Factors influencing the material footprint in the USA

IF 3 4区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Dervis Kirikkaleli
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引用次数: 0

Abstract

Using novel approaches, namely Fourier autoregressive distributive lag (F-ADL) cointegration and nonlinear autoregressive distributed lag (N-ARDL), this article analyzes how infrastructure investment and environmental R&D affected the material footprint from 1995Q1 to 2019Q4 in the USA while controlling financial development and economic growth. The outcomes reveal that (i) a reduction in the material footprint can be achieved through increasing environmentally related R&D; (ii) by increasing the environmental R&D, material consumption can be used more effectively; (iii) an increase in financial development leads to an increase in the material footprint; and (iv) the slowdown of the economy contributes to efficient material consumption. Integr Environ Assess Manag 2024;20:1217–1224. © 2024 SETAC

影响美国材料足迹的因素
本文采用傅立叶自回归分布滞后(F-ADL)协整和非线性自回归分布滞后(N-ARDL)等新方法,在控制金融发展和经济增长的前提下,分析了1995Q1至2019Q4美国基础设施投资和环境R&D对物质足迹的影响。研究结果表明:(i) 通过增加与环境相关的研发,可以减少物质足迹;(ii) 通过增加环境研发,可以更有效地利用物质消耗;(iii) 金融发展水平的提高会导致物质足迹的增加;(iv) 经济增长放缓会促进有效的物质消耗。Integr Environ Assess Manag 2024;00:1-8。© 2024 SETAC
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来源期刊
Integrated Environmental Assessment and Management
Integrated Environmental Assessment and Management ENVIRONMENTAL SCIENCESTOXICOLOGY&nbs-TOXICOLOGY
CiteScore
5.90
自引率
6.50%
发文量
156
期刊介绍: Integrated Environmental Assessment and Management (IEAM) publishes the science underpinning environmental decision making and problem solving. Papers submitted to IEAM must link science and technical innovations to vexing regional or global environmental issues in one or more of the following core areas: Science-informed regulation, policy, and decision making Health and ecological risk and impact assessment Restoration and management of damaged ecosystems Sustaining ecosystems Managing large-scale environmental change Papers published in these broad fields of study are connected by an array of interdisciplinary engineering, management, and scientific themes, which collectively reflect the interconnectedness of the scientific, social, and environmental challenges facing our modern global society: Methods for environmental quality assessment; forecasting across a number of ecosystem uses and challenges (systems-based, cost-benefit, ecosystem services, etc.); measuring or predicting ecosystem change and adaptation Approaches that connect policy and management tools; harmonize national and international environmental regulation; merge human well-being with ecological management; develop and sustain the function of ecosystems; conceptualize, model and apply concepts of spatial and regional sustainability Assessment and management frameworks that incorporate conservation, life cycle, restoration, and sustainability; considerations for climate-induced adaptation, change and consequences, and vulnerability Environmental management applications using risk-based approaches; considerations for protecting and fostering biodiversity, as well as enhancement or protection of ecosystem services and resiliency.
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