评估欧盟的可持续发展:城市废物、工业废物和废物相关专利的影响。

IF 3 4区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Selin Karlilar Pata, Ugur Korkut Pata
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引用次数: 0

摘要

废物已成为环境的一个紧迫问题,主要源于城市化和工业化进程。产生的大量废物对环境构成严重威胁,因为它们在土壤中扩散有害物质,并将甲烷排放到大气中。为了有效地解决这一问题,本研究探讨了2005 - 2020年城市和工业废物以及与废物相关的创新对负荷能力因子(LCF)的影响。为此,我们利用来自17个欧洲国家的面板数据,采用了增强平均群体法和半面板折刀因果关系法。实证结果表明:(1)承载能力曲线(LCC)假设得到证实;(2)城市和工业废弃物对LCF有不利影响;(3)废物管理实践的创新对LCF没有明显的影响。鉴于这些发现,本研究强调了对欧洲国家进行有效废物管理的重要性,以利用废物作为一种宝贵资源而不是造成污染的原因的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessing the sustainable development in the European Union: influence of municipal waste, industrial waste, and waste related patents.

Waste has emerged as a pressing concern for the environment, primarily stemming from the processes of urbanization and industrialization. The substantial volumes of waste generated pose a serious threat to the environment, as they spread out harmful substances in the soil and release methane emissions into the atmosphere. To effectively address this issue, this study explores the impact of municipal and industrial waste, as well as waste-related innovation on the load capacity factor (LCF) from 2005 to 2020. For this purpose, the augmented mean group method and the half panel jackknife causality approach were conducted by using panel data from 17 European countries. The empirical findings show that (1) the load capacity curve (LCC) hypothesis is confirmed; (2) municipal and industrial waste have a detrimental effect on the LCF; and (3) innovation in waste management practices have no discernible impact on the LCF. In light of these findings, this study emphasizes the importance of efficient waste management for European countries to exploit the potential of waste as a valuable resource rather than a cause of pollution.

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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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