The entropy-weight method is adopted to assign indicator weights, and a combination of the coupling coordination degree model and system dynamics (SD) model is employed to analyze spatiotemporal evolutionary characteristics and simulate development trends from 2022 to 2032. By organically integrating the coupling coordination model and the SD model, this study establishes an integrated analytical framework that unifies static comprehensive evaluation and driving-mechanism decomposition, thereby compensating for the limitations of time-series forecasting models such as the grey prediction model and ARIMA, which only fit trends from historical data. Empirical results reveal that regional urbanization levels witnessed sustained growth across 2000–2021, with spatial urbanization acting as the core driving pillar. The overall coupling coordination degree maintained a steady upward trajectory, while the east–west regional disparity gradually narrowed. The simulation projections for 2022–2032 demonstrate continuous improvements in coordinated development across the entire basin: the coupling coordination degree ranges from 0.788 to 0.954 for the eastern region, 0.810 to 0.859 for the central region, and 0.752 to 0.865 for the western region. Such spatial differentiation corresponds to distinct practical development pathways: low-carbon stock optimization in the east, low-carbon industrial undertaking in the central zone, and clean energy transition acceleration in the west. All provincial-level administrative regions are projected to achieve an upgrade in their coupling coordination grades by 2032. This study acknowledges several limitations: missing raw data are supplemented via interpolation, only a single baseline scenario is simulated, predictive uncertainty is not quantitatively measured, and subjectivity persists in the weight assignment of coupling subsystems. Ultimately, differentiated low-carbon urbanization governance strategies are proposed for the three sub-regions, offering empirical references for the coordinated realization of dual carbon targets throughout the Yangtze River basin.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.3390/su18168515first seen 2026-08-22 05:09:56
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