Inclusive green growth (IGG) has been widely discussed for its emphasis on coordinating economic growth quality, social equity, as well as environmentally sustainable development. New infrastructure, representing network and information infrastructure construction, has emerged as a pivotal national strategy to stimulate socioeconomic progress, and its impact on the inclusive green growth deserves careful exploration. Employing the staggered difference-in-difference (staggered DID) approach, this study investigates the influence of new infrastructure on IGG based on Chinese prefecture-level city data from 2011 to 2019, taking advantage of the "Broadband China" strategy (BCS) as a quasi-natural experiment. The results indicate a significant enhancement in IGG due to new infrastructure construction, which remains tenable after rigorous robustness assessments. Further testing with the spatial Durbin DID method reveals that BCS has a significant positive spillover impact on IGG in neighboring areas. For its underlying mechanisms, new infrastructure construction enhances IGG mainly by reinforcing industrial structure supererogation, improving the urban innovation level, and developing digital inclusive finance. There is also evidence that heterogeneity highlights the advancing effects of IGG in the central region, non-aging industrial base cities and non-resource-based cities. This research sheds new light on the understanding of the effect of new infrastructure on promoting IGG through both conceptual and empirical aspects and is conducive to future policymaking for developing countries.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.jenvman.2024.120281DOI Listing

Publication Analysis

Top Keywords

infrastructure construction
16
inclusive green
12
green growth
12
mechanisms infrastructure
8
infrastructure
7
igg
7
inclusive
4
growth
4
growth china
4
china synergistic
4

Similar Publications

The rapid impact assessment matrix (RIAM) is a widely utilized tool for evaluating environmental impacts in municipal solid waste management. However, the traditional RIAM (T-RIAM) method includes ambiguities in its scoring classification, which can hinder decision-making accuracy. This study introduces a modified RIAM approach, enhancing classification precision by refining impact categories, making it particularly valuable for projects constrained by time and resources.

View Article and Find Full Text PDF

Fixed start method for repetitive project scheduling with simulated annealing.

Heliyon

January 2025

Engineering School of Sustainable Infrastructure and Environment, University of Florida, Gainesville, FL, United States.

This research deals with the high project completion variability by presenting a new method to decrease such variability in repetitive construction projects. To achieve this, a Fixed Start Method (FSM) -where the starts of each activity with a high level of probabilistic confidence for the planned project duration are fixed- was applied, where the high level of probabilistic confidence obtained was optimized with the use of the metaheuristic algorithm called Simulated Annealing (SA). This procedure evaluated the project completion in a case study based on the coefficient of variance (COV) of the resulting standard deviation, mean, and temperature selected for the SA.

View Article and Find Full Text PDF

Background: This research investigated the dynamics of fee-free higher education in South Africa, analysing the interplay of socioeconomic, political, and institutional factors to elucidate the complexities surrounding its implementation and impact. Using a causal loop diagram approach (CLD), the study aims to identify key factors to effective implementation, how they interact to shape the outcome of the policy, and actionable strategies to address the challenges hindering the policy sustainability.

Method: A participatory approach was used to developing the CLD, integrating insights from an extensive literature review and stakeholder opinion.

View Article and Find Full Text PDF

Background: TheKeep.Ca was built to facilitate engagement with those experiencing cancer in Manitoba, Canada. Constructed between 2020 and 2024 with a group of patient advisors, the website includes information on engagement activities including research participation, the patient advisor role, and how those experiencing cancer can access these Manitoba activities.

View Article and Find Full Text PDF

The identification of vibration and reconstruction of sound fields of plate structures are important for understanding the vibroacoustic characteristics of complex structures. This paper presents a data-physics driven (DPD) model integrated with transfer learning (DPDT) for high-precision identification and reconstruction of vibration and noise radiation of plate structures. The model combines the Kirchhoff-Helmholtz integral equation with convolutional neural networks, leveraging physical information to reduce the need for extensive data.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!